Clinical Approach to Headache

Comprehensive Practical Framework

1. Symptom Overview

Understanding the clinical significance and classification of Headache

Headache is among the most common symptoms encountered in clinical practice, affecting approximately 50% of the global adult population at least once per year. It accounts for roughly 2-4% of all emergency department visits and is the fourth leading cause of disability worldwide according to the Global Burden of Disease Study. Approximately 15% of the population experiences migraine, while tension-type headache affects up to 80% of adults at some point in their lives. Despite its prevalence, headache remains frequently under-diagnosed and under-treated, with significant impact on quality of life and economic productivity.

Definition

Headache is defined as pain located anywhere in the region of the head or upper neck. It arises from activation of pain-sensitive structures including the meninges, blood vessels, muscles, periosteum, and cranial nerves. Notably, the brain parenchyma itself lacks pain receptors and cannot generate pain directly. The International Classification of Headache Disorders (ICHD-3) divides headaches into primary disorders (where headache itself is the disease) and secondary disorders (where headache is a symptom of another condition).

Classification by Duration

CategoryDurationCommon CausesClinical Significance
Acute (New-Onset)First episode or less than 4 weeksViral illness, subarachnoid hemorrhage, meningitis, first migraine, hypertensive emergencyRequires careful evaluation to exclude secondary causes; “first or worst” headache is a red flag
Subacute4 weeks to 3 monthsIntracranial mass, subdural hematoma, giant cell arteritis, medication overuse headacheProgressive pattern suggests evolving pathology; warrants imaging if features change
ChronicGreater than 3 monthsChronic migraine, chronic tension-type headache, medication overuse headache, new daily persistent headachePrimary headache disorders predominate; focus on identifying triggers and preventing medication overuse

Classification by Etiology: Primary versus Secondary

Primary Headache Disorders

Headache is the disease itself, with no underlying structural or systemic cause. These represent approximately 90% of all headaches.

  • Migraine — with or without aura
  • Tension-type headache — episodic or chronic
  • Trigeminal autonomic cephalalgias — including cluster headache
  • Other primary headaches — cough headache, exertional headache, sex-related headache

Secondary Headache Disorders

Headache is a symptom of an identifiable underlying cause. These represent approximately 10% but include life-threatening conditions.

  • Vascular — subarachnoid hemorrhage, stroke, arterial dissection
  • Infectious — meningitis, encephalitis, sinusitis
  • Structural — mass lesion, hydrocephalus, Chiari malformation
  • Metabolic/Toxic — carbon monoxide, hypoxia, medication overuse

Classification by Character

QualityDescriptionTypical Associations
Throbbing/PulsatingPain that beats in rhythm with the pulseMigraine, vascular headaches, fever-associated headache
Pressing/TighteningBand-like pressure, non-pulsatingTension-type headache, cervicogenic headache
Sharp/StabbingBrief, intense, ice-pick like jabsPrimary stabbing headache, trigeminal neuralgia, cluster headache
BurningConstant burning sensationNeuropathic pain, occipital neuralgia, post-herpetic neuralgia
Explosive/ThunderclapMaximal intensity within seconds to one minuteSubarachnoid hemorrhage, reversible cerebral vasoconstriction syndrome, pituitary apoplexy — always a red flag

Classification by Pattern and Timing

PatternDescriptionSuggests
Morning predominanceHeadache present on waking, improves through dayRaised intracranial pressure, sleep apnea, medication overuse, hypertension
Evening predominanceBuilds through the day, worst in eveningTension-type headache, eye strain, cervicogenic headache
Nocturnal awakeningWakes patient from sleep at consistent timesCluster headache (often 1-2 hours after sleep onset), hypnic headache, raised intracranial pressure
PositionalWorse when lying down or standing upLying down worse: raised intracranial pressure; Standing worse: intracranial hypotension (CSF leak)
ExertionalTriggered by physical exertion, coughing, strainingPrimary exertional headache, but must exclude subarachnoid hemorrhage and Chiari malformation
MenstrualOccurs predictably with menstrual cycleMenstrual migraine (typically perimenstrual, days -2 to +3)

Classification by Location

LocationTypical CausesClinical Notes
UnilateralMigraine, cluster headache, trigeminal neuralgia, hemicrania continuaStrictly unilateral without side shift suggests trigeminal autonomic cephalalgia
BilateralTension-type headache, medication overuse, systemic illnessMost common pattern for tension-type headache
FrontalTension-type, sinusitis, frontal sinus diseaseTrue sinus headache is overdiagnosed; most “sinus headaches” are migraine
Occipital/PosteriorCervicogenic headache, occipital neuralgia, posterior fossa lesionCheck for neck stiffness and range of motion
Periorbital/Retro-orbitalCluster headache, migraine, acute glaucoma, cavernous sinus pathologyAssociated autonomic features (tearing, rhinorrhea) suggest cluster headache

Key Concept: The “Big Four” Primary Headaches

Four primary headache disorders account for the vast majority of headache presentations:

  • Migraine — approximately 15% of population; episodic, often unilateral, pulsating, with nausea and photophobia
  • Tension-type headache — approximately 40% lifetime prevalence; bilateral, pressing, mild-to-moderate intensity
  • Medication overuse headache — affects 1-2% of population; daily or near-daily headache in patients using acute medications more than 10-15 days per month
  • Cluster headache — approximately 0.1% of population; strictly unilateral, severe, with autonomic features, occurring in clusters

Together with secondary causes, a systematic approach to these entities allows accurate diagnosis in the majority of patients.

2. Pathophysiology and Mechanisms

Understanding the underlying mechanisms of Headache

Understanding headache pathophysiology is essential for rational diagnosis and treatment. The brain parenchyma itself is insensitive to pain; headache arises from activation of pain-sensitive structures including the meninges (particularly the dura mater), cerebral blood vessels, cranial nerves (especially the trigeminal nerve), upper cervical nerve roots, and pericranial muscles. The trigeminovascular system plays a central role in most primary headache disorders, while secondary headaches result from direct activation of nociceptors by inflammation, traction, compression, or vascular disturbance.

Pain-Sensitive Structures of the Head

StructureInnervationClinical Relevance
Dura mater and dural sinusesTrigeminal nerve (V1 primarily), upper cervical rootsTraction or inflammation causes referred pain to frontal and vertex regions
Cerebral arteries (proximal)Trigeminal nerve afferentsVasodilation and neurogenic inflammation central to migraine
Meningeal arteriesTrigeminal nerve (middle meningeal artery via V3)Epidural hematoma causes severe ipsilateral headache
Pericranial musclesTrigeminal motor, facial nerve, cervical rootsMuscle tension contributes to tension-type headache
Extracranial arteriesTrigeminal and cervical afferentsTemporal artery inflammation in giant cell arteritis
Upper cervical structures (C1-C3)Upper cervical nerve rootsConvergence with trigeminal nucleus explains referred pain patterns

The Trigeminovascular System

ComponentStructureFunction
Peripheral ReceptorsTrigeminal nerve endings around meningeal vesselsDetect mechanical, chemical, and inflammatory stimuli; release calcitonin gene-related peptide (CGRP)
Afferent PathwayTrigeminal nerve (primarily V1 ophthalmic division)Transmit pain signals from intracranial structures to brainstem
First RelayTrigeminal nucleus caudalis (in medulla)Receives convergent input from trigeminal and upper cervical afferents; explains referred pain patterns
Second RelayThalamus (ventral posteromedial nucleus)Relays pain to cortical areas; modulated by descending pathways
Cortical ProcessingSomatosensory cortex, insular cortex, anterior cingulateConscious perception of pain; emotional and autonomic responses
Modulation CentersPeriaqueductal gray, rostral ventromedial medullaDescending pain modulation; dysfunction may contribute to chronic headache

How Different Conditions Cause Headache

ConditionMechanismTreatment Implication
MigraineCortical spreading depression triggers trigeminal activation; neurogenic inflammation and CGRP release cause vasodilation and sensitization; hypothalamic and brainstem nuclei modulate attack thresholdTriptans block CGRP release and cause vasoconstriction; CGRP monoclonal antibodies prevent attacks; preventive medications raise attack threshold
Tension-type headachePeripheral myofascial nociception from pericranial muscles; central sensitization in chronic form; stress and postural factors contributeNSAIDs for acute episodes; tricyclic antidepressants for prevention address central sensitization; physical therapy addresses peripheral factors
Cluster headacheHypothalamic activation (circadian pacemaker) triggers trigeminal-autonomic reflex; parasympathetic outflow causes autonomic features; trigeminal activation causes painHigh-flow oxygen aborts attacks via hypothalamic and vasoconstrictor effects; verapamil prevents by modulating hypothalamic activity; triptans effective acutely
Medication overuse headacheFrequent analgesic or triptan use causes receptor down-regulation, increased cortical excitability, and impaired descending pain modulation; creates cycle of headache and medication useWithdrawal of overused medication is essential; bridge therapy during withdrawal; preventive medication started simultaneously
Subarachnoid hemorrhageBlood in subarachnoid space directly irritates meninges; rapid rise in intracranial pressure stretches pain-sensitive structures; vasospasm may cause secondary ischemiaNeurosurgical intervention to secure aneurysm; nimodipine for vasospasm prevention; emergency management of raised intracranial pressure
MeningitisInfection causes meningeal inflammation; inflammatory mediators activate trigeminal nociceptors; raised intracranial pressure from edema and impaired cerebrospinal fluid absorptionEmpiric antibiotics immediately; dexamethasone reduces inflammation and improves outcomes in bacterial meningitis
Intracranial hypertensionElevated pressure causes traction on dura and vessels; distortion of pain-sensitive structures; papilledema results from impaired axoplasmic flowTreat underlying cause; acetazolamide reduces cerebrospinal fluid production; therapeutic lumbar puncture provides temporary relief
Intracranial hypotension (cerebrospinal fluid leak)Low cerebrospinal fluid volume causes brain sag; traction on meninges and vessels when upright; compensatory venous engorgementConservative measures (bed rest, hydration, caffeine); epidural blood patch seals dural tear if conservative measures fail
Giant cell arteritisGranulomatous inflammation of medium and large arteries; temporal artery involvement causes scalp tenderness; ophthalmic artery involvement risks blindnessHigh-dose corticosteroids started immediately (do not wait for biopsy); prevents irreversible vision loss
Cervicogenic headacheUpper cervical pathology (facet joints, discs, muscles) activates C1-C3 afferents that converge with trigeminal nucleus; pain referred to headPhysical therapy, nerve blocks; treating cervical source addresses referred head pain

Key Neurotransmitters and Mediators

Calcitonin Gene-Related Peptide (CGRP)

Location: Trigeminal ganglion neurons and their terminals

Role: Potent vasodilator; promotes neurogenic inflammation; levels elevated during migraine attacks

Clinical relevance: CGRP receptor antagonists (gepants) and monoclonal antibodies against CGRP or its receptor are effective migraine treatments

Serotonin (5-HT)

Location: Brainstem raphe nuclei; peripheral receptors on vessels

Role: Modulates trigeminovascular transmission; 5-HT1B/1D receptor activation inhibits CGRP release and causes vasoconstriction

Clinical relevance: Triptans are 5-HT1B/1D agonists; low serotonin states may predispose to migraine

Dopamine

Location: Hypothalamus, brainstem nuclei

Role: Hypersensitivity may explain premonitory symptoms (yawning, nausea, mood changes); modulates hypothalamic function

Clinical relevance: Dopamine antagonists (metoclopramide, prochlorperazine) effective for acute migraine and associated nausea

Glutamate

Location: Excitatory synapses throughout pain pathways

Role: Primary excitatory neurotransmitter; cortical spreading depression involves glutamate wave; central sensitization mediated by NMDA receptors

Clinical relevance: Topiramate and valproate (preventive medications) have anti-glutamatergic effects

Nitric Oxide

Location: Vascular endothelium, neurons

Role: Potent vasodilator; nitric oxide donors trigger migraine attacks in susceptible individuals; role in maintaining chronic pain

Clinical relevance: Explains why nitroglycerin triggers headache; potential target for future therapies

Substance P

Location: Trigeminal neurons, released with CGRP

Role: Promotes neurogenic inflammation; increases vascular permeability; involved in pain transmission

Clinical relevance: Contributes to peripheral sensitization; target of some experimental therapies

Cortical Spreading Depression and Migraine Aura

Understanding Cortical Spreading Depression

Cortical spreading depression (CSD) is a slowly propagating wave of neuronal and glial depolarization that spreads across the cortex at approximately 3-5 millimeters per minute. This explains the gradual spread of visual aura symptoms over 20-30 minutes (corresponding to movement across the visual cortex).

Sequence of Events:

  • Initial neuronal hyperexcitability and depolarization
  • Release of potassium, glutamate, and ATP into extracellular space
  • Wave of depolarization spreads across cortex
  • Followed by prolonged neuronal suppression
  • Activation of trigeminal afferents in meninges triggers headache phase

Central Sensitization in Chronic Headache

Why Chronic Headache Becomes Harder to Treat

Repeated activation of pain pathways leads to central sensitization — a state of heightened excitability in central pain neurons. This manifests clinically as:

  • Allodynia — pain from normally non-painful stimuli (e.g., combing hair, wearing glasses during migraine)
  • Hyperalgesia — exaggerated pain response to painful stimuli
  • Expansion of receptive fields — pain felt over larger area than initially
  • Reduced descending inhibition — impaired ability to suppress pain signals

Central sensitization explains why chronic headache disorders are more difficult to treat than episodic forms and why preventive therapy is essential.

Often Overlooked Mechanism: The Trigeminocervical Complex

The trigeminal nucleus caudalis extends into the upper cervical spinal cord, where it receives convergent input from both trigeminal afferents (supplying the head) and cervical afferents (C1-C3, supplying the upper neck). This trigeminocervical complex explains several important clinical observations:

  • Why cervical spine pathology causes referred pain to the head (cervicogenic headache)
  • Why migraine pain often extends into the neck
  • Why occipital nerve blocks can be effective for migraine
  • Why posture and neck position affect headache

This anatomical convergence means that examining the cervical spine is important in all headache patients, not just those with obvious neck symptoms.

3. History Taking

A comprehensive approach to eliciting the Headache history

Red Flags — Require Urgent Evaluation

  • Thunderclap onset — maximal intensity within seconds to one minute suggests subarachnoid hemorrhage, reversible cerebral vasoconstriction syndrome, or pituitary apoplexy
  • “First or worst” headache — new headache type or worst headache of life requires urgent evaluation
  • Progressive worsening over days to weeks — suggests mass lesion, subdural hematoma, or chronic meningitis
  • Fever with headache — consider meningitis, encephalitis, or intracranial abscess
  • New headache in immunocompromised patient — opportunistic infection or malignancy
  • Papilledema or focal neurological signs — suggests raised intracranial pressure or structural lesion
  • New headache after age 50 — consider giant cell arteritis, malignancy, or subdural hematoma
  • Headache triggered by Valsalva, cough, or exertion — must exclude subarachnoid hemorrhage and Chiari malformation
  • Positional component — worse lying down suggests raised intracranial pressure; worse standing suggests intracranial hypotension
  • Associated with altered consciousness, seizures, or personality change — suggests serious intracranial pathology

Systematic History: The “HEADACHE” Approach

Use the mnemonic “HEADACHE” to ensure comprehensive history taking:

  • HHow did it start?: Sudden thunderclap versus gradual onset; what were you doing when it began?
  • EEvolution and duration: How long does each episode last? How has the pattern changed over time?
  • AAssociated symptoms: Nausea, vomiting, photophobia, phonophobia, visual changes, autonomic features, fever, neck stiffness?
  • DDescription and location: What does it feel like (throbbing, pressing, stabbing)? Where exactly is the pain? Does it spread?
  • AAggravating and alleviating factors: What makes it worse (light, noise, movement, cough)? What helps (dark room, sleep, medication)?
  • CChronology and frequency: How often do headaches occur? Any pattern (time of day, menstrual, seasonal)?
  • HHistory (past medical, medications, family): Previous headaches? Medications including over-the-counter? Family history of headache?
  • EEffect on life: Impact on work, relationships, daily activities? Disability assessment

Targeted Questions by Suspected Cause

Suspected CauseKey FeaturesAsk This Question
MigraineUnilateral, pulsating, moderate-to-severe, nausea, photo/phonophobia, worsened by activity“Do you need to lie down in a dark, quiet room during attacks? Does the pain throb with your heartbeat?”
Tension-type headacheBilateral, pressing/tightening, mild-to-moderate, no nausea or vomiting“Does the headache feel like a tight band around your head? Can you continue your normal activities during the headache?”
Cluster headacheStrictly unilateral, periorbital, severe, restlessness, autonomic features (tearing, rhinorrhea, ptosis)“During attacks, do you feel restless and need to pace around? Does your eye water or become red on the painful side?”
Medication overuse headacheDaily or near-daily headache, regular use of acute medications more than 10-15 days per month“How many days per month do you take painkillers or triptans for headache? Do you take medication to prevent a headache from starting?”
Subarachnoid hemorrhageThunderclap onset, “worst headache of life,” may have neck stiffness, altered consciousness“Did this headache reach its maximum intensity within seconds? Is this the worst headache you have ever experienced?”
MeningitisFever, neck stiffness, photophobia, rash (meningococcal), altered mental status“Do you have a fever? Does bending your neck forward make the headache worse? Have you noticed any rash?”
Giant cell arteritisAge over 50, temporal tenderness, jaw claudication, visual symptoms, polymyalgia symptoms“Is your scalp tender when you brush your hair or rest your head on a pillow? Does your jaw ache when chewing?”
Intracranial hypertensionWorse lying down and in morning, visual obscurations, pulsatile tinnitus, papilledema“Is the headache worse when you wake up in the morning? Do you notice brief episodes where your vision goes grey or dark?”
Intracranial hypotension (cerebrospinal fluid leak)Worse when upright, improves lying down, often follows lumbar puncture or trauma“Does the headache get much better within 15-30 minutes of lying flat? Did you have a lumbar puncture or spinal procedure recently?”
Cervicogenic headacheUnilateral, starts in neck and spreads to head, reduced neck range of motion, triggered by neck movement“Does the headache start in your neck and spread to your head? Does turning your neck make the headache worse?”
Trigeminal neuralgiaBrief electric shock-like pain, triggered by light touch, chewing, or talking“Is the pain like an electric shock? Is it triggered by touching your face, eating, or brushing your teeth?”

Asking About Aura Symptoms

Characterizing Visual and Sensory Symptoms

Migraine aura has specific features that distinguish it from other causes of neurological symptoms:

  • Timing: “Do the visual symptoms occur before the headache starts, or during it?”
  • Duration: “How long do the visual symptoms last?” (Typical aura: 5-60 minutes)
  • Spread: “Do the symptoms gradually spread or expand over time?” (Cortical spreading depression causes gradual spread over 20-30 minutes)
  • Character: “Do you see flashing lights, zigzag lines, or blind spots?” (Scintillating scotoma is characteristic)
  • Sensory symptoms: “Do you get tingling that spreads from your hand up your arm to your face?” (Cheiro-oral distribution)
  • Recovery: “Do all symptoms resolve completely?” (Full recovery expected with typical aura)

Red flag: Sudden onset, persistent symptoms, or motor weakness require urgent evaluation to exclude stroke or other structural causes.

Medication and Social History

Medications That Cause or Worsen Headache

  • Nitrates (nitroglycerin, isosorbide) — vasodilation causes immediate headache; can trigger migraine
  • Phosphodiesterase-5 inhibitors (sildenafil, tadalafil) — similar mechanism to nitrates
  • Calcium channel blockers (nifedipine, amlodipine) — vasodilation, though verapamil prevents cluster headache
  • Proton pump inhibitors — associated with headache in some patients
  • Hormonal contraceptives — may worsen or improve migraine; assess pattern
  • Overused acute medications — simple analgesics more than 15 days/month, triptans or combination analgesics more than 10 days/month
  • Withdrawal from caffeine, opioids, or ergots — rebound headache
  • Dipyridamole — vasodilator, common cause of headache

Social and Occupational History

  • Caffeine intake: Both excess consumption and withdrawal can trigger headache; quantify daily intake
  • Alcohol: Red wine commonly triggers migraine; alcohol excess causes next-day headache; cluster headache triggered during cluster periods
  • Sleep patterns: Both too little and too much sleep trigger migraine; sleep apnea causes morning headache
  • Occupation: Screen time (eye strain), posture (cervicogenic), shift work (sleep disruption), exposure to fumes or chemicals
  • Stress: Major life events, work stress, anxiety, depression — both trigger and perpetuate headache
  • Diet: Meal skipping, dehydration, specific food triggers (aged cheese, processed meats, MSG in susceptible individuals)
  • Carbon monoxide exposure: Faulty heating, enclosed spaces — headache with drowsiness affecting multiple household members

Family History

Relevance of Family History in Headache

  • Migraine — strong genetic component; 70-90% of patients have first-degree relative with migraine
  • Cluster headache — 5-20 times increased risk in first-degree relatives
  • Familial hemiplegic migraine — autosomal dominant; ask about family members with migraine plus weakness
  • Intracranial aneurysm — screen if two or more first-degree relatives affected
  • CADASIL (Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy) — family history of early stroke and dementia with migraine

The Value of a Headache Diary

A prospective headache diary is invaluable for accurate diagnosis and management. Ask patients to record:

  • Date and time of headache onset and resolution
  • Pain intensity (0-10 scale)
  • Location and character of pain
  • Associated symptoms
  • Potential triggers (food, sleep, stress, menstrual cycle)
  • Medications taken and response
  • Impact on activities

A diary kept for at least 4 weeks often reveals patterns not apparent from history alone and accurately quantifies medication use (patients often underestimate).

4. Physical Examination

A systematic head-to-toe approach for Headache

Systematic Framework: The headache examination serves two purposes: (1) to identify red flags suggesting secondary causes requiring urgent investigation, and (2) to find positive signs supporting specific diagnoses. Use a “General → Vital Signs → Head and Neck → Neurological” approach for complete evaluation.

General Inspection

  • Appearance and behavior: Restlessness and pacing suggest cluster headache; preference for stillness and dark room suggests migraine; confusion or drowsiness suggests serious intracranial pathology
  • Facial expression: Grimacing, eye closure, hand holding head — assess pain severity
  • Autonomic features: Unilateral lacrimation, conjunctival injection, rhinorrhea, ptosis, miosis — suggests trigeminal autonomic cephalalgia
  • Skin: Petechial or purpuric rash (meningococcemia); café-au-lait spots (neurofibromatosis with possible intracranial tumors)
  • Habitus: Obesity — associated with idiopathic intracranial hypertension; weight loss — consider malignancy

Vital Signs

Vital SignWhat to Look ForClinical Significance
TemperatureFever (greater than 38°C)Suggests infection — meningitis, encephalitis, sinusitis, systemic infection; also consider drug-induced fever
Blood PressureSevere hypertension (greater than 180/120 mmHg)Hypertensive emergency can cause headache; however, mild-moderate hypertension rarely causes headache — look for other causes
Heart RateTachycardia or bradycardiaTachycardia with fever suggests infection; bradycardia with hypertension (Cushing response) suggests raised intracranial pressure
Respiratory RateAbnormal patternIrregular breathing may indicate brainstem dysfunction; hyperventilation associated with anxiety-related headache
Oxygen SaturationHypoxiaHypoxia causes headache; consider carbon monoxide poisoning (co-oximetry needed as standard pulse oximetry may be falsely normal)

Head and Neck Examination

Scalp and Skull

  • Temporal arteries: Palpate bilaterally for tenderness, thickening, reduced or absent pulsation — suggests giant cell arteritis
  • Scalp tenderness: Localized tenderness over temporal arteries (giant cell arteritis); diffuse tenderness to light touch (allodynia in migraine)
  • Pericranial muscle tenderness: Palpate temporalis, frontalis, suboccipital, and trapezius muscles — tenderness supports tension-type headache
  • Trauma signs: Bruising, lacerations, Battle’s sign (mastoid bruising), raccoon eyes (periorbital bruising) — suggest head injury
  • Surgical scars: Previous craniotomy or shunt suggests secondary causes

Eyes

FindingHow to AssessSignificance
Pupil asymmetryCompare size in dim and bright lightUnilateral dilation with ptosis — third nerve palsy (posterior communicating artery aneurysm); miosis with ptosis — Horner syndrome (carotid dissection, cluster headache)
Conjunctival injectionDirect inspectionUnilateral with lacrimation — cluster headache or other trigeminal autonomic cephalalgia; bilateral — consider acute glaucoma
Visual acuitySnellen chart or bedside readingReduced acuity — consider giant cell arteritis (ischemic optic neuropathy), papilledema, or primary eye pathology
Visual fieldsConfrontation testingDefects suggest intracranial pathology (pituitary tumor, occipital lesion); transient obscurations suggest raised intracranial pressure
Eye movementsFollow finger in H patternDiplopia or restriction — cranial nerve palsy, orbital or cavernous sinus pathology, raised intracranial pressure (sixth nerve)

Fundoscopy

Fundoscopy Is Essential in Headache Assessment

Papilledema (optic disc swelling due to raised intracranial pressure) is a critical finding that changes management:

  • Features: Blurred disc margins (starting nasally), loss of spontaneous venous pulsation, disc hyperemia, engorged veins, eventual disc elevation and hemorrhages
  • Significance: Indicates raised intracranial pressure — contraindication to lumbar puncture until imaging excludes mass lesion
  • Causes: Intracranial mass, idiopathic intracranial hypertension, cerebral venous thrombosis, meningitis

Subhyaloid hemorrhage (blood between retina and vitreous) strongly suggests subarachnoid hemorrhage.

Ears, Nose, and Throat

  • Ears: Otoscopy for middle ear infection, mastoiditis; pressing the tragus or pulling the pinna (pain suggests otitis externa)
  • Sinuses: Tenderness over frontal and maxillary sinuses; however, most “sinus headaches” are actually migraine
  • Nasal examination: Purulent discharge suggests sinusitis; unilateral clear rhinorrhea may be cerebrospinal fluid leak
  • Oropharynx: Dental pathology can cause referred headache; temporomandibular joint tenderness and reduced opening

Neck Examination

  • Meningism: Neck stiffness on passive flexion (not rotation) — indicates meningeal irritation from infection or blood
  • Range of motion: Restricted and painful movement suggests cervicogenic cause; test flexion, extension, rotation, lateral flexion
  • Cervical spine tenderness: Palpate spinous processes, facet joints, paraspinal muscles
  • Occipital nerves: Tenderness at greater occipital nerve (midway between mastoid and occipital protuberance) — occipital neuralgia or referred from migraine
  • Lymph nodes: Enlarged nodes may indicate infection or malignancy
  • Carotid bruit: May indicate stenosis or dissection (though dissection may have no bruit)

Neurological Examination

Mental Status

  • Level of consciousness: Glasgow Coma Scale; drowsiness or confusion suggests serious pathology
  • Orientation: Time, place, person
  • Attention and concentration: Serial sevens, months backward
  • Memory: New learning and recall
  • Language: Dysphasia suggests dominant hemisphere involvement

Cranial Nerves

Cranial NerveTestSignificance if Abnormal
II (Optic)Visual acuity, fields, fundoscopy, pupillary responsesPapilledema, visual field defects, optic neuropathy (giant cell arteritis)
III, IV, VI (Oculomotor, Trochlear, Abducens)Eye movements, pupils, ptosisThird nerve palsy with pupil involvement — posterior communicating artery aneurysm; sixth nerve palsy — raised intracranial pressure (false localizing)
V (Trigeminal)Facial sensation, corneal reflex, jaw strengthSensory loss in trigeminal neuralgia or cavernous sinus lesion; corneal reflex loss important sign
VII (Facial)Facial movements, tasteFacial weakness — may accompany cluster headache (rare); consider brainstem or cerebellopontine angle lesion
VIII (Vestibulocochlear)Hearing, vestibular functionHearing loss with headache — consider acoustic neuroma; vertigo with headache — vestibular migraine, posterior fossa lesion
IX, X, XI, XII (Lower cranial nerves)Palate, gag, sternocleidomastoid, trapezius, tongueLower cranial nerve palsies suggest skull base pathology

Motor and Sensory Examination

  • Tone: Increased tone suggests upper motor neuron lesion
  • Power: Test major muscle groups; focal weakness requires investigation
  • Reflexes: Asymmetry or hyperreflexia suggests structural lesion; upgoing plantars (Babinski sign) indicate upper motor neuron lesion
  • Sensation: Test light touch, pinprick in all limbs; hemisensory loss suggests thalamic or cortical lesion
  • Coordination: Finger-nose, heel-shin testing; cerebellar signs suggest posterior fossa pathology

Gait and Balance

  • Observe gait: Ataxia suggests cerebellar involvement; hemiparetic gait indicates motor pathway lesion
  • Romberg test: Positive with proprioceptive or vestibular dysfunction
  • Tandem gait: Sensitive for subtle cerebellar dysfunction

Special Tests for Meningeal Irritation

Neck Stiffness

Technique: Passively flex the neck while patient is supine

Positive finding: Resistance and pain with neck flexion (but rotation preserved)

Significance: Meningeal irritation from infection or subarachnoid hemorrhage

Kernig Sign

Technique: Flex hip to 90°, then attempt to extend the knee

Positive finding: Pain and resistance to knee extension

Significance: Meningeal irritation; sensitivity approximately 5%, specificity greater than 95%

Brudzinski Sign

Technique: Passively flex the neck while patient supine

Positive finding: Involuntary flexion of hips and knees

Significance: Meningeal irritation; low sensitivity, high specificity

Sensitivity of Meningeal Signs

Classic meningeal signs have low sensitivity (approximately 5-30%) but high specificity. Absence of neck stiffness does not exclude meningitis, especially in elderly, immunocompromised, or very young patients. If clinical suspicion is high, proceed with lumbar puncture regardless of examination findings.

Expected Findings by Etiology

ConditionGeneral AppearanceKey Examination FindingsRed Flags
MigrainePrefers to lie still, may avoid lightUsually normal between attacks; during attack may have cutaneous allodyniaFocal neurological signs persisting beyond aura
Tension-type headacheOften continues activitiesPericranial muscle tenderness; otherwise normalNeurological signs unexpected
Cluster headacheAgitated, restless, pacingIpsilateral lacrimation, conjunctival injection, rhinorrhea, ptosis, miosis, facial sweatingPersistent Horner syndrome between attacks
Subarachnoid hemorrhageMay be drowsy or agitatedNeck stiffness (may take hours to develop), altered consciousness, focal signs, subhyaloid hemorrhageAny abnormal neurological sign
MeningitisIll-appearing, photophobicFever, neck stiffness, positive Kernig/Brudzinski (variable), petechial rash (meningococcal)Altered mental status, seizures, rash
Giant cell arteritisMay appear wellTender, thickened temporal arteries with reduced pulsation; scalp tenderness; jaw claudication historyVisual loss or transient visual symptoms
Raised intracranial pressureMay be drowsyPapilledema, sixth nerve palsy, visual field defects, focal signs depending on causePapilledema, decreasing consciousness
Intracranial hypotensionPrefers to lie flatOrthostatic headache; may have low-pressure papillopathy, sixth nerve palsy, subdural collectionsNeurological signs, subdural hematoma
Cervicogenic headacheOften has neck posture abnormalityReduced cervical range of motion, tenderness of cervical structures, pain reproduced by neck movementMyelopathic signs

Important Teaching Point

Normal examination is common! The majority of patients with headache — including migraine, tension-type headache, medication overuse headache, and many secondary causes — have completely normal physical examinations between attacks. A normal examination does not exclude serious pathology; it must be interpreted in the context of the history.

Conversely, the examination becomes crucial for:

  • Identifying red flags that mandate urgent investigation (papilledema, focal signs, meningism)
  • Supporting specific diagnoses (autonomic features in cluster headache, temporal artery abnormality in giant cell arteritis)
  • Establishing a baseline for monitoring

5. Differential Diagnosis

Systematic approach organized by probability and clinical features

The differential diagnosis of headache is broad, but a systematic approach based on temporal pattern (acute versus chronic), associated features, and red flags allows efficient narrowing. Primary headache disorders account for approximately 90% of presentations, but the clinician must remain vigilant for the 10% that represent secondary causes, some of which are life-threatening.

Acute Headache (New-Onset or First Presentation)

ProbabilityConditionKey FeaturesRed Flags
COMMON (approximately 70%)Primary headache (first migraine or tension-type)Features typical of migraine or tension-type; no red flags; may have family historyNone — diagnosis of exclusion in acute setting
COMMONSystemic viral illnessFever, myalgia, upper respiratory symptoms; diffuse headache; resolves with illnessNeck stiffness, rash, altered mental status
LESS COMMON (approximately 20%)Sinusitis (acute bacterial)Facial pain/pressure, purulent nasal discharge, fever; pain worse on bending forwardPeriorbital swelling, visual changes, altered consciousness (suggests intracranial extension)
LESS COMMONHypertensive emergencyBlood pressure typically greater than 180/120 mmHg with end-organ damage; diffuse headacheEncephalopathy, visual changes, chest pain, acute kidney injury
UNCOMMON BUT SERIOUS (approximately 10%)Subarachnoid hemorrhageThunderclap onset; “worst headache of life”; may have neck stiffness, vomiting, altered consciousnessThunderclap onset, meningism, focal signs, decreased consciousness
UNCOMMON BUT SERIOUSBacterial meningitisFever, neck stiffness, photophobia, altered mental status; rapid progressionFever, meningism, rash, altered consciousness, seizures
UNCOMMON BUT SERIOUSViral encephalitisHeadache with altered behavior, confusion, seizures, fever; may have focal signsAltered mental status, personality change, seizures, focal signs
UNCOMMON BUT SERIOUSCerebral venous thrombosisProgressive headache over days; may have focal signs, seizures; risk factors include oral contraceptives, pregnancy, thrombophiliaProgressive headache, seizures, focal signs, papilledema
UNCOMMON BUT SERIOUSArterial dissection (carotid or vertebral)Unilateral head/neck pain, often following minor trauma; may have Horner syndrome, stroke symptomsHorner syndrome, neck pain, stroke symptoms in young patient
UNCOMMON BUT SERIOUSAcute angle-closure glaucomaSevere eye pain, headache, nausea, visual halos; mid-dilated fixed pupil, red eyeEye pain with visual loss, fixed mid-dilated pupil
UNCOMMON BUT SERIOUSCarbon monoxide poisoningHeadache, nausea, confusion; multiple household members affected; winter months, faulty heatingAltered consciousness, multiple affected individuals, winter presentation

Chronic Headache (Greater Than 3 Months Duration)

Step-by-Step Approach to Chronic Headache:

  1. Step 1: Exclude medication overuse headache — ask about frequency of acute medication use (more than 10-15 days per month)
  2. Step 2: Identify primary headache type — migraine, tension-type, or trigeminal autonomic cephalalgia based on features
  3. Step 3: Consider secondary causes if red flags present or atypical features — imaging and further investigation
  4. Step 4: Assess for multiple overlapping headache types — common in chronic presentations
ProbabilityConditionApproximate FrequencyKey Distinguishing Features
COMMONChronic migraineApproximately 2% of populationHeadache 15 or more days per month for more than 3 months; at least 8 days with migraine features; often evolved from episodic migraine
COMMONChronic tension-type headacheApproximately 2-3% of populationHeadache 15 or more days per month; bilateral, pressing, mild-to-moderate; no nausea or vomiting; may have mild photophobia or phonophobia (not both)
COMMONMedication overuse headache1-2% of population; up to 50% of chronic daily headacheHeadache 15 or more days per month; regular overuse of acute medication more than 10-15 days per month for more than 3 months; often superimposed on migraine or tension-type
LESS COMMONNew daily persistent headacheRare; less than 1%Daily headache from onset; patient can pinpoint exact day it began; often follows viral illness; may have migraine or tension-type features
LESS COMMONHemicrania continuaRareContinuous strictly unilateral headache; mild-to-moderate baseline with exacerbations; autonomic features during exacerbations; absolute response to indomethacin
LESS COMMONCervicogenic headacheApproximately 2-4% of chronic headacheUnilateral, starting in neck and radiating to head; reduced cervical range of motion; triggered by neck movement or posture
LESS COMMONIdiopathic intracranial hypertension1-2 per 100,000; higher in obese women of childbearing ageDaily headache, worse lying down, visual obscurations, pulsatile tinnitus, papilledema; typically young obese women
UNCOMMON BUT SERIOUSIntracranial mass (tumor, abscess)Less than 1% of chronic headacheProgressive headache; worse in morning; associated focal signs, seizures, personality change; papilledema
UNCOMMON BUT SERIOUSChronic subdural hematomaMore common in elderly, anticoagulated patientsProgressive headache, confusion, focal signs; may have history of minor trauma weeks earlier (or no recalled trauma)
UNCOMMON BUT SERIOUSGiant cell arteritisApproximately 20 per 100,000 in those over 50New headache in patient over 50; scalp or temporal tenderness; jaw claudication; visual symptoms; elevated inflammatory markers

Trigeminal Autonomic Cephalalgias

ConditionAttack DurationAttack FrequencyKey FeaturesTreatment Response
Cluster headache15-180 minutes1-8 per day during cluster periodStrictly unilateral, severe, periorbital; restlessness; ipsilateral autonomic features; circadian pattern; male predominanceOxygen, sumatriptan; verapamil for prevention
Paroxysmal hemicrania2-30 minutesMore than 5 per dayStrictly unilateral, severe; autonomic features; more frequent but shorter than clusterAbsolute response to indomethacin (diagnostic)
Short-lasting unilateral neuralgiform headache attacks (SUNCT/SUNA)1-600 seconds3-200 per dayVery brief, stabbing; prominent autonomic features; may be triggered by touchLamotrigine, topiramate; refractory to most treatments
Hemicrania continuaContinuousConstant baseline with exacerbationsStrictly unilateral, continuous; mild-to-moderate baseline; autonomic features during exacerbationsAbsolute response to indomethacin (diagnostic)

Anatomical Approach to Secondary Headache

Intracranial — Vascular

Subarachnoid hemorrhage

Intracerebral hemorrhage

Ischemic stroke (less common cause of headache)

Cerebral venous thrombosis

Arterial dissection (carotid, vertebral)

Reversible cerebral vasoconstriction syndrome

Pituitary apoplexy

Intracranial — Non-Vascular

Intracranial hypertension (idiopathic or secondary)

Intracranial hypotension (cerebrospinal fluid leak)

Mass lesion (tumor, abscess)

Hydrocephalus

Chiari malformation

Meningitis, encephalitis

Subdural or epidural hematoma

Extracranial — Head and Neck

Giant cell arteritis

Cervicogenic headache

Temporomandibular joint dysfunction

Acute sinusitis

Acute glaucoma

Dental pathology

Occipital neuralgia

Trigeminal neuralgia

Systemic Causes

Systemic infection with fever

Hypertensive emergency

Hypoxia, hypercapnia

Carbon monoxide poisoning

Medication-induced or substance-related

Metabolic (hypoglycemia, dialysis headache)

Pre-eclampsia/eclampsia

Anemia (severe)

Drug-Induced and Substance-Related Headache

Drug or SubstanceMechanismCharacteristicsTime Course
Nitrates (nitroglycerin, isosorbide)Nitric oxide-mediated vasodilationImmediate throbbing headache; may trigger delayed migraine in susceptible individualsMinutes after administration; resolves within hours
Phosphodiesterase-5 inhibitors (sildenafil, tadalafil)Vasodilation via nitric oxide pathwayDiffuse headache; dose-relatedHours; may persist with long-acting agents
DipyridamoleVasodilation, adenosine potentiationVery common; throbbing headacheOften improves with continued use over 1-2 weeks
Calcium channel blockers (dihydropyridines)VasodilationThrobbing headache, flushingMay improve with dose reduction or switching agents
Proton pump inhibitorsUncertain; possibly magnesium depletionDiffuse headache in some patientsMay develop after weeks of use
Hormone therapy (estrogen)Hormonal fluctuation; may improve or worsen migraineMay trigger migraine or alter patternVariable; often cyclic with hormone withdrawal
Caffeine withdrawalAdenosine receptor upregulation during chronic use; withdrawal causes vasodilationBilateral throbbing headache, fatigue12-24 hours after last caffeine; peaks at 1-2 days; resolves in 2-9 days
Alcohol (hangover)Dehydration, vasodilation, toxic metabolitesBilateral throbbing, nauseaHours after consumption; resolves within 24 hours
Carbon monoxideTissue hypoxia, direct toxic effectDiffuse headache, nausea, confusion; multiple household members affectedProgressive with exposure; resolves with removal from source and oxygen
Analgesic/triptan overuse (medication overuse headache)Central sensitization, receptor changes, impaired pain modulationDaily or near-daily headache; acute medications more than 10-15 days per monthDevelops over months; resolves weeks after withdrawal

Quick Reference: “If You See This, Think This”

Clinical ClueThink This FirstNext Step
Thunderclap headache (maximal in seconds)Subarachnoid hemorrhage until proven otherwiseCT head immediately; lumbar puncture if CT negative
Headache with fever and neck stiffnessMeningitisBlood cultures, empiric antibiotics, lumbar puncture
New headache over age 50 with scalp tendernessGiant cell arteritisUrgent ESR/CRP; start steroids if high suspicion; temporal artery biopsy
Unilateral headache with ipsilateral eye watering and restlessnessCluster headacheHigh-flow oxygen, subcutaneous sumatriptan for acute attack
Daily headache in patient taking painkillers most daysMedication overuse headacheWithdrawal of overused medication; start preventive therapy
Positional headache worse when uprightIntracranial hypotension (cerebrospinal fluid leak)MRI brain with contrast; may need CT myelogram
Positional headache worse when lying downRaised intracranial pressureUrgent imaging; fundoscopy for papilledema
Headache with papilledema in obese young womanIdiopathic intracranial hypertensionMRI/MRV to exclude venous thrombosis; lumbar puncture for opening pressure
Headache following neck trauma or manipulationCervical artery dissectionCT or MR angiography of head and neck
Severe eye pain with fixed mid-dilated pupilAcute angle-closure glaucomaEmergency ophthalmology referral
Headache with confusion affecting multiple household membersCarbon monoxide poisoningRemove from environment; check carboxyhemoglobin; high-flow oxygen
Strictly unilateral continuous headache responding to indomethacinHemicrania continua or paroxysmal hemicraniaIndomethacin trial (diagnostic and therapeutic)

6. Diagnostic Investigations

A stepwise, cost-effective approach guided by clinical suspicion

Investigation of headache should be guided by clinical features. The majority of primary headache disorders (migraine, tension-type headache, cluster headache) are diagnosed clinically without investigation. Investigations are indicated when red flags are present, the clinical picture is atypical, or there is a change in an established headache pattern.

Indications for Investigation

  • Red flags present — thunderclap onset, fever, neurological signs, papilledema, altered consciousness
  • New headache in patient over 50 — exclude giant cell arteritis and secondary causes
  • Change in established headache pattern — significant change in frequency, severity, or character
  • Atypical features — features not fitting recognized primary headache patterns
  • Treatment failure — inadequate response to appropriate treatment for presumed diagnosis
  • Immunocompromised patient — lower threshold for investigation
  • Patient anxiety — investigation may be reasonable for reassurance if clinical suspicion low

Baseline Investigations When Indicated

InvestigationPurposeWhat to Look ForPractical Points
Full blood countScreen for infection, anemia, malignancyLeukocytosis (infection); anemia (may contribute to headache); thrombocytosis (consider giant cell arteritis)Part of routine workup; non-specific but may guide further testing
Erythrocyte sedimentation rate (ESR) and C-reactive protein (CRP)Inflammatory markers; essential if giant cell arteritis suspectedESR typically greater than 50 mm/hour in giant cell arteritis; CRP usually elevated; both may be normal in 5% of casesOrder urgently if giant cell arteritis suspected; do not delay treatment waiting for results if clinical suspicion high
Basic metabolic panelElectrolytes, renal function, glucoseHypoglycemia, hyponatremia, uremia — all can cause headacheRoutine; particularly important if altered mental status
Thyroid function testsThyroid dysfunction can cause or exacerbate headacheHypothyroidism or hyperthyroidismConsider in chronic headache workup; not urgent
Carboxyhemoglobin levelCarbon monoxide poisoningElevated carboxyhemoglobin (greater than 3% non-smokers, greater than 10% smokers)Requires arterial or venous blood gas with co-oximetry; pulse oximetry not reliable

Neuroimaging

CT Head Without Contrast

Indications

  • Thunderclap headache — first-line to detect subarachnoid hemorrhage (sensitivity greater than 95% if within 6 hours, decreases with time)
  • Suspected intracranial hemorrhage
  • Head trauma with headache
  • Acute focal neurological signs
  • Initial screen when urgent imaging needed and MRI not immediately available

Limitations

  • Less sensitive than MRI for posterior fossa, pituitary, and white matter lesions
  • Sensitivity for subarachnoid hemorrhage decreases after 6-12 hours
  • May miss small tumors, arteriovenous malformations, or early infarcts
  • Does not visualize vascular pathology (requires CT angiography)

MRI Brain

Indications

  • Suspected mass lesion, tumor, or posterior fossa pathology
  • Pituitary pathology (pituitary apoplexy, adenoma)
  • White matter disease (multiple sclerosis, small vessel disease)
  • Intracranial hypotension (pachymeningeal enhancement, brain sag)
  • Cerebral venous thrombosis (MRI with MR venography)
  • Chiari malformation
  • Normal CT but high clinical suspicion for structural cause

Specific Sequences

  • T1 with gadolinium: Enhancing lesions, meningeal disease, pituitary
  • T2/FLAIR: White matter lesions, edema
  • DWI: Acute infarction
  • GRE/SWI: Blood products, microhemorrhages
  • MRA: Arterial pathology (aneurysm, dissection, vasoconstriction)
  • MRV: Venous thrombosis

CT/MR Angiography

IndicationModalityWhat to Look For
Suspected aneurysm (after subarachnoid hemorrhage)CT angiography (first-line) or MR angiographyAneurysm location, size, morphology; may need catheter angiography if CTA negative
Arterial dissectionCT angiography or MR angiography with fat-suppressed T1Intramural hematoma, luminal stenosis, pseudoaneurysm; include cervical vessels
Reversible cerebral vasoconstriction syndromeCT angiography or MR angiography; may need repeat imagingMultifocal segmental vasoconstriction of cerebral arteries; may be normal early
Cerebral venous thrombosisMR venography (preferred) or CT venographyFilling defect in dural sinus or cortical vein; absent flow signal

Lumbar Puncture

When to Perform Lumbar Puncture

  • Suspected meningitis or encephalitis — urgent; do not delay for imaging unless focal signs or papilledema
  • Suspected subarachnoid hemorrhage with negative CT — essential if CT negative and clinical suspicion persists; look for xanthochromia (appears 12 hours after bleed)
  • Suspected idiopathic intracranial hypertension — measure opening pressure (greater than 25 cm H2O diagnostic in appropriate context); therapeutic effect from cerebrospinal fluid removal
  • Suspected intracranial hypotension — typically low or unmeasurable opening pressure; may show elevated protein
  • Suspected carcinomatous meningitis — cerebrospinal fluid cytology

Contraindications: Imaging first if focal signs, papilledema, altered consciousness, or immunocompromised to exclude mass lesion. Coagulopathy is a relative contraindication.

Cerebrospinal Fluid Analysis

ParameterNormal ValuesAbnormal Findings and Significance
Opening pressure10-20 cm H2O (up to 25 cm H2O)Elevated: intracranial hypertension, meningitis, venous thrombosis. Low: intracranial hypotension
AppearanceClear and colorlessTurbid: infection. Xanthochromia (yellow): subarachnoid hemorrhage (appears 12 hours after bleed, persists 2 weeks)
White blood cellsLess than 5 cells per microliterNeutrophils: bacterial meningitis. Lymphocytes: viral, tuberculous, or fungal meningitis
Protein15-45 mg/dLElevated: infection, hemorrhage, malignancy, Guillain-Barré syndrome
GlucoseGreater than 60% of serum glucoseLow: bacterial, tuberculous, or fungal meningitis; carcinomatous meningitis
Red blood cellsNone (or traumatic tap)Elevated with xanthochromia: subarachnoid hemorrhage. Elevated without xanthochromia: traumatic tap

Targeted Investigations by Suspected Etiology

If Suspecting Giant Cell Arteritis

First-Line Tests

  • ESR: Typically greater than 50 mm/hour; very high values (greater than 100 mm/hour) strongly suggestive
  • CRP: Usually elevated; may be more sensitive than ESR
  • Platelet count: Often elevated (reactive thrombocytosis)
  • Full blood count: Normocytic anemia common

Confirmatory Tests

  • Temporal artery biopsy: Gold standard; should be performed within 2 weeks of starting steroids; may be negative due to skip lesions (bilateral biopsy increases yield)
  • Temporal artery ultrasound: “Halo sign” (hypoechoic ring around vessel); operator-dependent; increasingly used as first-line in experienced centers
  • PET-CT or MRA: May show large vessel involvement

If Suspecting Subarachnoid Hemorrhage

First-Line Tests

  • CT head without contrast: Sensitivity greater than 95% within 6 hours; decreases to approximately 85% at 24 hours; approximately 50% at 1 week
  • CT angiography: Perform immediately if CT shows blood to identify aneurysm source

If CT Negative

  • Lumbar puncture: Perform if CT negative and clinical suspicion persists; wait at least 6-12 hours from headache onset for xanthochromia to develop
  • Xanthochromia: Spectrophotometry preferred over visual inspection; bilirubin indicates breakdown of hemoglobin confirming true hemorrhage versus traumatic tap

If Suspecting Idiopathic Intracranial Hypertension

First-Line Tests

  • MRI brain with MR venography: Exclude mass lesion and venous thrombosis; may show empty sella, flattened posterior globe, distended optic nerve sheaths
  • Fundoscopy: Document papilledema; grade severity

Confirmatory Tests

  • Lumbar puncture: Opening pressure greater than 25 cm H2O in lateral decubitus position (diagnostic criterion); cerebrospinal fluid composition normal
  • Visual field testing: Perimetry to document and monitor visual field loss (enlarged blind spot, peripheral constriction)
  • Optical coherence tomography: Quantifies optic disc swelling; useful for monitoring

If Suspecting Intracranial Hypotension

First-Line Tests

  • MRI brain with gadolinium: Diffuse pachymeningeal enhancement, brain sagging, subdural collections, pituitary engorgement
  • Lumbar puncture: Low or unmeasurable opening pressure (though may be normal if intermittent leak); may show elevated protein

Localization of Leak

  • MRI spine: May show extradural cerebrospinal fluid collection
  • CT myelography: Gold standard for leak localization; requires lumbar injection of contrast
  • Radioisotope cisternography: Alternative for leak detection

Empiric Treatment Trials as Diagnostic Tools

When Response to Treatment Confirms Diagnosis

In some headache disorders, response to specific treatment is a diagnostic criterion:

  1. Indomethacin trial (hemicrania continua, paroxysmal hemicrania): Start indomethacin 25 mg three times daily, increase to 50-75 mg three times daily. Complete resolution of headache within days confirms diagnosis. Use gastroprotection.
  2. High-flow oxygen (cluster headache): 100% oxygen at 12-15 liters per minute via non-rebreather mask for 15-20 minutes. Rapid relief (within 15 minutes) supports cluster headache diagnosis.
  3. Triptan trial (migraine): Response to triptans supports migraine diagnosis, though not specific.
  4. Occipital nerve block (cervicogenic headache, occipital neuralgia): Temporary relief following local anesthetic injection supports diagnosis and predicts response to further intervention.
  5. Proton pump inhibitor trial: If reflux-related headache suspected (rare), 8-week high-dose proton pump inhibitor trial.

Summary: Investigation by Clinical Scenario

Clinical ScenarioFirst-Line InvestigationSecond-Line if Needed
Thunderclap headacheCT head immediately, then CT angiography if blood presentLumbar puncture if CT negative (xanthochromia)
Headache with fever and meningismBlood cultures, lumbar puncture (unless contraindicated)CT head before lumbar puncture if focal signs or reduced consciousness
New headache over age 50ESR, CRP, full blood count; CT or MRI brainTemporal artery biopsy or ultrasound if giant cell arteritis suspected
Headache with papilledemaMRI brain with MR venographyLumbar puncture for opening pressure (after excluding mass)
Positional headache (worse upright)MRI brain with gadoliniumCT myelography for leak localization
Headache after head or neck traumaCT head; CT angiography of head and neckMRI if CT normal but symptoms persist
Chronic daily headache with medication overuseClinical diagnosis; imaging only if atypical featuresMRI if treatment failure or red flags develop
Typical migraine or tension-type headacheNo routine investigation neededMRI if atypical features, treatment failure, or patient anxiety

7. Pattern Recognition and Clinical Decision-Making

Practical algorithms and decision pathways

Step 1: Is This Urgent?

Clinical ScenarioUrgency LevelImmediate Action
Thunderclap headache (maximal intensity within seconds to one minute)EMERGENTCT head immediately; if negative, lumbar puncture for xanthochromia; CT angiography if blood found
Headache with fever, neck stiffness, altered mental statusEMERGENTBlood cultures, empiric antibiotics (do not delay), lumbar puncture when safe; dexamethasone
Headache with focal neurological deficitEMERGENTCT head immediately; consider stroke, mass lesion, or hemorrhage; neurology consultation
Headache with papilledemaEMERGENTUrgent MRI/MRV to exclude mass and venous thrombosis; do not perform lumbar puncture until imaging complete
Headache with decreased level of consciousnessEMERGENTABC assessment, CT head, consider intubation if GCS declining; treat for raised intracranial pressure if suspected
New headache in patient over 50 with scalp tenderness or visual symptomsURGENTESR/CRP urgently; start high-dose corticosteroids same day if giant cell arteritis suspected (do not wait for biopsy)
Severe cluster headache attackURGENTHigh-flow oxygen 12-15 L/min via non-rebreather; subcutaneous sumatriptan 6 mg if oxygen unavailable or ineffective
Headache with unilateral Horner syndrome after neck traumaURGENTCT or MR angiography of head and neck to exclude carotid dissection
Severe acute migraine with significant distressURGENTParenteral treatment: IV metoclopramide plus IV NSAID (ketorolac) or subcutaneous sumatriptan; consider IV fluids
Chronic headache without red flags, established patternROUTINEComprehensive history; assess for medication overuse; consider preventive therapy; outpatient follow-up
Typical episodic migraine or tension-type headacheROUTINEConfirm diagnosis clinically; acute treatment optimization; preventive therapy if frequent; headache diary

Step 2: Classify by Temporal Pattern

Acute/New-Onset

Duration: First episode or less than 4 weeks

Priority: Exclude secondary causes

Proceed to Algorithm A

Episodic Recurrent

Duration: Recurrent discrete episodes with pain-free intervals

Priority: Identify primary headache type

Proceed to Algorithm B

Chronic Daily

Duration: Headache 15 or more days per month for more than 3 months

Priority: Assess for medication overuse

Proceed to Algorithm C

Step 3: Follow the Appropriate Algorithm

Algorithm A: Acute/New-Onset Headache

Clinical ScenarioMost Likely DiagnosisAction
Thunderclap onset, worst headache everSubarachnoid hemorrhage until proven otherwiseEmergency CT head → CT angiography if positive → lumbar puncture if CT negative
Fever, neck stiffness, photophobiaMeningitisBlood cultures → empiric antibiotics immediately → lumbar puncture → adjust antibiotics based on results
Unilateral throbbing with nausea, photo/phonophobia, family historyFirst migraine presentationClinical diagnosis if typical features, no red flags → acute treatment → consider MRI if atypical
Bilateral pressing headache with viral symptomsSystemic viral illnessSymptomatic treatment → reassess if worsening or not resolving with illness
Headache with blood pressure greater than 180/120 and end-organ symptomsHypertensive emergencyControlled blood pressure reduction → CT head if neurological symptoms → treat end-organ damage
Severe unilateral headache with ipsilateral autonomic features, restlessnessCluster headache (first presentation)High-flow oxygen for acute attack → MRI to exclude secondary cause → start verapamil if cluster confirmed
Headache following head/neck trauma with Horner syndromeCervical artery dissectionCT or MR angiography of head and neck → anticoagulation or antiplatelet per findings

Algorithm B: Episodic Recurrent Headache

Clinical ScenarioMost Likely DiagnosisAction
Unilateral, pulsating, moderate-to-severe, nausea, photo/phonophobia, worsened by activity, lasts 4-72 hoursMigraine without auraConfirm ICHD-3 criteria → optimize acute treatment (triptans, NSAIDs) → preventive therapy if 4 or more days per month
Same as above, preceded by visual symptoms (scintillations, scotoma) lasting 5-60 minutesMigraine with auraSame as above → counsel regarding aura symptoms → consider contraception implications (estrogen contraindicated in migraine with aura)
Bilateral, pressing/tightening, mild-to-moderate, no nausea/vomiting, not worsened by activityEpisodic tension-type headacheSimple analgesics for acute attacks → limit use to avoid medication overuse → stress management, physical therapy
Strictly unilateral, severe periorbital pain, 15-180 minutes, 1-8 attacks per day, ipsilateral autonomic features, restlessnessCluster headacheAcute: oxygen or sumatriptan → preventive: verapamil during cluster period → consider MRI to exclude secondary causes
Strictly unilateral, 2-30 minute attacks, more than 5 per day, autonomic featuresParoxysmal hemicraniaIndomethacin trial (diagnostic) → complete response confirms diagnosis → continue indomethacin with gastroprotection
Headache triggered by coughing, straining, or exertionPrimary cough headache or primary exertional headache (but must exclude secondary causes)MRI brain to exclude Chiari malformation and other structural causes → if normal, trial of indomethacin

Algorithm C: Chronic Daily Headache

Clinical ScenarioMost Likely DiagnosisAction
Daily headache in patient taking acute medications more than 10-15 days per monthMedication overuse headacheWithdrawal of overused medications (may need bridge therapy) → start preventive therapy simultaneously → expect temporary worsening
Headache 15 or more days per month, at least 8 days with migraine features, evolved from episodic migraineChronic migraineRule out medication overuse → preventive therapy (topiramate, propranolol, amitriptyline, or CGRP monoclonal antibodies) → consider botulinum toxin
Headache 15 or more days per month, bilateral pressing, mild-to-moderate, no migraine featuresChronic tension-type headacheAmitriptyline for prevention → physical therapy → address stress, sleep, and lifestyle factors
Daily headache from onset with exact recall of start date, often after viral illnessNew daily persistent headacheMRI to exclude secondary cause → treat based on phenotype (migraine-like or tension-like) → often refractory
Continuous strictly unilateral headache with exacerbations and autonomic featuresHemicrania continuaIndomethacin trial → complete response confirms diagnosis → MRI to exclude secondary cause
Daily headache worse in morning, visual obscurations, pulsatile tinnitus, obese young womanIdiopathic intracranial hypertensionMRI/MRV → lumbar puncture for opening pressure → acetazolamide → weight loss → ophthalmology monitoring

“What Do I Do If…” Decision Reference

Clinical SituationImmediate ActionNext Step
CT is negative but I still suspect subarachnoid hemorrhagePerform lumbar puncture (wait 6-12 hours from onset if possible)Look for xanthochromia (spectrophotometry); if positive, CT angiography to find source
Patient over 50 with new headache and elevated ESRStart prednisolone 40-60 mg daily immediatelyArrange temporal artery biopsy within 2 weeks; do not wait for biopsy to start treatment
Migraine is not responding to triptansEnsure adequate dose, early treatment, and correct formulationTry different triptan; consider combination with NSAID; rule out medication overuse; consider CGRP antagonists
Patient is overusing analgesicsExplain medication overuse headache; plan withdrawalStop overused medication (abrupt or tapered); start preventive therapy; bridge with limited use of different drug class
Patient has migraine with aura and wants contraceptionAvoid combined hormonal contraceptives (estrogen)Recommend progestogen-only methods, copper IUD, or barrier methods; migraine with aura plus estrogen increases stroke risk
I suspect cluster headache but patient is not in an attackDetailed history to confirm cluster features; prescribe oxygen and sumatriptanMRI brain to exclude secondary causes; start verapamil if in cluster period; refer to headache specialist
Patient has chronic daily headache and no clear diagnosisAssess for medication overuse first; detailed diary for 4 weeksMRI if not already done; identify predominant phenotype; trial of appropriate preventive therapy; consider indomethacin trial if strictly unilateral
Headache is worse when patient stands upConsider intracranial hypotension (cerebrospinal fluid leak)MRI brain with gadolinium → if characteristic findings, conservative management first; epidural blood patch if refractory
Headache is worse when patient lies downConsider raised intracranial pressureFundoscopy for papilledema; urgent MRI/MRV; lumbar puncture for opening pressure after imaging
Patient presents with first seizure and headacheEmergency CT headConsider cerebral venous thrombosis (especially if papilledema), mass lesion, encephalitis; MRI/MRV; lumbar puncture if infection suspected

Troubleshooting Refractory Headache

When Treatment Is Not Working, Ask These Questions

  • Is the diagnosis correct? — Review history; consider alternative diagnoses; reassess for secondary causes
  • Is there medication overuse? — This is the most common reason for treatment failure; carefully quantify acute medication use
  • Was preventive treatment adequate? — Appropriate drug, adequate dose, sufficient duration (at least 8-12 weeks at target dose)?
  • Was adherence good? — Many patients stop preventive medications due to side effects or lack of immediate benefit
  • Are there multiple overlapping headache types? — Common to have migraine plus tension-type plus medication overuse
  • Are there perpetuating factors? — Sleep disorders, caffeine, stress, depression, anxiety, musculoskeletal issues
  • Has something changed? — New secondary cause superimposed on primary headache disorder
  • Would specialist referral help? — Headache specialist, pain clinic, multidisciplinary team

When to Refer to a Specialist

Urgent Referral

  • Suspected giant cell arteritis — ophthalmology and rheumatology
  • Papilledema with visual symptoms — ophthalmology and neurology
  • Trigeminal autonomic cephalalgia not responding to first-line treatment
  • New daily persistent headache (often refractory)
  • Intracranial hypotension requiring blood patch

Routine Referral

  • Chronic migraine failing multiple preventive treatments
  • Consideration for botulinum toxin or CGRP monoclonal antibodies
  • Diagnostic uncertainty after initial workup
  • Medication overuse headache with failed withdrawal attempts
  • Significant psychiatric comorbidity affecting headache management

8. Clinical Pearls and Pitfalls

Practical wisdom — learn from successes and avoid common mistakes

Must-Know Clinical Pearls

Thunderclap headache is subarachnoid hemorrhage until proven otherwise: Even with a normal CT, lumbar puncture is mandatory if clinical suspicion persists. CT sensitivity drops from greater than 95% at 6 hours to approximately 50% at one week.
Medication overuse is the most common cause of chronic daily headache: Always quantify acute medication use. Using analgesics or triptans more than 10-15 days per month transforms episodic headache into daily headache.
Most “sinus headaches” are actually migraine: Studies show that up to 90% of self-diagnosed sinus headaches meet criteria for migraine. True bacterial sinusitis usually has purulent discharge and fever.
Giant cell arteritis can cause irreversible blindness within hours: In any patient over 50 with new headache, scalp tenderness, jaw claudication, or visual symptoms, start high-dose corticosteroids immediately — do not wait for biopsy or inflammatory markers.
Cluster headache patients are restless; migraine patients prefer stillness: This behavioral difference is highly discriminating. Cluster headache patients pace, rock, or bang their head; migraine patients lie down in a dark, quiet room.
Response to indomethacin is diagnostic for certain headaches: Complete resolution with indomethacin confirms hemicrania continua or paroxysmal hemicrania. This is both diagnostic and therapeutic — trial it when considering these diagnoses.
A normal neurological examination does not exclude serious pathology: Subarachnoid hemorrhage, meningitis, and early mass lesions may present with completely normal examination. The history drives the investigation.
Positional headache is a valuable clue: Worse lying down suggests raised intracranial pressure; worse standing suggests intracranial hypotension. This simple question can dramatically change the differential.

Critical Pitfalls to Avoid

Accepting a normal CT as excluding subarachnoid hemorrhage: CT sensitivity decreases with time. If the clinical picture suggests subarachnoid hemorrhage and CT is negative, lumbar puncture is mandatory — xanthochromia may be the only evidence.
Waiting for biopsy results before treating suspected giant cell arteritis: Vision loss can occur within hours. Start corticosteroids immediately if clinical suspicion is high. Biopsy remains positive for at least 2 weeks after starting steroids.
Attributing new headache in an older patient to “tension”: New-onset headache after age 50 requires investigation. Consider giant cell arteritis, mass lesion, subdural hematoma, and medication-related causes before diagnosing primary headache.
Prescribing frequent acute medications without addressing overuse: Providing ongoing prescriptions for analgesics or triptans without monitoring frequency perpetuates medication overuse headache. Always quantify and counsel.
Stopping preventive medications too early: Most preventive medications take 8-12 weeks at target dose to show full effect. Stopping after 2-4 weeks due to “no improvement” is premature.
Missing meningeal signs in elderly or immunocompromised patients: Classic signs of meningism are often absent in these populations. Have a low threshold for lumbar puncture if meningitis is suspected clinically.
Prescribing combined hormonal contraceptives to women with migraine with aura: This significantly increases stroke risk. Migraine with aura is a contraindication to estrogen-containing contraceptives.
Performing lumbar puncture without imaging when papilledema or focal signs are present: This risks herniation if there is a mass lesion. Always image first when there are signs suggesting raised intracranial pressure or focal pathology.

Key Takeaways

  • Primary headache disorders (migraine, tension-type, cluster) account for approximately 90% of headache presentations, but always consider and exclude secondary causes when red flags are present.
  • Thunderclap headache (maximal intensity within seconds) requires emergency investigation for subarachnoid hemorrhage regardless of examination findings.
  • New headache in patients over 50 should prompt consideration of giant cell arteritis, malignancy, and subdural hematoma — do not assume a primary headache disorder.
  • Medication overuse headache is under-recognized and is the most common cause of chronic daily headache that fails to respond to treatment.
  • The clinical history is the most important diagnostic tool — most primary headaches are diagnosed clinically without investigation.
  • Physical examination in primary headache is often normal; its main value is detecting red flags that indicate secondary causes.
  • Fundoscopy should be performed in all patients with new, severe, or progressive headache to detect papilledema.
  • Positional features are diagnostically valuable: worse lying down suggests raised intracranial pressure; worse standing suggests intracranial hypotension.
  • Cluster headache is distinguished by restlessness during attacks and ipsilateral autonomic features — high-flow oxygen is first-line acute treatment.
  • Response to indomethacin is diagnostic for paroxysmal hemicrania and hemicrania continua — trial it when these diagnoses are considered.
  • Prevention is key in frequent headache — patients having 4 or more migraine days per month benefit from preventive therapy rather than relying on acute treatment alone.
  • Always consider multiple overlapping diagnoses — it is common to have migraine plus tension-type headache plus medication overuse in the same patient.

Quick Reference Algorithm

Systematic Approach to Headache:

  1. Assess urgency: Are there red flags requiring emergency investigation? (thunderclap onset, fever with meningism, focal neurological signs, papilledema, altered consciousness)
  2. Classify temporally: Is this acute/new-onset, episodic recurrent, or chronic daily headache?
  3. Take targeted history: Use the “HEADACHE” mnemonic; ask about positional features, medication use, and autonomic symptoms
  4. Perform focused examination: Vital signs, fundoscopy, cranial nerves, meningeal signs, temporal arteries in patients over 50
  5. Investigate appropriately: Based on clinical suspicion — remember most primary headaches need no investigation
  6. Make a specific diagnosis: Apply ICHD-3 criteria; consider secondary causes if atypical features
  7. Address medication overuse: If present, this must be addressed before other treatments will be effective
  8. Initiate appropriate treatment: Acute treatment for attacks; preventive therapy if frequent; lifestyle modification
  9. Plan follow-up: Use headache diary; reassess diagnosis if treatment fails; adjust management accordingly