Clinical Approach to Headache
Comprehensive Practical Framework1. Symptom Overview
Understanding the clinical significance and classification of Headache
Headache is one of the most common symptoms encountered in clinical practice, affecting approximately 50% of the global population annually. It accounts for roughly 4% of all emergency department visits and is the fourth leading cause of visits to outpatient clinics. The lifetime prevalence of headache exceeds 90%, with tension-type headache affecting 30-78% of adults and migraine affecting 12-15% of the population. Despite its ubiquity, headache remains a diagnostic challenge because it can represent anything from benign primary disorders to life-threatening emergencies.
Definition
Headache is defined as pain located anywhere in the region of the head, including the face, temples, and upper cervical area. It arises from activation of pain-sensitive structures within the cranium (meninges, blood vessels, cranial nerves) or extracranial tissues (muscles, fascia, periosteum, skin, blood vessels). The brain parenchyma itself is insensate and does not generate pain.
The Fundamental Division: Primary vs Secondary Headache
Primary Headache Disorders
Definition: Headache is the disease itself; no underlying structural, metabolic, or systemic cause.
Prevalence: Account for over 90% of all headaches.
Examples: Migraine, tension-type headache, cluster headache, other trigeminal autonomic cephalalgias.
Clinical significance: Diagnosis based on clinical criteria; investigations typically normal.
Secondary Headache Disorders
Definition: Headache is a symptom of an identifiable underlying condition.
Prevalence: Account for less than 10% of headaches but carry higher morbidity and mortality.
Examples: Subarachnoid hemorrhage, meningitis, brain tumor, giant cell arteritis, idiopathic intracranial hypertension.
Clinical significance: Requires identification and treatment of the underlying cause.
Classification by Duration and Temporal Pattern
| Category | Duration | Common Causes | Clinical Significance |
|---|---|---|---|
| Hyperacute (Thunderclap) | Peaks within seconds to 1 minute | Subarachnoid hemorrhage, cerebral venous thrombosis, arterial dissection, reversible cerebral vasoconstriction syndrome, pituitary apoplexy | Medical emergency until proven otherwise; requires immediate investigation |
| Acute | Less than 4 weeks | Viral illness, sinusitis, first migraine attack, medication-related, intracranial infection, hypertensive emergency | New-onset headache requires careful evaluation to exclude secondary causes |
| Subacute | 4 weeks to 3 months | Evolving intracranial mass, subdural hematoma, giant cell arteritis, idiopathic intracranial hypertension, medication overuse | Progressive or changing headache pattern warrants investigation |
| Chronic | Greater than 3 months | Chronic migraine, chronic tension-type headache, new daily persistent headache, medication overuse headache, hemicrania continua | Focus on identifying headache type, triggers, and medication overuse |
Classification by Character and Quality
| Character | Description | Typical Associations |
|---|---|---|
| Pulsating/Throbbing | Rhythmic pain corresponding with heartbeat | Migraine, fever-related headache, hangover, arteriovenous malformation |
| Pressing/Tightening | Band-like or vice-like pressure sensation | Tension-type headache, cervicogenic headache, medication overuse headache |
| Stabbing/Piercing | Brief, sharp, ice-pick like jabs | Primary stabbing headache, trigeminal neuralgia, cluster headache |
| Burning | Hot, searing quality | Neuropathic pain, occipital neuralgia, post-herpetic neuralgia |
| Explosive | Sudden, severe, “worst headache of life” | Subarachnoid hemorrhage, reversible cerebral vasoconstriction syndrome, thunderclap headache |
| Deep/Boring | Constant, deep-seated ache | Cluster headache, hemicrania continua, intracranial mass |
Classification by Location
Unilateral
Strictly unilateral: Cluster headache, paroxysmal hemicrania, hemicrania continua, trigeminal neuralgia
Usually unilateral: Migraine (60% unilateral), cervicogenic headache
Bilateral
Holocephalic: Tension-type headache, meningitis, subarachnoid hemorrhage, idiopathic intracranial hypertension
Bifrontal: Frontal sinusitis, tension-type headache
Localized
Periorbital: Cluster headache, acute glaucoma, optic neuritis
Temporal: Giant cell arteritis, temporomandibular joint dysfunction
Occipital: Cervicogenic, occipital neuralgia, posterior fossa lesions
Classification by Pattern and Timing
| Pattern | Description | Suggests |
|---|---|---|
| Early morning headache | Present upon waking, may improve with upright position | Raised intracranial pressure, sleep apnea, medication overuse, carbon monoxide exposure |
| Nocturnal awakening | Awakens patient from sleep at consistent times | Cluster headache (alarm clock headache), hypnic headache, raised intracranial pressure |
| End-of-day worsening | Builds throughout the day, worst in evening | Tension-type headache, eye strain, cervicogenic headache |
| Positional | Changes with body position | Worse upright: low cerebrospinal fluid pressure; Worse supine: raised intracranial pressure |
| Exertional | Triggered by physical exertion, Valsalva, cough, or sexual activity | Primary exertional headache, or secondary to Chiari malformation, intracranial lesion |
| Episodic clustering | Multiple attacks daily over weeks, then remission for months | Cluster headache, paroxysmal hemicrania |
| Menstrual association | Occurs predictably with menstrual cycle | Menstrual migraine (typically perimenstrual, days -2 to +3) |
Key Concept: The “Big Five” Primary Headaches
Five primary headache disorders account for the vast majority of headache presentations:
- Tension-type headache — most common (lifetime prevalence 30-78%)
- Migraine without aura — second most common (12% prevalence)
- Migraine with aura — subset of migraine (4-5% prevalence)
- Cluster headache — rare but distinctive (0.1% prevalence)
- Medication overuse headache — iatrogenic, increasingly common (1-2% prevalence)
Global Impact of Headache Disorders
Migraine alone is ranked as the second leading cause of years lived with disability worldwide. Headache disorders collectively represent the third highest cause of disability globally. The economic burden includes direct healthcare costs, lost productivity, and reduced quality of life. Despite this, headache disorders remain underdiagnosed and undertreated, with fewer than 50% of migraine sufferers receiving an accurate diagnosis.
2. Pathophysiology and Mechanisms
Understanding the underlying mechanisms of Headache
Understanding headache pathophysiology is essential for rational diagnosis and treatment. The brain parenchyma itself lacks pain receptors, so headache arises from activation of pain-sensitive structures: the meninges, blood vessels, cranial nerves (particularly the trigeminal nerve), and extracranial tissues including muscles, fascia, and periosteum. The trigeminovascular system serves as the final common pathway for most headache disorders.
Pain-Sensitive Structures of the Head
| Structure | Innervation | Clinical Relevance |
|---|---|---|
| Dura mater and venous sinuses | Trigeminal nerve (cranial nerve V, ophthalmic division primarily) | Referred pain to frontal region; activated in migraine, meningitis, intracranial hypotension |
| Cerebral arteries (proximal) | Trigeminal nerve | Distension, inflammation, or spasm causes headache; key in migraine and subarachnoid hemorrhage |
| Cranial nerves V, VII, IX, X | Direct nociceptive fibers | Neuralgias produce characteristic stabbing pain in nerve distribution |
| Upper cervical nerve roots (C1-C3) | Cervical spinal nerves | Cervicogenic headache; convergence with trigeminal nucleus explains referred pain to head |
| Scalp muscles and fascia | Trigeminal nerve, cervical nerves | Tension-type headache; pericranial muscle tenderness |
| Periosteum of skull | Trigeminal nerve, cervical nerves | Trauma, bone lesions, Paget disease |
| Extracranial arteries | Trigeminal nerve | Giant cell arteritis affects temporal, occipital arteries |
| Paranasal sinuses | Trigeminal nerve (V1, V2) | Sinusitis causes referred pain; often misdiagnosed when actually migraine |
| Eyes and orbits | Trigeminal nerve (V1) | Acute glaucoma, optic neuritis; cluster headache periorbital location |
The Trigeminovascular System
The trigeminovascular system is central to the pathophysiology of primary headache disorders, particularly migraine and cluster headache. It consists of sensory nerve fibers from the trigeminal ganglion that innervate cerebral blood vessels and meninges.
| Component | Structure | Function |
|---|---|---|
| Peripheral afferents | Trigeminal nerve fibers surrounding meningeal vessels | Detect noxious stimuli; release vasoactive neuropeptides (calcitonin gene-related peptide, substance P) |
| First-order neurons | Trigeminal ganglion | Cell bodies of trigeminal sensory neurons |
| Second-order neurons | Trigeminal nucleus caudalis (in brainstem/upper cervical cord) | Receives convergent input from trigeminal and upper cervical afferents; explains referred pain patterns |
| Third-order neurons | Thalamus (ventral posteromedial nucleus) | Relay to cortex for conscious pain perception |
| Cortical processing | Somatosensory cortex, insular cortex, anterior cingulate | Pain perception, emotional response, autonomic responses |
Migraine Pathophysiology
Migraine is now understood as a complex neurovascular disorder involving cortical, subcortical, and brainstem mechanisms rather than a purely vascular phenomenon.
Cortical Spreading Depression
Mechanism: Wave of neuronal depolarization followed by suppression that spreads across the cortex at 3-5 mm/minute.
Clinical correlation: Corresponds to the spreading visual and sensory symptoms of migraine aura.
Downstream effects: Activates trigeminal afferents in the meninges, triggering the headache phase.
Trigeminal Activation
Mechanism: Release of calcitonin gene-related peptide (CGRP) from trigeminal nerve endings.
Effects: Vasodilation, neurogenic inflammation, mast cell degranulation, plasma protein extravasation.
Therapeutic target: CGRP antagonists and monoclonal antibodies are effective migraine treatments.
| Phase | Mechanism | Clinical Features |
|---|---|---|
| Prodrome (hours to days before) | Hypothalamic activation; dopaminergic and serotoninergic changes | Yawning, food cravings, mood changes, neck stiffness, fatigue |
| Aura (5-60 minutes) | Cortical spreading depression | Visual phenomena (scintillating scotoma), sensory symptoms, speech disturbance |
| Headache (4-72 hours) | Trigeminovascular activation; central sensitization | Unilateral throbbing pain, photophobia, phonophobia, nausea, cutaneous allodynia |
| Postdrome (hours to days after) | Recovery phase; residual cortical dysfunction | Fatigue, cognitive difficulties, mood changes |
Tension-Type Headache Pathophysiology
Peripheral Mechanisms
- Pericranial muscle tenderness: Increased tenderness on palpation of head and neck muscles
- Myofascial trigger points: Localized areas of muscle hyperirritability
- Sustained muscle contraction: Leads to local ischemia and sensitization
Central Mechanisms
- Central sensitization: Enhanced excitability of second-order neurons in trigeminal nucleus
- Impaired supraspinal modulation: Reduced descending inhibition of pain pathways
- Chronification: Repeated peripheral input leads to persistent central changes
Cluster Headache and Trigeminal Autonomic Cephalalgias
Cluster headache involves activation of both the trigeminovascular system and the trigeminal-autonomic reflex, with a central role for the hypothalamus.
| Component | Mechanism | Clinical Manifestation |
|---|---|---|
| Hypothalamic activation | Posterior hypothalamus acts as pacemaker; explains circadian and circannual periodicity | Attacks occur at same time daily; seasonal clustering |
| Trigeminal activation | First division trigeminal nerve activation causes severe pain | Excruciating unilateral periorbital/temporal pain |
| Parasympathetic activation | Trigeminal-autonomic reflex via superior salivatory nucleus | Lacrimation, conjunctival injection, nasal congestion, rhinorrhea |
| Sympathetic dysfunction | Impaired sympathetic outflow (possibly from cavernous sinus involvement) | Ptosis, miosis (partial Horner syndrome) |
Mechanisms of Secondary Headaches
| Condition | Mechanism | Clinical Implication |
|---|---|---|
| Subarachnoid hemorrhage | Blood irritates meninges; sudden stretch of arterial wall; raised intracranial pressure | Thunderclap onset; meningism develops over hours; always investigate sudden severe headache |
| Meningitis | Inflammation of meninges activates trigeminal afferents; raised intracranial pressure | Fever, meningism, photophobia; may mimic severe migraine initially |
| Raised intracranial pressure | Traction on pain-sensitive dura, blood vessels, and cranial nerves | Worse supine, morning headache, Valsalva worsening, papilledema |
| Low cerebrospinal fluid pressure | Brain sags, causing traction on meninges and bridging veins | Postural headache: severe when upright, relieved when supine |
| Giant cell arteritis | Granulomatous inflammation of medium and large arteries | Temporal artery tenderness, jaw claudication, visual loss risk; urgent steroids needed |
| Cervicogenic headache | Upper cervical afferents converge with trigeminal nucleus caudalis | Pain referred from neck to head; triggered by neck movement or posture |
| Medication overuse headache | Central sensitization from frequent analgesic use; altered pain modulation | Headache paradoxically worsens with increasing analgesic use; requires withdrawal |
Central Sensitization and Chronification
Central sensitization is a key mechanism in the transformation from episodic to chronic headache disorders. Understanding this process is crucial for prevention and management.
Central Sensitization: A state of hyperexcitability in the central nervous system that amplifies pain signals and can maintain pain even after the initial trigger has resolved.
- Clinical manifestation: Cutaneous allodynia (pain from normally non-painful stimuli, such as brushing hair or wearing glasses)
- Risk factors for chronification: High attack frequency, medication overuse, obesity, depression, stressful life events
- Treatment implication: Early and effective treatment of acute attacks may prevent central sensitization
Often Overlooked Mechanism
Trigeminocervical convergence: The trigeminal nucleus caudalis extends into the upper cervical spinal cord (C1-C3), where it receives convergent input from both trigeminal and cervical afferents. This anatomical arrangement explains why neck pain commonly accompanies primary headache disorders and why cervical pathology can cause headache referred to the head. It also explains the effectiveness of occipital nerve blocks in some headache disorders. Always examine the cervical spine in headache patients.
Key Neurotransmitters and Therapeutic Targets
- Calcitonin gene-related peptide (CGRP): Potent vasodilator; key mediator of migraine; target of gepants and monoclonal antibodies
- Serotonin (5-HT): Receptor subtypes 5-HT1B/1D are targets of triptans; 5-HT1F is target of ditans
- Substance P: Promotes neurogenic inflammation; co-released with CGRP from trigeminal afferents
- Nitric oxide: Potent vasodilator; may trigger migraine; glyceryl trinitrate can provoke attacks
- Glutamate: Excitatory neurotransmitter; elevated in migraine; may contribute to cortical spreading depression
3. History Taking
A comprehensive approach to eliciting the Headache history
Red Flags — Require Urgent Evaluation
- Thunderclap onset — Subarachnoid hemorrhage, reversible cerebral vasoconstriction syndrome, arterial dissection, pituitary apoplexy
- New headache after age 50 — Giant cell arteritis, intracranial mass, subdural hematoma
- Progressive worsening over weeks — Intracranial mass, chronic subdural hematoma, idiopathic intracranial hypertension
- Systemic symptoms (fever, weight loss, night sweats) — Infection, malignancy, giant cell arteritis
- Neurological symptoms or signs — Intracranial lesion, stroke, venous thrombosis
- Papilledema — Raised intracranial pressure (requires urgent imaging)
- Positional component — Raised intracranial pressure (worse supine) or low cerebrospinal fluid pressure (worse upright)
- Triggered by Valsalva, cough, or exertion — Chiari malformation, intracranial lesion (requires imaging first presentation)
- Immunocompromised state — Opportunistic infection, lymphoma
- History of malignancy — Metastatic disease, carcinomatous meningitis
- Pregnancy or postpartum — Pre-eclampsia, cerebral venous thrombosis, reversible cerebral vasoconstriction syndrome
Recognizing Secondary Headache: The “SNOOP” Criteria
The “SNOOP” mnemonic helps identify red flags suggesting secondary headache:
- S — Systemic symptoms (fever, weight loss) or Secondary risk factors (HIV, malignancy, immunosuppression)
- N — Neurological symptoms or signs (confusion, weakness, visual changes, papilledema)
- O — Onset sudden (thunderclap headache reaching maximum intensity within seconds to minutes)
- O — Older age at onset (new headache beginning after age 50 years)
- P — Pattern change (progressive headache, change in established headache pattern, positional features, precipitated by Valsalva)
Systematic History: The “HEADACHE” Approach
Use the mnemonic “HEADACHE” to ensure comprehensive history taking:
- H — How did it start?: Onset (sudden vs gradual), first occurrence or recurrent, any precipitating event
- E — Experience of pain: Quality (throbbing, pressing, stabbing), severity (0-10 scale), location and radiation
- A — Associated symptoms: Nausea, vomiting, photophobia, phonophobia, aura, autonomic features, fever, neck stiffness
- D — Duration and frequency: Length of individual attacks, frequency per week/month, total headache days per month
- A — Aggravating and alleviating factors: Position, activity, Valsalva, sleep, medications, caffeine
- C — Current and past treatments: What has been tried, what helped, medication frequency (overuse?)
- H — History (medical, family, social): Previous headaches, comorbidities, family history of migraine, occupation, stress
- E — Effect on life: Impact on work, relationships, mood, sleep, disability assessment
Targeted Questions by Suspected Cause
| Suspected Cause | Key Features | Ask This Question |
|---|---|---|
| Migraine | Unilateral, pulsating, moderate-severe, nausea, photophobia, phonophobia, disability | “Does light or noise bother you during the headache? Do you need to lie down in a dark room?” |
| Tension-type headache | Bilateral, pressing/tightening, mild-moderate, no nausea, no significant photophobia | “Does the headache feel like a tight band around your head? Can you continue your normal activities?” |
| Cluster headache | Strictly unilateral, severe periorbital pain, autonomic features, restlessness, circadian pattern | “Do you get a blocked or runny nose, or watery red eye on the same side? Do you feel restless and pace around during attacks?” |
| Medication overuse headache | Daily or near-daily headache, regular analgesic use, headache returns when medication wears off | “How many days per week do you take painkillers or triptans? Do you wake up with headache that improves after taking medication?” |
| Subarachnoid hemorrhage | Thunderclap onset, “worst headache of life,” meningism, loss of consciousness | “Did this headache reach its maximum intensity within seconds? Is this the worst headache you have ever experienced?” |
| Giant cell arteritis | Age over 50, new headache, scalp tenderness, jaw claudication, visual symptoms, polymyalgia | “Does your jaw ache when you chew? Is your scalp tender when you brush your hair? Have you had any visual changes?” |
| Raised intracranial pressure | Worse in morning, worse supine, worse with Valsalva, visual obscurations, pulsatile tinnitus | “Is the headache worse when you wake up or when lying flat? Does coughing or straining make it worse? Do you have brief episodes of vision going grey?” |
| Low cerebrospinal fluid pressure | Postural (worse upright, better lying down), may follow lumbar puncture or trauma | “Is the headache much worse when you stand up and better when you lie down? Have you had a recent lumbar puncture or epidural?” |
| Cervicogenic headache | Unilateral, starts in neck, precipitated by neck movement or sustained posture | “Does the headache start in your neck and spread to your head? Does turning your head trigger the pain?” |
| Trigeminal neuralgia | Brief electric shock-like pain, triggered by light touch, chewing, talking; refractory periods | “Is the pain like an electric shock lasting only seconds? Is it triggered by touching your face, chewing, or talking?” |
Characterizing Migraine Aura
Key Questions for Aura
Aura is a fully reversible focal neurological symptom that typically develops gradually over 5-20 minutes and lasts less than 60 minutes. Ask specifically:
- Visual aura (most common, 90%): “Do you see flashing lights, zigzag lines, or have blind spots before the headache?”
- Sensory aura: “Do you get tingling or numbness that spreads gradually across your hand or face?”
- Speech aura: “Do you have difficulty finding words or speaking clearly before the headache?”
- Timing: “How long do these symptoms last? Do they come before, during, or separate from the headache?”
- Gradual spread: “Do the visual or sensory symptoms spread gradually, or do they appear all at once?” (Gradual spread suggests aura; sudden onset suggests stroke)
Medication and Substance History
Medications That Cause or Worsen Headache
- Nitrates — Vasodilation causes throbbing headache
- Phosphodiesterase-5 inhibitors (sildenafil, tadalafil) — Vasodilation
- Calcium channel blockers — Vasodilation
- Hormone replacement therapy / oral contraceptives — May trigger or worsen migraine
- Proton pump inhibitors — Reported association with headache
- Overused analgesics — Paracetamol, NSAIDs, opioids, triptans, combination analgesics
- Withdrawal from — Caffeine, opioids, estrogen
Substances and Lifestyle Factors
- Caffeine: Both excess intake and withdrawal can trigger headache
- Alcohol: Red wine and other triggers in migraine; cluster headache triggered during cluster periods
- Recreational drugs: Cocaine, amphetamines can cause severe headache (and stroke)
- Sleep: Both deprivation and oversleeping trigger migraine
- Fasting: Skipped meals trigger migraine
- Stress: Common trigger; also “let-down” headache after stress resolves
- Carbon monoxide exposure: Bilateral headache, multiple household members affected
Identifying Medication Overuse
| Medication Type | Threshold for Overuse | Key Points |
|---|---|---|
| Simple analgesics (paracetamol, aspirin, NSAIDs) | ≥15 days per month for ≥3 months | Most common cause of medication overuse headache |
| Triptans | ≥10 days per month for ≥3 months | May cause medication overuse headache more rapidly than simple analgesics |
| Opioids | ≥10 days per month for ≥3 months | Particularly problematic; associated with poor outcomes |
| Combination analgesics (e.g., paracetamol + codeine + caffeine) | ≥10 days per month for ≥3 months | Multiple components increase overuse risk |
| Ergotamine | ≥10 days per month for ≥3 months | Rarely used now but historically significant |
Social and Occupational History
Occupational Considerations
- Screen time: Prolonged computer use, eye strain
- Posture: Desk work, cervicogenic triggers
- Shift work: Sleep disruption triggers migraine
- Chemical exposure: Solvents, carbon monoxide
- Noise exposure: May exacerbate or trigger headache
- Physical labor: Exertional headache considerations
Psychosocial Assessment
- Depression and anxiety: Bidirectional relationship with chronic headache
- Sleep disorders: Insomnia, sleep apnea associated with morning headache
- Life stressors: Work, relationships, finances
- Domestic situation: Consider intimate partner violence if injuries
- Impact assessment: Days missed from work, reduced productivity
- Coping strategies: What does the patient do during attacks?
Family History
Why Family History Matters
Migraine: Over 70% of migraine patients have a first-degree relative with migraine. A positive family history strongly supports the diagnosis.
Cluster headache: First-degree relatives have 14-39 times increased risk.
Intracranial aneurysm: Family history of subarachnoid hemorrhage or known aneurysm increases risk; screening may be indicated.
Ask specifically: “Does anyone in your family have bad headaches or migraines? Has anyone had a brain hemorrhage or aneurysm?”
4. Physical Examination
A systematic head-to-toe approach for Headache
Systematic Framework: Use the “General → Vital Signs → Head and Neck → Neurological → Fundoscopy” approach for complete examination of patients presenting with headache. The goals are to: (1) identify signs of secondary headache, (2) detect neurological deficits, and (3) look for features supporting primary headache diagnosis.
General Inspection
- Level of consciousness: Altered consciousness suggests serious pathology (infection, hemorrhage, raised intracranial pressure)
- Appearance: Distress level, pallor, diaphoresis, photophobia (wearing sunglasses, avoiding light)
- Behavior during attack: Lying still (migraine) versus pacing/restless (cluster headache)
- Ptosis: May indicate Horner syndrome (cluster headache, carotid dissection) or third nerve palsy
- Facial asymmetry: May suggest stroke or mass lesion
- Skin: Rash (meningococcal disease), café-au-lait spots (neurofibromatosis)
- Cushingoid features: Consider idiopathic intracranial hypertension
Vital Signs
| Vital Sign | What to Look For | Clinical Significance |
|---|---|---|
| Temperature | Fever (>38°C) | Meningitis, encephalitis, brain abscess, sinusitis, systemic infection; also giant cell arteritis |
| Blood pressure | Severe hypertension (>180/120 mmHg) | Hypertensive emergency can cause headache; also check for pre-eclampsia in pregnancy |
| Heart rate | Bradycardia with hypertension (Cushing reflex) | Suggests raised intracranial pressure with impending herniation |
| Respiratory rate | Irregular breathing patterns | May indicate brainstem dysfunction or raised intracranial pressure |
| Oxygen saturation | Hypoxia | Consider carbon monoxide poisoning if unexplained (check carboxyhemoglobin) |
Head and Face Examination
Scalp and Skull
- Temporal arteries: Tenderness, thickening, reduced pulsation, nodularity (giant cell arteritis)
- Scalp tenderness: Localized (giant cell arteritis, referred pain) or diffuse (tension-type headache, cutaneous allodynia in migraine)
- Pericranial muscle tenderness: Palpate temporalis, frontalis, masseter, pterygoids, sternocleidomastoid, trapezius
- Skull tenderness: Over sinuses (sinusitis), localized bony lesion
- Trigger points: Greater occipital nerve at nuchal line
Face and Sinuses
- Sinus tenderness: Frontal and maxillary percussion/pressure
- Temporomandibular joint: Tenderness, clicking, reduced opening (temporomandibular dysfunction)
- Facial sensation: Test all three trigeminal divisions
- Trigger zones: Light touch triggering pain suggests trigeminal neuralgia
- Autonomic features: Conjunctival injection, lacrimation, nasal congestion, eyelid edema (cluster headache)
Eye Examination
| Finding | How to Assess | Clinical Significance |
|---|---|---|
| Visual acuity | Snellen chart or near vision card | Reduced acuity suggests optic nerve involvement (giant cell arteritis, idiopathic intracranial hypertension, optic neuritis) |
| Visual fields | Confrontation testing | Field defects suggest intracranial lesion; enlarged blind spot in idiopathic intracranial hypertension |
| Pupil responses | Direct and consensual light reflex, accommodation | Third nerve palsy (aneurysm): dilated pupil, ptosis. Horner syndrome (dissection, cluster): miosis, ptosis |
| Eye movements | Test in all directions; ask about diplopia | Sixth nerve palsy often earliest sign of raised intracranial pressure; painful ophthalmoplegia suggests cavernous sinus |
| Conjunctival injection | Inspect for redness | Ipsilateral injection in cluster headache; bilateral in acute glaucoma |
| Intraocular pressure | Tonometry if available; hard globe on palpation | Elevated in acute angle-closure glaucoma (ocular emergency) |
Fundoscopic Examination
Critical Importance of Fundoscopy
Fundoscopy should be performed in all patients presenting with new or changed headache. It is the only non-invasive method to directly visualize signs of raised intracranial pressure.
- Papilledema: Blurred disc margins, loss of venous pulsations, elevated disc, hemorrhages — indicates raised intracranial pressure; requires urgent imaging
- Subhyaloid hemorrhage: Crescent-shaped hemorrhage between retina and vitreous — strongly suggests subarachnoid hemorrhage
- Optic atrophy: Pale disc — previous optic nerve damage
- Absent venous pulsations: Early sign of raised intracranial pressure (though absent in 10% of normal individuals)
Neck Examination
Meningism Assessment
- Neck stiffness: Resistance to passive neck flexion (chin to chest)
- Kernig sign: Pain on knee extension with hip flexed
- Brudzinski sign: Involuntary hip/knee flexion when neck is flexed
- Interpretation: Meningism suggests meningitis or subarachnoid hemorrhage; may be absent early or in elderly/immunocompromised
Cervical Spine Assessment
- Range of motion: Flexion, extension, rotation, lateral flexion
- Tenderness: Paraspinal muscles, facet joints, greater occipital nerve
- Provocation: Does neck movement reproduce or worsen headache? (cervicogenic headache)
- Carotid tenderness: May suggest carotid dissection (handle gently)
Neurological Examination
Cranial Nerves
| Cranial Nerve | Test | Relevant Findings |
|---|---|---|
| I (Olfactory) | Smell identification | Anosmia may occur with frontal lobe lesions, post-traumatic |
| II (Optic) | Acuity, fields, fundoscopy, pupil afferent | See eye examination above; critical in headache assessment |
| III, IV, VI (Oculomotor, Trochlear, Abducens) | Eye movements, pupil size, ptosis | Third nerve palsy with dilated pupil: posterior communicating artery aneurysm until proven otherwise |
| V (Trigeminal) | Facial sensation, corneal reflex, jaw power | Sensory loss suggests trigeminal nerve lesion; trigger points in trigeminal neuralgia |
| VII (Facial) | Facial movements | Weakness may indicate brainstem or cortical lesion |
| VIII (Vestibulocochlear) | Hearing, balance, nystagmus | Hearing loss with headache: acoustic neuroma, meningitis |
| IX, X, XI, XII | Palate, voice, sternocleidomastoid, tongue | Lower cranial nerve palsies suggest posterior fossa or skull base pathology |
Motor, Sensory, and Coordination
- Motor examination: Tone, power (all limbs), pronator drift — asymmetry suggests structural lesion
- Reflexes: Deep tendon reflexes, plantar responses — asymmetry or upgoing plantars suggest upper motor neuron lesion
- Sensory examination: Light touch, pinprick, proprioception — sensory level suggests spinal cord involvement
- Coordination: Finger-nose, heel-shin, gait — ataxia suggests cerebellar or posterior fossa pathology
- Gait: Observe walking, tandem gait, Romberg test
Expected Findings by Etiology
| Condition | General / Vitals | Head and Neck | Neurological |
|---|---|---|---|
| Migraine | Photophobic, lying still in dark; normal vitals | Cutaneous allodynia; pericranial tenderness | Usually normal; may have mild focal signs during aura (resolves) |
| Tension-type headache | Able to continue activities; normal vitals | Pericranial muscle tenderness | Normal |
| Cluster headache | Agitated, pacing; normal vitals | Ipsilateral: ptosis, miosis, lacrimation, conjunctival injection, rhinorrhea, facial sweating | Normal (partial Horner may persist between attacks) |
| Subarachnoid hemorrhage | May be drowsy; hypertension common | Neck stiffness (may take hours to develop); subhyaloid hemorrhage | May have focal deficits; reduced consciousness |
| Meningitis | Fever; may appear unwell | Neck stiffness, Kernig and Brudzinski signs; rash in meningococcal disease | May be normal or have reduced consciousness, focal signs |
| Giant cell arteritis | Low-grade fever; weight loss | Temporal artery: tender, thickened, non-pulsatile; scalp tenderness | May have visual loss (emergency); jaw claudication on history |
| Idiopathic intracranial hypertension | Often obese female; normal vitals | Papilledema; pulsatile tinnitus on history | Enlarged blind spots; sixth nerve palsy possible |
| Intracranial mass | Variable; may have weight loss | Papilledema if raised intracranial pressure | Focal neurological deficits depending on location |
| Carotid or vertebral dissection | May follow trauma; normal vitals | Horner syndrome (carotid); neck tenderness | May have stroke symptoms (hemispheric or posterior circulation) |
Important Teaching Point
Normal examination is common! The vast majority of headache patients, particularly those with primary headache disorders (migraine, tension-type headache, cluster headache), will have an entirely normal physical examination between attacks. A normal examination does not exclude significant pathology — the history remains paramount. Key exceptions:
- Cluster headache may show residual partial Horner syndrome
- Migraine during attack may show cutaneous allodynia
- Chronic tension-type headache typically shows pericranial muscle tenderness
However: Always perform fundoscopy. Papilledema is often the only abnormal sign in idiopathic intracranial hypertension and early intracranial masses.
Examination During a Cluster Headache Attack
Witnessing the Attack is Diagnostic
If possible, examine a patient during a cluster headache attack (or review photos/videos). The combination of severe unilateral pain with ipsilateral autonomic features is virtually pathognomonic:
- Severe agitation, inability to lie still, pacing
- Ipsilateral conjunctival injection and/or lacrimation
- Ipsilateral nasal congestion and/or rhinorrhea
- Ipsilateral eyelid edema
- Ipsilateral forehead and facial sweating
- Ipsilateral miosis and/or ptosis
5. Differential Diagnosis
Systematic approach organized by probability and clinical features
Step-by-Step Approach to Headache Diagnosis:
- Step 1: Exclude secondary causes — Look for red flags (SNOOP criteria), perform examination including fundoscopy
- Step 2: If secondary cause suspected — Investigate urgently based on clinical suspicion
- Step 3: If no red flags — Apply diagnostic criteria for primary headache disorders
- Step 4: Consider medication overuse — If headache ≥15 days/month and regular analgesic use
- Step 5: Assess for comorbidities — Depression, anxiety, sleep disorders often coexist
Acute Headache (New Onset, Less Than 4 Weeks)
| Probability | Condition | Key Features | Red Flags |
|---|---|---|---|
| COMMON (approximately 70%) | Viral illness / systemic infection | Fever, malaise, myalgia, rhinorrhea, bilateral headache | High fever with neck stiffness, rash, altered consciousness |
| COMMON | First migraine attack | Unilateral, pulsating, nausea, photophobia, phonophobia, disability | Thunderclap onset, worst headache ever, neurological signs persisting beyond aura |
| COMMON | Tension-type headache | Bilateral, pressing, mild-moderate, no nausea, able to function | Progressive worsening, focal neurological signs |
| LESS COMMON (approximately 20%) | Acute sinusitis | Facial pain/pressure, purulent nasal discharge, fever, worse bending forward | Periorbital swelling, visual changes, altered consciousness (suggests complications) |
| LESS COMMON | Medication-induced headache | Temporal relationship with new medication (nitrates, PDE5 inhibitors, calcium channel blockers) | Persistent after stopping medication |
| LESS COMMON | Post-traumatic headache | Onset within 7 days of head injury, variable character | Progressive worsening, neurological deterioration, vomiting (subdural/epidural hematoma) |
| UNCOMMON BUT SERIOUS (approximately 10%) | Subarachnoid hemorrhage | Thunderclap onset, “worst headache of life,” meningism, may have focal signs | Always investigate thunderclap headache |
| UNCOMMON BUT SERIOUS | Bacterial meningitis | Fever, headache, neck stiffness, photophobia, altered consciousness, rash | Medical emergency — immediate antibiotics |
| UNCOMMON BUT SERIOUS | Cerebral venous thrombosis | Subacute onset, may be thunderclap, headache with seizures or focal signs, pregnancy/postpartum | Papilledema, focal deficits, seizures |
| UNCOMMON BUT SERIOUS | Arterial dissection (carotid or vertebral) | Unilateral head/neck pain, Horner syndrome, may follow minor trauma or manipulation | Stroke symptoms (dissection can cause stroke) |
| UNCOMMON BUT SERIOUS | Hypertensive emergency | Severe hypertension (>180/120), headache, visual changes, chest pain, confusion | End-organ damage — urgent BP control needed |
| UNCOMMON BUT SERIOUS | Acute angle-closure glaucoma | Severe periorbital pain, red eye, fixed mid-dilated pupil, visual halos, hard globe | Vision loss if untreated — ophthalmology emergency |
Thunderclap Headache — A Medical Emergency
Causes of Thunderclap Headache (Pain Maximal Within 1 Minute)
Thunderclap headache requires urgent investigation. While primary thunderclap headache exists, it is a diagnosis of exclusion.
- Subarachnoid hemorrhage — Most important to exclude
- Intracerebral hemorrhage
- Cerebral venous thrombosis
- Arterial dissection (carotid or vertebral)
- Pituitary apoplexy
- Reversible cerebral vasoconstriction syndrome
- Hypertensive crisis
- Spontaneous intracranial hypotension
- Colloid cyst of third ventricle
- Primary thunderclap headache (diagnosis of exclusion)
Chronic Headache (Greater Than 3 Months)
Approach to Chronic Daily Headache (≥15 days/month):
- Step 1: Exclude secondary causes — New daily persistent headache requires investigation
- Step 2: Assess for medication overuse — Present in up to 50% of chronic daily headache
- Step 3: Classify the primary headache type — Chronic migraine vs chronic tension-type vs others
- Step 4: Consider hemicrania continua — Responds specifically to indomethacin
| Probability | Condition | Approximate Frequency | Key Distinguishing Features |
|---|---|---|---|
| COMMON | Chronic migraine | 2% of population | ≥15 headache days/month, ≥8 with migraine features, for >3 months; often medication overuse component |
| COMMON | Chronic tension-type headache | 2-3% of population | ≥15 days/month, bilateral pressing, mild-moderate, no significant nausea/vomiting |
| COMMON | Medication overuse headache | 1-2% of population | ≥15 days/month in patient with pre-existing headache disorder; regular overuse of acute medications |
| LESS COMMON | New daily persistent headache | Rare | Daily from onset, patient can pinpoint exact date of onset, no prior headache history |
| LESS COMMON | Hemicrania continua | Rare | Strictly unilateral continuous headache, autonomic features, complete response to indomethacin |
| LESS COMMON | Cervicogenic headache | 2-4% of population | Unilateral, starts in neck, triggered by neck movement, reduced cervical range of motion |
| UNCOMMON — EXCLUDE | Idiopathic intracranial hypertension | 1-2 per 100,000 | Obese female, papilledema, visual obscurations, pulsatile tinnitus, sixth nerve palsy |
| UNCOMMON — EXCLUDE | Chronic subdural hematoma | Variable | Elderly, anticoagulation, history of fall (may be minor/forgotten), progressive, fluctuating cognition |
| UNCOMMON — EXCLUDE | Intracranial mass | Variable | Progressive headache, focal neurological signs, papilledema, seizures, personality change |
Primary Headache Disorders: Diagnostic Features
| Feature | Migraine | Tension-Type | Cluster |
|---|---|---|---|
| Location | Unilateral (60%) or bilateral | Bilateral | Strictly unilateral (orbital/supraorbital/temporal) |
| Quality | Pulsating/throbbing | Pressing/tightening (band-like) | Stabbing/boring |
| Intensity | Moderate to severe | Mild to moderate | Severe to very severe |
| Duration | 4-72 hours | 30 minutes to 7 days | 15-180 minutes |
| Frequency | Variable; chronic if ≥15 days/month | Variable; chronic if ≥15 days/month | 1-8 attacks/day during cluster period |
| Aggravated by activity | Yes — routine physical activity worsens | No | No — restlessness/pacing during attack |
| Nausea/Vomiting | Common (≥1 required) | Absent (mild nausea may occur) | May occur |
| Photophobia/Phonophobia | Yes (≥1 required) | One or neither (not both) | May occur (often ipsilateral) |
| Autonomic features | Usually absent | Absent | Ipsilateral (lacrimation, rhinorrhea, ptosis, miosis, etc.) |
| Aura | In 25-30% (migraine with aura) | Absent | Absent |
| Behavior during attack | Lies still in dark, quiet room | Continues activities | Agitated, pacing, restless |
Anatomical Approach to Secondary Headache
Intracranial — Vascular
Subarachnoid hemorrhage
Intracerebral hemorrhage
Cerebral venous thrombosis
Arterial dissection
Reversible cerebral vasoconstriction syndrome
Giant cell arteritis
Intracranial — Non-Vascular
Raised intracranial pressure (tumor, idiopathic intracranial hypertension)
Low cerebrospinal fluid pressure
Meningitis / Encephalitis
Brain abscess
Subdural / Epidural hematoma
Chiari malformation
Head and Neck Structures
Acute sinusitis
Acute glaucoma
Temporomandibular joint dysfunction
Cervicogenic headache
Occipital neuralgia
Dental pathology
Systemic Causes
Systemic infection with fever
Hypertensive emergency
Hypoxia / Hypercapnia
Carbon monoxide poisoning
Pre-eclampsia / Eclampsia
Medication-induced
Drug-Induced Headache
| Drug or Drug Class | Mechanism | Characteristics | Time to Resolution After Stopping |
|---|---|---|---|
| Nitrates (glyceryl trinitrate, isosorbide) | Nitric oxide-mediated vasodilation | Immediate throbbing headache; may trigger migraine in susceptible individuals | Minutes to hours (immediate headache); may trigger prolonged migraine |
| Phosphodiesterase-5 inhibitors (sildenafil, tadalafil) | Vasodilation via increased cyclic GMP | Bilateral throbbing headache, facial flushing | Hours (correlates with drug half-life) |
| Calcium channel blockers (nifedipine, amlodipine) | Vasodilation | Often at treatment initiation; may improve with continued use | Days to weeks |
| Dipyridamole | Vasodilation, increased adenosine | Very common (up to 40%); often limits tolerability | Days |
| Proton pump inhibitors | Unknown | Reported association; mechanism unclear | Variable |
| Hormonal contraceptives / HRT | Estrogen effects on trigeminovascular system | May trigger migraine, especially during hormone-free interval | Cycles to months |
| Caffeine withdrawal | Rebound vasodilation after chronic vasoconstriction | Bilateral throbbing, begins 12-24 hours after last caffeine | 2-9 days |
| Opioid withdrawal | Central sensitization, autonomic dysregulation | Part of withdrawal syndrome with other features | Days to weeks |
| Analgesic overuse (paracetamol, NSAIDs, triptans, opioids) | Central sensitization, altered pain modulation | Daily or near-daily headache; headache recurs as medication wears off | 2-12 weeks after withdrawal (often worsens initially) |
Headache in Special Populations
Age Over 50 Years
- Giant cell arteritis — New headache, jaw claudication, visual symptoms, scalp tenderness, polymyalgia rheumatica
- Intracranial mass — Primary brain tumor or metastases
- Chronic subdural hematoma — Often forgotten minor trauma
- Trigeminal neuralgia — Peak incidence 50-70 years
- Hypnic headache — “Alarm clock headache,” occurs only during sleep, age >50
Pregnancy and Postpartum
- Pre-eclampsia/Eclampsia — Hypertension, proteinuria, headache a warning sign
- Cerebral venous thrombosis — Hypercoagulable state of pregnancy
- Reversible cerebral vasoconstriction syndrome — Especially postpartum
- Pituitary apoplexy — Pituitary enlarges in pregnancy
- Post-dural puncture headache — After epidural/spinal anesthesia
- Migraine — Often improves in pregnancy, may worsen postpartum
Quick Reference: “If You See This, Think This”
| Clinical Clue | Think This First | Next Step |
|---|---|---|
| Thunderclap onset (maximal in seconds) | Subarachnoid hemorrhage | CT head immediately → LP if CT negative |
| Fever + headache + neck stiffness | Bacterial meningitis | Blood cultures → antibiotics → LP |
| New headache age >50 + jaw claudication | Giant cell arteritis | Urgent ESR/CRP → start steroids → temporal artery biopsy |
| Unilateral + autonomic features + restlessness | Cluster headache | Trial of high-flow oxygen or sumatriptan |
| Worse when upright, better lying down | Low cerebrospinal fluid pressure | MRI brain with gadolinium |
| Worse when lying down, morning headache | Raised intracranial pressure | Fundoscopy → CT/MRI brain → LP if no mass |
| Papilledema in obese female | Idiopathic intracranial hypertension | MRI + MRV → LP with opening pressure |
| Headache + Horner syndrome + neck pain | Carotid or vertebral dissection | CT angiography or MR angiography neck |
| Daily headache + analgesics ≥10-15 days/month | Medication overuse headache | Medication withdrawal + preventive therapy |
| Unilateral, continuous + autonomic features | Hemicrania continua | Indomethacin trial (diagnostic and therapeutic) |
| Brief electric shock pain triggered by touch | Trigeminal neuralgia | MRI brain to exclude secondary causes |
| Multiple household members with headache | Carbon monoxide poisoning | Remove from environment → carboxyhemoglobin level |
6. Diagnostic Investigations
A stepwise, cost-effective approach guided by clinical suspicion
Key Principle: Primary headache disorders are clinical diagnoses. Investigations are performed to exclude secondary causes when red flags are present, not to confirm primary headache.
Indications for Investigation:
- Any red flag present (SNOOP criteria)
- Abnormal neurological examination
- Papilledema on fundoscopy
- New-onset headache in patient >50 years
- Change in established headache pattern
- Headache not fitting primary headache criteria
- Treatment-refractory headache (consider if diagnosis correct)
Baseline Investigations When Secondary Cause Suspected
| Investigation | Purpose | What to Look For | Practical Points |
|---|---|---|---|
| Full blood count | Screen for infection, anemia, malignancy | Elevated white cells (infection), low hemoglobin (anemia causing headache), thrombocytosis (giant cell arteritis) | Non-specific but useful baseline |
| Erythrocyte sedimentation rate (ESR) | Screen for giant cell arteritis | Typically >50 mm/hr in giant cell arteritis (often >100); normal does not exclude | Order in all patients >50 with new headache |
| C-reactive protein (CRP) | Inflammation marker; complements ESR | Elevated in infection, giant cell arteritis, other inflammatory conditions | More specific than ESR; rises and falls faster |
| Urea and electrolytes | Renal function, electrolyte abnormalities | Hyponatremia can cause headache; baseline before contrast imaging | Required before contrast CT/MRI |
| Glucose | Hypoglycemia, diabetes | Hypoglycemia causes headache; diabetes increases stroke risk | Include in baseline workup |
| Thyroid function | Thyroid disorders | Both hypo- and hyperthyroidism associated with headache | Consider in chronic headache workup |
Neuroimaging
CT Head (Non-Contrast)
Indications
- Thunderclap headache (first-line to detect subarachnoid hemorrhage)
- Suspected acute intracranial hemorrhage
- Head trauma
- Acute focal neurological deficit
- Altered consciousness
- Before lumbar puncture if signs of raised intracranial pressure
Strengths and Limitations
- Strengths: Fast, widely available, excellent for acute blood, bone
- Sensitivity for subarachnoid hemorrhage: 98% within 6 hours, drops to 93% at 24 hours, 50% at 1 week
- Limitations: Radiation exposure; poor for posterior fossa, small lesions, venous thrombosis
MRI Brain
Indications
- New daily persistent headache
- Suspected intracranial mass
- Suspected low cerebrospinal fluid pressure
- Suspected cerebral venous thrombosis (with MR venography)
- Trigeminal neuralgia (exclude secondary causes)
- Pituitary pathology suspected
- Posterior fossa symptoms
- CT negative but clinical suspicion remains high
Key Sequences
- T1-weighted: Anatomy, subacute blood (bright)
- T2-weighted: Edema, white matter lesions
- FLAIR: Periventricular lesions, subarachnoid blood
- Diffusion-weighted (DWI): Acute stroke, abscess
- Gadolinium enhancement: Tumors, meningeal enhancement, pachymeningeal enhancement in low CSF pressure
- MR venography (MRV): Cerebral venous thrombosis
- MR angiography (MRA): Aneurysm, dissection
CT Angiography (CTA) / MR Angiography (MRA)
| Indication | Preferred Modality | What to Look For |
|---|---|---|
| Suspected aneurysm | CTA (more sensitive for small aneurysms) or MRA | Saccular outpouching, typically at Circle of Willis |
| Suspected arterial dissection | CTA or MRA (with fat-saturated T1 for intramural hematoma) | Luminal narrowing, intimal flap, intramural hematoma |
| Reversible cerebral vasoconstriction syndrome | CTA or MRA | Multifocal segmental narrowing (“string of beads”); may be normal early |
| Cerebral venous thrombosis | CT venography or MR venography | Absent flow in venous sinuses; “empty delta sign” on contrast CT |
Lumbar Puncture
Before Lumbar Puncture
CT head required before LP if:
- Focal neurological signs
- Papilledema
- Altered consciousness
- Immunocompromised state
- History of CNS disease
- New-onset seizures
Do not delay antibiotics for suspected bacterial meningitis — give empiric treatment, then LP when safe.
| Indication | Key CSF Findings | Interpretation |
|---|---|---|
| Subarachnoid hemorrhage (CT negative) | Xanthochromia (yellow discoloration), elevated red cells that do not clear | Xanthochromia takes 12 hours to develop; LP should be done 6-12 hours after onset if CT negative |
| Bacterial meningitis | High white cells (>1000, neutrophil predominant), high protein, low glucose (<40% serum) | Send for Gram stain, culture, PCR |
| Viral meningitis | Moderate white cells (10-500, lymphocyte predominant), mildly elevated protein, normal glucose | Send viral PCR panel |
| Idiopathic intracranial hypertension | Elevated opening pressure (>25 cmH2O), normal composition | Therapeutic as well as diagnostic; symptoms may improve after LP |
| Low CSF pressure | Low opening pressure (<6 cmH2O); may be normal | MRI findings (pachymeningeal enhancement, brain sagging) often more helpful |
| Carcinomatous meningitis | Elevated protein, low glucose, lymphocytosis; cytology may show malignant cells | May need repeated LPs for cytology; sensitivity ~50% per LP |
Targeted Investigations by Suspected Etiology
If Suspecting Giant Cell Arteritis
First-Line Tests
- ESR: Typically >50 mm/hr; often >100 mm/hr
- CRP: Elevated; more specific 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; skip lesions occur so need adequate length (>1 cm)
- Temporal artery ultrasound: “Halo sign” (hypoechoic ring around vessel); operator dependent
- Do not delay steroids while awaiting biopsy if clinical suspicion high
If Suspecting Subarachnoid Hemorrhage
Investigation Pathway for Thunderclap Headache:
- CT head (non-contrast): Sensitivity 98% within 6 hours, 93% at 24 hours
- If CT negative and <14 days from onset: Lumbar puncture at least 6-12 hours after onset (for xanthochromia to develop)
- If SAH confirmed or CT/LP inconclusive: CT angiography to identify aneurysm
- If no aneurysm found: Consider MRI/MRA, repeat angiography, or catheter angiography
If Suspecting Idiopathic Intracranial Hypertension
Diagnostic Criteria
- Papilledema present
- Normal neurological examination (except sixth nerve palsy allowed)
- Normal brain imaging (MRI preferred; may show empty sella, optic nerve sheath distension)
- Normal CSF composition
- Elevated opening pressure (>25 cmH2O in adults)
Additional Tests
- MRI brain with gadolinium: Exclude mass, venous thrombosis
- MR venography: Exclude cerebral venous thrombosis (can mimic idiopathic intracranial hypertension)
- Visual field testing: Baseline and monitoring (enlarged blind spots, peripheral constriction)
- Optical coherence tomography: Quantify optic nerve head swelling
If Suspecting Cerebral Venous Thrombosis
| Investigation | Findings | Notes |
|---|---|---|
| CT head | “Cord sign” (hyperdense thrombosed vein); “empty delta sign” (contrast CT); may show hemorrhagic infarct | May be normal; low sensitivity (30%) |
| CT venography | Filling defect in venous sinuses | Good first-line if CVT suspected |
| MRI + MR venography | Absent flow signal in affected sinus; parenchymal changes | Most sensitive and specific |
| D-dimer | Often elevated | Normal D-dimer does not exclude CVT |
Empiric Treatment Trials as Diagnostic Tools
Therapeutic Trials in Headache Diagnosis
Some headache disorders are diagnosed by their response to specific treatments:
- Indomethacin-responsive headaches: Complete response to indomethacin is diagnostic for hemicrania continua and paroxysmal hemicrania. Start 25 mg three times daily, increase to 50-75 mg three times daily. Response usually within 1-2 weeks.
- Cluster headache: Response to high-flow oxygen (12-15 L/min via non-rebreather mask) or subcutaneous sumatriptan supports diagnosis.
- Medication overuse headache: Improvement after withdrawal of overused medications (often after initial worsening) confirms the diagnosis.
- Occipital neuralgia: Response to greater occipital nerve block supports diagnosis.
Other Investigations
| Investigation | Indication | What It Shows |
|---|---|---|
| Carboxyhemoglobin level | Suspected carbon monoxide poisoning (multiple household members with headache) | >3% in non-smokers, >10% in smokers suggests exposure |
| Electroencephalogram (EEG) | Suspected seizures with post-ictal headache; encephalitis | Epileptiform activity, encephalopathic changes |
| Sleep study (polysomnography) | Suspected sleep apnea (morning headaches, snoring, daytime somnolence) | Apnea-hypopnea index indicating sleep apnea severity |
| Intraocular pressure measurement | Suspected acute angle-closure glaucoma | Elevated pressure (>21 mmHg; often much higher in acute closure) |
| Sinus CT | Suspected complicated sinusitis (not routine for “sinus headache”) | Opacification, air-fluid levels, bone erosion |
| Cervical spine imaging | Suspected cervicogenic headache with neurological features | Degenerative changes, disc pathology (correlation with symptoms needed) |
7. Pattern Recognition and Clinical Decision-Making
Practical algorithms and decision pathways
Step 1: Is This Urgent?
| Clinical Scenario | Urgency Level | Immediate Action |
|---|---|---|
| Thunderclap headache (maximal within seconds to 1 minute) | EMERGENT | CT head immediately → LP if CT negative → CTA if SAH confirmed |
| Headache + fever + neck stiffness + altered consciousness | EMERGENT | Blood cultures → empiric antibiotics immediately → CT → LP |
| Headache + focal neurological deficit + altered consciousness | EMERGENT | CT head → consider stroke pathway, hemorrhage, mass lesion |
| Headache + papilledema | EMERGENT | CT/MRI brain urgently → LP if no mass (measure opening pressure) |
| New headache age >50 + jaw claudication or visual symptoms | URGENT | ESR/CRP → start high-dose steroids same day → temporal artery biopsy within 2 weeks |
| Severe unilateral headache + Horner syndrome + neck pain | URGENT | CTA or MRA neck → carotid/vertebral dissection workup |
| Severe periorbital headache + red eye + fixed dilated pupil | URGENT | Check intraocular pressure → acute angle-closure glaucoma → ophthalmology emergency |
| Postural headache (worse upright) after LP or epidural | URGENT | Conservative measures → epidural blood patch if persistent >48 hours |
| New progressive headache over weeks with no red flags | SEMI-URGENT | MRI brain within 2 weeks → neurology referral if abnormal or diagnostic uncertainty |
| Recurrent episodic headache fitting primary headache criteria | ROUTINE | Clinical diagnosis → trial of appropriate acute and preventive therapy |
Step 2: Classify by Presentation Type
Acute Single Episode
Key question: Is this a dangerous secondary cause?
Proceed to Algorithm A
Recurrent Episodic
Key question: Which primary headache disorder?
Proceed to Algorithm B
Chronic Daily
Key question: Is there medication overuse?
Proceed to Algorithm C
Step 3: Follow the Appropriate Algorithm
Algorithm A: Acute Single Episode Headache
| Clinical Scenario | Most Likely Diagnosis | Action |
|---|---|---|
| Thunderclap onset, worst headache ever | Subarachnoid hemorrhage until proven otherwise | CT head → LP if negative → CTA |
| Fever + headache + neck stiffness | Meningitis | Empiric antibiotics → CT if indicated → LP |
| Headache + focal neurology + sudden onset | Stroke (ischemic or hemorrhagic) | CT head → stroke pathway |
| Unilateral headache + ipsilateral autonomic features + agitation | Cluster headache (first attack) | High-flow oxygen or sumatriptan → MRI to exclude secondary cause |
| Headache + viral prodrome + no red flags | Viral illness-associated headache | Supportive care; reassess if worsening or prolonged |
| Typical migraine features, no red flags, positive family history | First migraine attack | Clinical diagnosis; trial of acute migraine therapy |
Algorithm B: Recurrent Episodic Headache
| Clinical Scenario | Most Likely Diagnosis | Action |
|---|---|---|
| Unilateral, pulsating, moderate-severe, nausea, photo/phonophobia, 4-72 hours, aggravated by activity | Migraine without aura | Clinical diagnosis; acute therapy (triptan, NSAID) + consider preventive if ≥4 days/month |
| Above features preceded by visual/sensory aura lasting 5-60 minutes | Migraine with aura | Clinical diagnosis; avoid estrogen-containing contraceptives; same treatment approach |
| Bilateral, pressing, mild-moderate, no nausea, no significant photo/phonophobia, can continue activities | Episodic tension-type headache | Simple analgesics; address triggers (stress, posture); preventive if frequent |
| Strictly unilateral severe periorbital pain, 15-180 min, 1-8/day, with autonomic features, restless | Cluster headache | Acute: oxygen, sumatriptan; Preventive: verapamil; MRI to exclude secondary |
| Strictly unilateral, 2-30 min attacks, >5/day, autonomic features, responds to indomethacin | Paroxysmal hemicrania | Indomethacin trial (diagnostic and therapeutic) |
| Brief electric shock-like pain in trigeminal distribution, triggered by light touch | Trigeminal neuralgia | MRI brain → carbamazepine or oxcarbazepine |
Algorithm C: Chronic Daily Headache (≥15 days/month)
| Clinical Scenario | Most Likely Diagnosis | Action |
|---|---|---|
| Chronic headache + analgesic use ≥10-15 days/month | Medication overuse headache | Withdraw overused medication + bridge therapy + start preventive |
| ≥15 days/month, ≥8 with migraine features, <4 hours untreated | Chronic migraine (± medication overuse) | Address medication overuse if present; preventive therapy (topiramate, amitriptyline, CGRP antibodies) |
| ≥15 days/month, bilateral pressing, no migraine features | Chronic tension-type headache | Amitriptyline; address triggers; physiotherapy |
| Daily from onset, patient recalls exact date it started | New daily persistent headache | MRI brain → may be refractory; trial preventives |
| Strictly unilateral, continuous, mild-moderate with exacerbations, autonomic features | Hemicrania continua | Indomethacin trial (complete response is diagnostic) |
| Chronic headache + papilledema + obese female | Idiopathic intracranial hypertension | MRI + MRV → LP with opening pressure → acetazolamide, weight loss |
“What Do I Do If…” Decision Reference
| Clinical Situation | Immediate Action | Next Step |
|---|---|---|
| CT negative for SAH but clinical suspicion high | Perform LP (wait 6-12 hours from onset for xanthochromia) | If LP also negative and >2 weeks from onset, consider other causes of thunderclap headache |
| ESR/CRP elevated but patient not convinced to start steroids | Explain risk of permanent visual loss (15-20% if untreated) | Start steroids immediately; arrange temporal artery biopsy within 2 weeks |
| Patient using painkillers daily and headache worsening | Explain medication overuse headache; plan withdrawal | Abrupt withdrawal (preferred for most) or gradual taper; bridge with preventive; warn of initial worsening |
| Migraine not responding to triptans | Check timing (take early), dose, formulation (try different triptan or route) | Consider gepant or ditan; assess for medication overuse; optimize preventive therapy |
| Cluster headache patient in acute attack in emergency department | High-flow oxygen 12-15 L/min via non-rebreather OR subcutaneous sumatriptan 6 mg | Initiate preventive (verapamil); short-term bridge with prednisolone; refer to headache specialist |
| Unilateral continuous headache not responding to usual treatments | Consider hemicrania continua; trial of indomethacin 25 mg three times daily | Increase to 50-75 mg three times daily; complete response confirms diagnosis |
| Post-LP headache not improving after 48 hours | Continue conservative measures (fluids, caffeine, bed rest) | If persistent or severe, refer for epidural blood patch |
| Patient with migraine with aura requesting combined oral contraceptive | Contraindicated due to increased stroke risk | Offer progestogen-only methods, IUD, or non-hormonal contraception |
| Pregnant patient with new severe headache | Check BP (pre-eclampsia?); neurological examination; fundoscopy | Low threshold for imaging; consider cerebral venous thrombosis, reversible cerebral vasoconstriction syndrome, pituitary apoplexy |
When to Start Preventive Therapy
Consider Preventive Therapy If:
- ≥4 headache days per month affecting function
- Acute medications ineffective or contraindicated
- Overuse of acute medications (or risk of)
- Patient preference for fewer attacks
- Presence of hemiplegic migraine or brainstem aura (prolonged aura)
- Significant disability despite acute treatment
Troubleshooting Refractory Headache
Ask These Questions When Headache Does Not Respond to Treatment
- Is the diagnosis correct? Reconsider differential; consider secondary causes
- Is there medication overuse? Present in up to 50% of chronic daily headache
- Was the treatment adequate? Correct dose, duration (8-12 weeks for preventives), correct timing (acute meds taken early)
- Are there comorbidities? Depression, anxiety, sleep disorders often coexist and require treatment
- Are there perpetuating factors? Stress, poor sleep hygiene, caffeine, triggers not addressed
- Is there more than one headache type? Patients may have migraine AND tension-type headache
- Has hemicrania continua been excluded? Trial of indomethacin
- Should this patient be referred to a headache specialist? Consider if refractory after adequate trials
8. Clinical Pearls and Pitfalls
Practical wisdom — learn from successes and avoid common mistakes
Must-Know Clinical Pearls
Critical Pitfalls to Avoid
Key Takeaways
- Primary headache disorders (migraine, tension-type, cluster) account for >90% of headaches but are clinical diagnoses — investigations are performed to exclude secondary causes when red flags are present.
- The SNOOP criteria (Systemic symptoms, Neurological signs, Onset sudden, Older age, Pattern change) identify red flags requiring investigation.
- Thunderclap headache (maximal within seconds) is a medical emergency. CT head followed by LP (if CT negative) is the standard workup for suspected subarachnoid hemorrhage.
- Giant cell arteritis must be considered in any patient >50 years with new headache. Start steroids immediately if suspected — do not wait for biopsy.
- Medication overuse headache affects up to 50% of patients with chronic daily headache. Improvement requires withdrawal of the overused medication.
- Normal physical examination does not exclude serious pathology. History is paramount, and fundoscopy should be performed in all new or changed headaches.
- The three most common primary headaches can be distinguished by: location (bilateral vs unilateral), behavior during attack (still vs agitated), and associated features (nausea/photophobia vs autonomic features).
- Preventive therapy should be considered when headaches occur ≥4 days per month, acute treatments are ineffective, or medication overuse is a risk.
- When headache is refractory, reconsider the diagnosis, look for medication overuse, and ensure treatment was adequate before concluding treatment has failed.
- Hemicrania continua and paroxysmal hemicrania are diagnosed by their complete response to indomethacin — always consider a therapeutic trial in unilateral headaches that do not fit typical patterns.
Quick Reference Algorithm
Systematic Approach to Headache:
- Identify emergencies: Thunderclap? Fever + meningism? Focal deficits? Papilledema? → Investigate and treat urgently
- Screen for red flags: Apply SNOOP criteria. If any present → targeted investigation based on clinical suspicion
- Examine the patient: Vital signs, fundoscopy, neurological examination. Look for signs of secondary causes
- Classify by pattern: Acute single episode, recurrent episodic, or chronic daily? → Follow appropriate algorithm
- Apply diagnostic criteria: Does the headache fit migraine, tension-type, cluster, or another primary disorder?
- Assess for medication overuse: If ≥15 headache days/month, ask about analgesic frequency. Address overuse if present
- Initiate appropriate therapy: Acute treatment for attacks; preventive therapy if indicated
- Review and reassess: Follow up to assess response, adjust treatment, and reconsider diagnosis if not improving