Clinical Approach to Focal Neurologic Deficit

Comprehensive Practical Framework

1. Symptom Overview

Understanding the clinical significance and classification of focal neurologic deficit

Focal neurologic deficits represent one of the most critical presentations in medicine, demanding rapid assessment and intervention. Stroke alone affects approximately 795,000 people annually in the United States, with ischemic stroke accounting for 87% of cases. Neurologic emergencies constitute approximately 10-15% of all emergency department visits, and the time-sensitive nature of many causes—particularly acute ischemic stroke where “time is brain”—makes rapid recognition and localization essential. Beyond stroke, focal deficits may herald brain tumors, multiple sclerosis, infections, or other conditions requiring urgent diagnosis.

Definition

A focal neurologic deficit is an abnormality of nervous system function that can be localized to a specific anatomical structure or region of the nervous system. Unlike diffuse or global dysfunction (such as delirium or coma), focal deficits point to discrete lesions affecting the brain, spinal cord, nerve roots, peripheral nerves, neuromuscular junction, or muscles. The deficit may manifest as weakness, sensory loss, visual disturbance, speech impairment, coordination problems, or cranial nerve dysfunction.

Classification by Temporal Profile

CategoryOnset and DurationCommon CausesClinical Significance
HyperacuteSeconds to minutes; maximal at onsetIschemic stroke, hemorrhagic stroke, seizure with Todd’s paralysisVascular emergency until proven otherwise; activate stroke protocols immediately
AcuteHours to days; progressive or stepwiseEvolving stroke, encephalitis, acute demyelination, abscessUrgent evaluation required; may still be within treatment windows
SubacuteDays to weeks; gradual progressionBrain tumor, subdural hematoma, progressive infection, inflammatory conditionsSuggests mass lesion or inflammatory process; imaging essential
ChronicWeeks to months; slow progressionSlow-growing tumor, degenerative disease, chronic infectionAllows time for comprehensive workup; still requires definitive diagnosis
TransientMinutes to hours; complete resolutionTransient ischemic attack, migraine aura, seizure, hypoglycemiaHigh-risk warning sign; transient ischemic attack carries 10-15% 90-day stroke risk

Classification by Anatomical Localization

Central Nervous System Lesions

Cortical: Higher function deficits (aphasia, neglect, apraxia) plus contralateral motor/sensory findings; seizures common

Subcortical (white matter/basal ganglia): Pure motor or sensory deficits without cortical signs; movement disorders

Brainstem: Crossed deficits (ipsilateral cranial nerve, contralateral body); vertigo, diplopia, dysarthria, dysphagia

Cerebellar: Ipsilateral ataxia, dysmetria, intention tremor; no weakness

Spinal cord: Motor and sensory level; bladder/bowel dysfunction; bilateral findings below lesion

Peripheral Nervous System Lesions

Nerve root (radiculopathy): Dermatomal sensory loss, myotomal weakness, diminished reflexes

Plexus: Multiple nerve root distributions; complex patterns

Peripheral nerve: Specific nerve territory; may be mononeuropathy or polyneuropathy

Neuromuscular junction: Fatigable weakness; no sensory loss; ptosis and diplopia common

Muscle: Proximal weakness typically; no sensory loss; preserved reflexes early

Classification by Type of Deficit

Deficit TypeClinical FeaturesLocalizing Value
Motor weaknessHemiparesis, monoparesis, paraparesis, quadriparesis; upper versus lower motor neuron patternsDistribution and pattern narrow localization significantly
Sensory disturbanceNumbness, paresthesias, pain; may involve all modalities or be dissociatedDermatomal, peripheral nerve, hemisensory, or sensory level patterns
Visual disturbanceMonocular versus binocular; visual field defects; diplopiaPrecisely localizes along visual pathway from eye to occipital cortex
Speech and languageAphasia (language), dysarthria (articulation), apraxia of speechAphasia localizes to dominant hemisphere; dysarthria less specific
Coordination/gaitAtaxia, dysmetria, dysdiadochokinesia, gait instabilityCerebellar, sensory ataxia, or vestibular localization
Cranial nerve dysfunctionSpecific patterns based on nerve involvedHighly localizing; especially valuable for brainstem lesions

The Critical First Question: In any patient presenting with a new focal neurologic deficit, the first priority is determining whether this represents an acute stroke. The phrase “time is brain” reflects that approximately 1.9 million neurons die every minute during an untreated large vessel ischemic stroke. Thrombolytic therapy must be given within 4.5 hours of symptom onset (and earlier is better), while mechanical thrombectomy may extend the window to 24 hours in selected patients. Therefore, rapid recognition and activation of stroke protocols is paramount.

Localization Principle

The pattern of neurologic deficits allows precise anatomical localization before any imaging is obtained. A single lesion should explain all findings—if it cannot, consider multifocal disease (such as multiple sclerosis, metastases, or vasculitis) or a systemic process. Mastering neuroanatomy transforms a seemingly complex presentation into a logical diagnostic puzzle.

2. Pathophysiology and Mechanisms

Understanding the underlying mechanisms of focal neurologic deficit

Understanding the mechanisms by which different pathological processes produce focal neurologic deficits is essential for both accurate diagnosis and appropriate treatment selection. The nervous system is exquisitely sensitive to disruption, and deficits arise when neurons or their connections are damaged, compressed, demyelinated, or deprived of metabolic substrates. The temporal profile of symptom onset often reflects the underlying pathophysiology.

Primary Mechanisms of Neuronal Dysfunction

MechanismPathophysiologyTypical OnsetExamples
IschemiaInterruption of blood supply leads to ATP depletion, ionic pump failure, excitotoxicity, and cell death within minutesSeconds to minutes; maximal at onset or rapidly progressiveIschemic stroke, transient ischemic attack, hypotensive watershed infarcts
HemorrhageDirect tissue destruction plus mass effect; blood products are neurotoxic; surrounding edema developsSeconds to minutes; may progress over hours as hematoma expandsIntracerebral hemorrhage, subarachnoid hemorrhage, subdural hematoma
CompressionMass effect disrupts axonal conduction and blood flow; may cause herniationHours to weeks depending on growth rateBrain tumor, abscess, subdural hematoma, spinal cord compression
DemyelinationLoss of myelin sheath slows or blocks action potential conduction; initially reversibleHours to days; may wax and waneMultiple sclerosis, acute disseminated encephalomyelitis, Guillain-Barré syndrome
InflammationImmune-mediated injury, edema, blood-brain barrier disruptionDays to weeks; often subacuteEncephalitis, cerebral vasculitis, neurosarcoidosis
Metabolic/ToxicNeuronal dysfunction from substrate deficiency or toxin accumulationVariable; often reversible if correctedHypoglycemia, hepatic encephalopathy, Wernicke encephalopathy
SeizureAbnormal synchronized neuronal discharge; post-ictal depression followsSeconds (ictal); minutes to hours (post-ictal Todd’s paralysis)Focal seizure with motor symptoms, Todd’s paralysis

The Ischemic Cascade: A Detailed Look

Ischemic stroke provides a paradigm for understanding acute neuronal injury. When blood flow drops below the critical threshold of approximately 10-12 mL/100g/minute, neurons begin to fail within seconds.

PhaseTimeframePathophysiologyClinical Implication
Energy failureSecondsATP depletion causes Na+/K+-ATPase failure; neurons depolarizeImmediate symptom onset; potentially reversible if flow restored
ExcitotoxicityMinutesGlutamate release causes calcium influx, activating destructive enzymesDamage begins spreading; ischemic penumbra at risk
Oxidative stressMinutes to hoursFree radical production damages membranes, proteins, DNAReperfusion may paradoxically worsen injury
InflammationHours to daysMicroglia activation, blood-brain barrier breakdown, leukocyte infiltrationSecondary injury expands lesion; target for future therapies
ApoptosisHours to daysProgrammed cell death in penumbral tissueDelayed neuronal loss may be preventable

The Ischemic Penumbra: Surrounding the core of irreversibly damaged tissue is the “ischemic penumbra”—tissue that is dysfunctional but potentially salvageable. This penumbra receives marginal blood flow (typically 12-22 mL/100g/minute) and can survive for hours if reperfusion is achieved. Modern stroke imaging (CT or MRI perfusion) identifies the penumbra to select patients who may benefit from intervention even outside traditional time windows.

Upper Motor Neuron vs Lower Motor Neuron Lesions

The distinction between upper motor neuron (UMN) and lower motor neuron (LMN) patterns is fundamental to localizing motor deficits.

Upper Motor Neuron Pattern

Lesion location: Motor cortex, internal capsule, brainstem, or spinal cord (corticospinal tract)

Weakness pattern: Pyramidal distribution—arm flexors weaker than extensors; leg extensors weaker than flexors

Tone: Increased (spasticity); clasp-knife quality

Reflexes: Hyperreflexia; positive Babinski sign (upgoing toe)

Atrophy: Minimal (disuse atrophy only)

Fasciculations: Absent

Lower Motor Neuron Pattern

Lesion location: Anterior horn cell, nerve root, plexus, peripheral nerve

Weakness pattern: Specific to affected nerve root or peripheral nerve territory

Tone: Decreased (flaccidity)

Reflexes: Hyporeflexia or areflexia

Atrophy: Prominent and early; denervation atrophy

Fasciculations: May be present (anterior horn cell disease)

Vascular Territory Patterns

Each major cerebral artery supplies a defined territory, producing characteristic clinical syndromes when occluded.

ArteryTerritory SuppliedClassic Deficit Pattern
Middle cerebral arteryLateral frontal, parietal, temporal cortex; internal capsule; basal gangliaContralateral hemiparesis (face and arm greater than leg); hemisensory loss; homonymous hemianopia; aphasia (dominant hemisphere) or neglect (non-dominant)
Anterior cerebral arteryMedial frontal and parietal cortexContralateral leg weakness greater than arm; abulia; urinary incontinence; grasp reflex
Posterior cerebral arteryOccipital lobe; medial temporal lobe; thalamusContralateral homonymous hemianopia with macular sparing; memory impairment; thalamic sensory loss
Basilar arteryBrainstem; cerebellumCrossed deficits; quadriparesis; “locked-in syndrome”; coma; cerebellar signs
Posterior inferior cerebellar artery (lateral medullary syndrome)Lateral medullaIpsilateral facial sensory loss, Horner syndrome, ataxia, dysarthria, dysphagia; contralateral body pain/temperature loss

How Specific Conditions Cause Focal Deficits

ConditionMechanismWhy This Matters for Diagnosis
Ischemic strokeThrombotic or embolic arterial occlusion causes downstream ischemia; symptoms maximal at onset or rapidly progressiveHyperacute onset is classic; lacunar strokes from small vessel disease produce pure motor or sensory syndromes
Intracerebral hemorrhageRupture of small penetrating arteries (often from hypertension); hematoma expands causing mass effectOften presents with headache and progressive deficits; may be indistinguishable from ischemic stroke clinically
Brain tumorMass effect, infiltration of neural tissue, surrounding edema, and disruption of blood supplySubacute progressive course; seizures common; symptoms may fluctuate with edema
Multiple sclerosisAutoimmune demyelination blocks conduction; inflammation causes reversible dysfunctionEpisodes lasting days to weeks; may improve spontaneously; dissemination in space and time
Brain abscessFocal infection creates expanding mass with surrounding edema and inflammationSubacute course with fever and focal signs; may have predisposing factors (endocarditis, sinusitis)
Subdural hematomaVenous bleeding accumulates between dura and arachnoid; gradual compression of brainChronic presentation in elderly may have minimal or forgotten trauma; fluctuating symptoms common
Migraine with auraCortical spreading depression causes transient neuronal dysfunction without ischemiaGradual “march” of symptoms over 20-60 minutes; complete resolution; history of similar episodes

Often Overlooked Mechanism: Hypoglycemia

Hypoglycemia is a great mimicker of stroke and should be excluded immediately in any patient with acute focal neurologic deficit. The brain depends almost exclusively on glucose for energy, and hypoglycemia can produce hemiparesis, aphasia, or other focal findings that completely resolve with glucose administration. Always check fingerstick glucose before or simultaneously with stroke code activation—treating hypoglycemia takes seconds and may be curative, while missing it leads to irreversible brain injury.

Transient Ischemic Attack: A Warning Sign

Transient ischemic attack (TIA) represents temporary ischemia without infarction—symptoms resolve completely, typically within 1 hour. However, TIA is a neurologic emergency because it signals high short-term stroke risk. The ABCD2 score helps stratify risk, but approximately 10-15% of TIA patients will have a stroke within 90 days, with the highest risk in the first 48 hours. Urgent evaluation and intervention (antiplatelet therapy, blood pressure control, statin, carotid imaging) can dramatically reduce this risk.

3. History Taking

A comprehensive approach to eliciting the focal neurologic deficit history

Red Flags — Require Emergent Evaluation

  • Sudden onset (“thunderclap”) — Stroke, subarachnoid hemorrhage
  • Rapid progression over minutes to hours — Expanding hemorrhage, basilar artery occlusion
  • Decreased level of consciousness — Mass effect, herniation, brainstem involvement
  • Severe headache with focal signs — Hemorrhagic stroke, venous sinus thrombosis
  • Neck stiffness with fever — Meningitis, brain abscess
  • Bilateral weakness or sensory level — Spinal cord compression (surgical emergency)
  • Bladder or bowel dysfunction with leg weakness — Cauda equina syndrome
  • New deficit in anticoagulated patient — Intracranial hemorrhage
  • Symptoms occurring during Valsalva or exertion — Subarachnoid hemorrhage, cerebral venous thrombosis
  • Recent head or neck trauma — Arterial dissection, traumatic hemorrhage

The Most Important Question: “When was the patient last known to be at their neurologic baseline?” This “last known well” time determines eligibility for thrombolysis and thrombectomy. If the patient woke up with symptoms, the last known well time is when they went to sleep—not when they woke up. Document this precisely (date and time) before anything else.

Systematic History: The “FOCAL” Approach

Use the mnemonic “FOCAL” to ensure comprehensive history taking for neurologic deficits:

  • FFirst moment and Features: Exact time of onset; what were they doing? Was onset sudden (seconds), rapid (minutes), or gradual (hours to days)? What was the first symptom noticed?
  • OOther symptoms and Onset pattern: Associated symptoms (headache, seizure, fever, neck pain, vertigo, nausea, visual changes)? Have symptoms been stable, progressing, fluctuating, or improving?
  • CCharacterize the deficit: Precisely what functions are affected? Weakness, numbness, vision, speech, coordination, cognition? Which side? Face, arm, leg—all equally or one more than others?
  • AAntecedents and risk factors: Recent infections, trauma, procedures? Vascular risk factors (hypertension, diabetes, smoking, hyperlipidemia, atrial fibrillation)? Prior strokes or transient ischemic attacks?
  • LLife impact and Limitations: Functional impact? Can they walk, speak, swallow, see? Any similar prior episodes? Baseline functional status?

Targeted Questions by Suspected Cause

Suspected CauseKey FeaturesAsk This Question
Ischemic strokeSudden onset, maximal at start, vascular risk factors, atrial fibrillation“Exactly what time did this start? What were you doing at that moment? Do you have an irregular heartbeat or take blood thinners?”
Hemorrhagic strokeSevere headache, nausea/vomiting, hypertension, anticoagulation“Did you have a sudden severe headache when this started? Are you on any blood thinners including aspirin? What is your usual blood pressure?”
Transient ischemic attackComplete resolution, typically within 1 hour, high recurrence risk“Have your symptoms completely resolved? How long did they last? Have you had any similar brief episodes before?”
Subarachnoid hemorrhageThunderclap headache, worst headache of life, exertional onset“Was this the worst headache of your life? Did it come on instantly like a thunderclap? Were you straining, lifting, or having sex when it started?”
Brain tumorProgressive course over weeks, seizures, morning headache, personality change“Have your symptoms been gradually worsening? Do you have headaches that are worse in the morning? Have you had any seizures or noticed personality changes?”
Multiple sclerosisYoung adult, prior episodes, symptoms in different locations at different times“Have you ever had episodes of visual loss, numbness, or weakness that came and went? Any problems with bladder control or fatigue?”
Arterial dissectionNeck pain, recent trauma or manipulation, young patient, Horner syndrome“Have you had any neck pain or headache? Any recent neck injury, chiropractic manipulation, or even minor trauma like a roller coaster ride?”
Seizure with Todd’s paralysisWitnessed convulsion, post-ictal confusion, gradual resolution“Did anyone witness shaking or convulsive movements? Did you bite your tongue or lose bladder control? Were you confused afterward?”
Migraine with auraGradual onset, visual symptoms first, headache follows, prior similar episodes“Did your symptoms develop gradually over 20-30 minutes? Did you have visual disturbance before the weakness? Do you have a history of migraines?”
Subdural hematomaElderly, anticoagulation, fluctuating symptoms, often forgotten trauma“Have you had any falls or head injuries, even minor ones, in the past few weeks? Have your symptoms been coming and going?”
Brain abscess or encephalitisFever, subacute course, immunocompromise, recent infection“Have you had any fevers or chills? Any recent infections—ear, sinus, dental? Do you have any conditions affecting your immune system?”
Spinal cord compressionBilateral leg weakness, sensory level, bladder/bowel dysfunction, back pain“Do you have weakness in both legs? Any back pain? Problems urinating or having bowel movements? Any numbness below a certain level on your body?”

Vascular Risk Factor Assessment

Essential Vascular History

For any patient with suspected cerebrovascular disease, systematically assess:

  • Hypertension: Duration, control, medications, compliance
  • Diabetes mellitus: Type, duration, control (hemoglobin A1c), complications
  • Hyperlipidemia: Known? Treated? Last lipid panel?
  • Atrial fibrillation: Known? Paroxysmal? On anticoagulation?
  • Smoking: Current, former, pack-years
  • Cardiac disease: Prior myocardial infarction, heart failure, valvular disease, recent procedures
  • Prior stroke or transient ischemic attack: When? Workup? Treatment?
  • Family history: Stroke, early cardiovascular disease
  • Hypercoagulable states: Prior deep venous thrombosis or pulmonary embolism, recurrent pregnancy loss

Medication and Substance History

Medications That Increase Bleeding Risk

  • Anticoagulants: Warfarin, direct oral anticoagulants (apixaban, rivaroxaban, dabigatran, edoxaban), heparin — contraindicate thrombolysis, increase hemorrhage risk
  • Antiplatelet agents: Aspirin, clopidogrel, ticagrelor, prasugrel — relative contraindication to thrombolysis if dual therapy
  • Thrombolytics: Recent tissue plasminogen activator use — absolute contraindication to repeat dosing

Medications That May Cause Focal Deficits

  • Insulin and sulfonylureas: Hypoglycemia mimics stroke
  • Antihypertensives: Excessive lowering may cause watershed infarcts
  • Chemotherapy: Some agents are neurotoxic or increase thrombosis risk

Substances and Focal Deficits

  • Cocaine and amphetamines: Vasospasm, hemorrhagic stroke, ischemic stroke
  • Alcohol: Intoxication may mask deficits; chronic use increases hemorrhage risk; withdrawal seizures
  • Intravenous drug use: Endocarditis with septic emboli, infectious mycotic aneurysms
  • Oral contraceptives: Increased stroke risk, especially with smoking or migraine with aura

Recent Procedures

  • Cardiac catheterization: Embolic stroke risk
  • Carotid surgery or stenting: Hyperperfusion syndrome, embolism
  • Any recent surgery: Paradoxical embolism via patent foramen ovale

Social and Functional History

DomainWhy It MattersKey Questions
Baseline functional statusDetermines treatment goals and eligibility (modified Rankin Scale)“Before this happened, could you walk independently? Care for yourself? Work? What activities could you do?”
Living situationAffects disposition and rehabilitation planning“Do you live alone or with family? Are there stairs in your home? Do you have help available?”
OccupationMay reveal exposures; impacts return-to-work planning“What kind of work do you do? Any exposure to toxins or extreme physical demands?”
Advance directivesCritical for decisions about aggressive intervention“Do you have a healthcare proxy? Any advance directives? What would your wishes be for aggressive treatment?”

Collateral History is Essential

Patients with acute neurologic deficits often cannot provide reliable history—they may have aphasia, confusion, or impaired awareness of their deficits (anosognosia). Always seek collateral information from family members, witnesses, emergency medical services personnel, or bystanders. Ask specifically: “What did you observe? When exactly did you last see them normal? Did they complain of anything before this happened?”

4. Physical Examination

A systematic approach to the neurologic examination for focal deficits

Examination Framework: The neurologic examination should be both systematic and focused. In the hyperacute setting, use the National Institutes of Health Stroke Scale (NIHSS) for rapid standardized assessment. For comprehensive evaluation, proceed systematically through mental status, cranial nerves, motor, sensory, coordination, and gait. Always correlate findings to localize the lesion anatomically.

General Inspection

  • Level of consciousness: Alert, drowsy, stuporous, comatose? Use Glasgow Coma Scale if depressed
  • Respiratory pattern: Cheyne-Stokes (bilateral hemispheric or diencephalic), central neurogenic hyperventilation (midbrain), ataxic breathing (medulla)
  • Body position: Asymmetric posturing, facial droop, flaccid limb, abnormal head or eye position
  • Spontaneous movements: Asymmetry of movement, seizure activity, tremor, myoclonus
  • Signs of trauma: Bruising, lacerations, Battle sign (mastoid ecchymosis), raccoon eyes (periorbital ecchymosis)

Vital Signs

Vital SignWhat to Look ForClinical Significance
Blood pressureSeverely elevated (greater than 180/120), hypotensive, asymmetric between armsHypertensive emergency suggests hemorrhage; permissive hypertension in ischemic stroke; arm asymmetry suggests aortic dissection or subclavian stenosis
Heart rate and rhythmIrregular rhythm (atrial fibrillation), bradycardia, tachycardiaAtrial fibrillation is major stroke risk; Cushing reflex (bradycardia with hypertension) suggests elevated intracranial pressure
Respiratory rateAbnormal patterns, tachypnea, apneaAbnormal patterns localize brainstem lesions; airway protection may be compromised
TemperatureFever, hypothermiaFever suggests infection (meningitis, encephalitis, abscess) or hypothalamic dysfunction; hyperthermia worsens ischemic injury
Oxygen saturationHypoxemiaHypoxia worsens neurologic injury; may indicate aspiration
GlucoseHypoglycemia (less than 60 mg/dL), severe hyperglycemiaHypoglycemia mimics stroke and must be excluded immediately; hyperglycemia worsens ischemic outcomes

Mental Status Examination

Level of Consciousness

Alert: Awake, aware, responds appropriately

Drowsy/Lethargic: Falls asleep but arousable with verbal stimuli

Stuporous: Arousable only with vigorous stimuli

Comatose: Unarousable; assess brainstem reflexes

Language and Speech

Aphasia testing: Spontaneous speech fluency, comprehension, repetition, naming

Broca’s aphasia: Non-fluent, intact comprehension, impaired repetition — frontal lesion

Wernicke’s aphasia: Fluent but nonsensical, impaired comprehension — temporal lesion

Dysarthria: Articulation problem, language intact — distinguish from aphasia

Attention and Neglect

  • Orientation: Person, place, time, situation
  • Attention: Digit span, months backward, serial sevens
  • Hemispatial neglect: Visual extinction on double simultaneous stimulation, line bisection test, drawing a clock — suggests non-dominant parietal lesion

Cranial Nerve Examination

Cranial NerveTestAbnormality and Localization
II – OpticVisual acuity, visual fields by confrontation, fundoscopyField cuts localize along visual pathway; papilledema indicates elevated intracranial pressure
III, IV, VI – Oculomotor, Trochlear, AbducensPupil size and reactivity, extraocular movements, ptosisDilated fixed pupil (CN III compression from herniation); gaze deviation toward lesion (frontal) or away (pontine); internuclear ophthalmoplegia (brainstem/multiple sclerosis)
V – TrigeminalFacial sensation (all three divisions), corneal reflex, jaw strengthSensory loss pattern helps localize; absent corneal reflex is early brainstem sign
VII – FacialFacial symmetry at rest and with movement (raise eyebrows, close eyes tight, smile)Upper motor neuron (forehead spared) versus lower motor neuron (entire face); central facial weakness common in stroke
VIII – VestibulocochlearHearing (finger rub), nystagmus patternCentral versus peripheral vertigo; direction-changing nystagmus suggests central cause
IX, X – Glossopharyngeal, VagusPalate elevation (“say ah”), gag reflex, voice qualityUvula deviates away from lesion; dysphonia, dysphagia indicate bulbar dysfunction
XI – AccessoryShoulder shrug, head turn against resistanceWeakness indicates lesion of nerve or nucleus in medulla
XII – HypoglossalTongue protrusion, inspect for atrophy and fasciculationsTongue deviates toward side of lesion; atrophy and fasciculations indicate lower motor neuron lesion

Motor Examination

Inspection

  • Atrophy: Suggests chronic denervation (lower motor neuron) or disuse
  • Fasciculations: Visible muscle twitching suggests anterior horn cell disease
  • Posturing: Decorticate (flexor, above red nucleus) versus decerebrate (extensor, below red nucleus)

Tone

  • Spasticity: Velocity-dependent increase in tone (upper motor neuron); clasp-knife quality
  • Rigidity: Velocity-independent, lead-pipe or cogwheel (basal ganglia)
  • Flaccidity: Decreased tone (lower motor neuron or acute upper motor neuron)

Strength Testing (Medical Research Council Scale)

GradeDescription
5Normal strength against full resistance
4Movement against gravity and some resistance
3Movement against gravity only
2Movement with gravity eliminated
1Trace contraction, no movement
0No contraction

Key Muscle Groups to Test

Upper Extremity

  • Shoulder abduction (C5, deltoid)
  • Elbow flexion (C5-6, biceps)
  • Elbow extension (C7, triceps)
  • Wrist extension (C6-7, wrist extensors)
  • Finger extension (C7, finger extensors)
  • Finger abduction (T1, interossei)
  • Grip strength

Lower Extremity

  • Hip flexion (L1-2, iliopsoas)
  • Hip extension (L5-S1, gluteus maximus)
  • Knee extension (L3-4, quadriceps)
  • Knee flexion (L5-S1, hamstrings)
  • Ankle dorsiflexion (L4-5, tibialis anterior)
  • Ankle plantarflexion (S1-2, gastrocnemius)
  • Great toe extension (L5, extensor hallucis longus)

Pronator Drift Test

Sensitive Test for Subtle Weakness

Have the patient hold both arms extended in front with palms up and eyes closed for 10-20 seconds. In upper motor neuron weakness, the affected arm will pronate and drift downward. This test can detect mild weakness not apparent on direct strength testing. The leg equivalent is having the patient hold their legs up while supine—the weak leg will drift down.

Reflex Examination

ReflexNerve RootHyperreflexia SuggestsHyporeflexia Suggests
BicepsC5-6Upper motor neuron lesion above this levelC5-6 radiculopathy or peripheral neuropathy
TricepsC7Upper motor neuron lesion above this levelC7 radiculopathy or peripheral neuropathy
BrachioradialisC5-6Upper motor neuron lesion above this levelC5-6 radiculopathy or peripheral neuropathy
Patellar (knee)L3-4Upper motor neuron lesion above this levelL3-4 radiculopathy or peripheral neuropathy
Achilles (ankle)S1Upper motor neuron lesion above this levelS1 radiculopathy or peripheral neuropathy

Pathological Reflexes

  • Babinski sign (extensor plantar response): Upgoing great toe with fanning of other toes indicates upper motor neuron lesion
  • Hoffman sign: Flexion of thumb and index finger when flicking the middle fingernail; upper motor neuron lesion
  • Clonus: Rhythmic oscillations (especially at ankle) with sustained stretch; indicates upper motor neuron lesion

Sensory Examination

Primary Modalities

Light touch: Tests dorsal columns and spinothalamic tracts

Pinprick (pain): Spinothalamic tract (crosses at spinal level)

Temperature: Spinothalamic tract (crosses at spinal level)

Vibration: Dorsal columns (ipsilateral ascent)

Proprioception: Dorsal columns (ipsilateral ascent)

Patterns of Sensory Loss

Hemisensory: Thalamus or cortical lesion (contralateral)

Sensory level: Spinal cord lesion at that level

Dermatomal: Nerve root lesion

Peripheral nerve: Specific nerve territory

Stocking-glove: Peripheral polyneuropathy

Dissociated: Preserved some modalities, lost others (brainstem or spinal cord)

Coordination and Gait

Cerebellar Testing

  • Finger-to-nose: Dysmetria (past-pointing) and intention tremor indicate cerebellar dysfunction
  • Heel-to-shin: Incoordination suggests cerebellar or sensory ataxia
  • Rapid alternating movements: Dysdiadochokinesia indicates cerebellar dysfunction
  • Rebound: Inability to check movement suggests cerebellar lesion

Gait Assessment

Gait PatternDescriptionLocalization
Hemiplegic gaitCircumduction of leg, arm held flexedContralateral hemisphere (upper motor neuron)
Spastic gaitStiff, scissoring legsBilateral upper motor neuron (spinal cord, bilateral strokes)
Ataxic gaitWide-based, unsteady, irregular stepsCerebellar or sensory ataxia
Steppage gaitHigh stepping to clear foot dropPeroneal nerve palsy or L5 radiculopathy
Waddling gaitHip drop with each stepProximal muscle weakness (myopathy)
Magnetic gaitFeet seem stuck to floor, shufflingNormal pressure hydrocephalus, frontal lobe disease

Expected Findings by Etiology

ConditionMental StatusCranial NervesMotor/SensoryOther Key Findings
Middle cerebral artery strokeAphasia (dominant) or neglect (non-dominant)Gaze deviation toward lesion; central facial weaknessContralateral hemiparesis (face/arm > leg); hemisensory lossHomonymous hemianopia
Lacunar stroke (pure motor)NormalMay have facial weaknessContralateral hemiparesis (face/arm/leg equal); no sensory lossNo cortical signs (aphasia, neglect, visual field cut)
Brainstem strokeMay be drowsy; often intact if smallCranial nerve palsies (ipsilateral to lesion)Crossed deficits: ipsilateral CN, contralateral bodyVertigo, diplopia, dysarthria, dysphagia common
Cerebellar strokeAlert initially; may decline with edemaNystagmus, gaze abnormalitiesNo weakness; ipsilateral ataxiaSevere imbalance; headache; risk of herniation
Intracerebral hemorrhageOften decreased consciousnessSimilar to ischemic stroke patternOften more severe and progressive deficitsHeadache, vomiting more common than ischemic stroke
Spinal cord compressionNormalNormalBilateral weakness below level; sensory level; upper motor neuron signs below lesionBladder/bowel dysfunction; back pain at level
Bell’s palsyNormalComplete unilateral facial weakness (forehead involved)NormalHyperacusis, altered taste; diagnosis of exclusion

The NIHSS: Rapid Standardized Assessment

The National Institutes of Health Stroke Scale (NIHSS) is an 11-item standardized examination that quantifies stroke severity in approximately 5-10 minutes. Scores range from 0 (no deficit) to 42 (maximum deficit). It assesses: level of consciousness, gaze, visual fields, facial palsy, motor function (arm and leg), ataxia, sensory, language, dysarthria, and neglect/extinction. The NIHSS score guides treatment decisions (thrombolysis eligibility, thrombectomy consideration) and predicts outcomes. All providers managing stroke patients should be certified in NIHSS administration.

5. Differential Diagnosis

Systematic approach organized by probability, tempo, and anatomical localization

Acute Focal Neurologic Deficit (Onset within minutes to hours)

ProbabilityConditionKey FeaturesRed Flags
COMMON (approximately 70%)Ischemic strokeSudden onset, maximal at start, deficit matches vascular territory, vascular risk factorsWithin thrombolysis window (less than 4.5 hours); large vessel occlusion on imaging
COMMONTransient ischemic attackComplete resolution (typically within 1 hour), same risk factors as strokeHigh short-term stroke risk (10-15% at 90 days); requires urgent workup
LESS COMMON (approximately 20%)Intracerebral hemorrhageHeadache, vomiting, progressive deficits, hypertension, anticoagulation useExpanding hematoma; signs of elevated intracranial pressure; herniation
LESS COMMONSeizure with Todd’s paralysisWitnessed seizure activity, post-ictal confusion, gradual resolution over hoursNew-onset seizure requires brain imaging to exclude structural lesion
LESS COMMONHypoglycemiaDiabetes, insulin or sulfonylurea use, confusion, diaphoresis, rapid resolution with glucoseGlucose less than 60 mg/dL; prolonged hypoglycemia causes permanent injury
LESS COMMONMigraine with aura (hemiplegic migraine)Gradual spread over 20-60 minutes, visual aura, headache follows, prior similar episodesFirst episode requires stroke exclusion; prolonged aura concerning
UNCOMMON BUT SERIOUS (approximately 10%)Subarachnoid hemorrhageThunderclap headache, worst headache of life, meningismus, may have focal signsSentinel bleed; rebleeding risk; requires urgent aneurysm evaluation
UNCOMMON BUT SERIOUSArterial dissection (carotid or vertebral)Neck pain, headache, Horner syndrome, young patient, recent trauma or manipulationCan cause stroke; requires anticoagulation or antiplatelet therapy
UNCOMMON BUT SERIOUSCerebral venous sinus thrombosisHeadache, seizures, focal deficits not matching arterial territory, hypercoagulable state, pregnancyMay cause venous infarction or hemorrhage; requires anticoagulation

Subacute Focal Neurologic Deficit (Days to weeks)

Step-by-Step Approach to Subacute Deficits:

  1. Step 1: Exclude stroke or hemorrhage that presented late — imaging is essential
  2. Step 2: Consider mass lesions — tumor, abscess, subdural hematoma
  3. Step 3: Evaluate for inflammatory or infectious causes — multiple sclerosis, encephalitis, vasculitis
  4. Step 4: Assess for metabolic or toxic etiologies if imaging unrevealing
ProbabilityConditionApproximate FrequencyKey Distinguishing Features
COMMONBrain tumor (primary or metastatic)15-20% of subacute presentationsProgressive course, seizures, morning headache, personality change; edema may cause fluctuation
COMMONSubdural hematoma10-15%Elderly, anticoagulation, often forgotten minor trauma, fluctuating symptoms, bilateral possible
COMMONMultiple sclerosis (acute relapse)10-15% (in young adults)Young adult, prior episodes, optic neuritis, symptoms disseminated in space and time
LESS COMMONBrain abscess5-10%Fever, subacute headache, focal signs; predisposing factors (endocarditis, sinusitis, immunocompromise)
LESS COMMONEncephalitis (viral or autoimmune)5-10%Fever, altered mental status, seizures, behavioral change; herpes simplex encephalitis affects temporal lobes
LESS COMMONCentral nervous system vasculitisLess than 5%Headache, encephalopathy, multifocal deficits, may have systemic vasculitis features
UNCOMMONProgressive multifocal leukoencephalopathyRare (immunocompromised)Immunocompromised (HIV, transplant, natalizumab); progressive multifocal white matter lesions
UNCOMMONCreutzfeldt-Jakob diseaseRareRapidly progressive dementia, myoclonus, ataxia; MRI shows cortical ribboning and basal ganglia changes

Chronic Progressive Focal Deficit (Weeks to months)

ConditionTypical PresentationKey Diagnostic Clues
Slow-growing brain tumor (meningioma, low-grade glioma)Insidious progression, seizures, subtle personality changeImaging shows well-circumscribed mass; may be incidental finding
Chronic subdural hematomaElderly, gradual decline, fluctuating symptomsCrescent-shaped collection on CT; may be bilateral; often no recalled trauma
Normal pressure hydrocephalusTriad: gait apraxia, urinary incontinence, dementia (in that order)Ventriculomegaly out of proportion to atrophy; improvement with large-volume lumbar puncture
Neurodegenerative disease with focal onsetAsymmetric parkinsonism (corticobasal syndrome), progressive aphasiaInsidious onset, steady progression, characteristic patterns on examination
Cervical spondylotic myelopathyGradual hand clumsiness, gait difficulty, neck painUpper motor neuron signs in legs, lower motor neuron in arms; MRI shows cord compression
Motor neuron disease (amyotrophic lateral sclerosis)Progressive weakness, fasciculations, no sensory lossMixed upper and lower motor neuron signs; bulbar involvement; electromyography confirms

Anatomical Approach to Localization

Cortical Lesions

Ischemic stroke (middle cerebral artery, anterior cerebral artery, posterior cerebral artery)

Hemorrhagic stroke

Brain tumor (glioma, metastasis, meningioma)

Brain abscess

Encephalitis (herpes simplex encephalitis)

Cortical venous thrombosis

Subcortical and Deep Lesions

Lacunar stroke (internal capsule, basal ganglia, pons)

Hypertensive hemorrhage (putamen, thalamus)

Multiple sclerosis plaques

Deep brain tumor

Toxoplasmosis (in immunocompromised)

Central pontine myelinolysis

Brainstem Lesions

Basilar artery stroke

Vertebral artery dissection

Pontine hemorrhage

Multiple sclerosis

Brainstem glioma

Listeria rhombencephalitis

Spinal Cord Lesions

Spinal cord compression (tumor, epidural abscess, hematoma)

Transverse myelitis

Spinal cord infarction

Multiple sclerosis

Cervical spondylotic myelopathy

Vitamin B12 deficiency (subacute combined degeneration)

Stroke Mimics: Conditions That Present Like Stroke

Approximately 20-30% of suspected strokes are mimics

These conditions can present with sudden focal deficits and may lead to inappropriate thrombolysis if not recognized:

Stroke MimicKey Distinguishing FeaturesHow to Differentiate
HypoglycemiaDiabetes, insulin use, confusion, diaphoresis, tremorFingerstick glucose; resolves rapidly with glucose administration
Seizure with Todd’s paralysisWitnessed convulsions, post-ictal confusion, gradual resolutionHistory from witnesses; improves over hours; EEG if uncertain
Migraine with auraGradual onset (20-60 min), positive symptoms (visual), headache followsHistory of similar episodes; symptoms “march” gradually; complete resolution
Functional neurological disorderInconsistent examination, positive signs (Hoover sign), psychiatric historyExamination inconsistencies; give-way weakness; normal imaging
Peripheral vestibular disorderVertigo predominant, normal HINTS examinationHINTS battery (Head Impulse, Nystagmus, Test of Skew); peripheral pattern reassuring
Bell’s palsyIsolated facial weakness including forehead, no other deficitsLower motor neuron pattern (forehead weak); no limb weakness or sensory loss
Subdural hematomaSubacute course, fluctuating symptoms, elderlyCT shows extra-axial collection; often bilateral
Brain tumorProgressive course, seizures, papilledemaMRI shows mass with edema; enhancement pattern helps characterize

Drug-Induced Focal Neurologic Deficits

Drug or Drug ClassMechanismCharacteristicsManagement
Anticoagulants (warfarin, direct oral anticoagulants, heparin)Increased bleeding risk leads to intracranial hemorrhageSpontaneous or trauma-related hemorrhage; subdural or intracerebralReversal agents; neurosurgical evaluation
Cocaine and amphetaminesVasospasm, hypertensive crisis, vasculitisIschemic or hemorrhagic stroke in young patients; hypertension at presentationBlood pressure control; supportive care; avoid beta-blockers alone
Insulin and sulfonylureasHypoglycemia causes neuronal dysfunctionFocal deficits indistinguishable from stroke; resolves with glucoseImmediate glucose administration
Chemotherapy (methotrexate, cytarabine, 5-fluorouracil)Direct neurotoxicity, leukoencephalopathySubacute onset during or after treatment; cerebellar or diffuseDrug cessation; supportive care
Immunosuppressants (cyclosporine, tacrolimus)Posterior reversible encephalopathy syndromeVisual disturbance, seizures, headache; posterior predominant on MRIBlood pressure control; reduce or stop offending agent
LithiumNeurotoxicity at high levelsTremor, ataxia, confusion; may have focal featuresCheck level; supportive care; hemodialysis if severe
PhenytoinCerebellar toxicityAtaxia, nystagmus, dysarthriaCheck level; dose adjustment

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

Clinical ClueThink This FirstNext Step
Sudden onset, maximal at start, vascular territoryIschemic strokeActivate stroke code; CT head; determine last known well time
Thunderclap headache with neck stiffnessSubarachnoid hemorrhageCT head; if negative, lumbar puncture
Crossed deficits (ipsilateral face, contralateral body)Brainstem strokeMRI with diffusion-weighted imaging; vascular imaging
Young patient with neck pain and Horner syndromeCarotid or vertebral dissectionCT angiography or MR angiography of head and neck
Bilateral leg weakness with sensory levelSpinal cord compressionEmergent MRI spine; neurosurgical consultation
Fluctuating symptoms in elderly on anticoagulationSubdural hematomaCT head without contrast
Progressive deficit with morning headache and seizuresBrain tumorMRI brain with and without contrast
Young adult with prior episodes affecting different areasMultiple sclerosisMRI brain and spine with contrast; lumbar puncture
Fever with focal deficit and altered mental statusEncephalitis or brain abscessMRI brain; lumbar puncture (if safe); empiric acyclovir
Deficit resolves with glucose administrationHypoglycemiaIdentify cause; adjust diabetic regimen
Witnessed seizure followed by focal weaknessTodd’s paralysisObserve for resolution; brain imaging to exclude structural cause
Gradual visual aura spreading over 20 minutes, then headacheMigraine with auraFirst episode requires imaging; subsequent episodes may not

6. Diagnostic Investigations

A stepwise approach guided by clinical urgency and suspected etiology

Guiding Principle: In acute focal neurologic deficit, the primary goal is to differentiate ischemic stroke (potentially treatable with thrombolysis or thrombectomy) from hemorrhage and stroke mimics. Speed is critical—brain imaging should be obtained within minutes of arrival. Subsequent investigations depend on the clinical scenario and initial imaging findings.

Immediate Investigations (All Patients with Acute Deficit)

InvestigationPurposeWhat to Look ForPractical Points
Non-contrast CT headExclude hemorrhage; identify early ischemic changesHyperdensity (blood), hypodensity (infarct), mass effect, midline shift, hyperdense vessel signMust be done before thrombolysis; can be completed in less than 5 minutes; normal CT does not exclude ischemic stroke
Fingerstick glucoseExclude hypoglycemia (stroke mimic)Glucose less than 60 mg/dL mimics stroke; greater than 400 mg/dL may indicate diabetic emergencyMust be checked before or during thrombolysis decision; only laboratory test required before treatment
ElectrocardiogramIdentify atrial fibrillation; detect concurrent myocardial infarctionAtrial fibrillation, acute ST changes, prior infarct patternStroke and myocardial infarction may co-occur; atrial fibrillation found in 20-25% of strokes
Basic metabolic panelAssess renal function, electrolytesRenal dysfunction (affects contrast use), electrolyte abnormalitiesShould not delay thrombolysis unless renal failure known
Complete blood countIdentify thrombocytopenia, severe anemia, polycythemiaPlatelet count less than 100,000 is relative contraindication to thrombolysisShould not delay treatment unless thrombocytopenia suspected
Coagulation studies (PT/INR, PTT)Assess bleeding risk; detect anticoagulationINR greater than 1.7 is contraindication to thrombolysisShould not delay treatment unless anticoagulation suspected or known
TroponinDetect concurrent myocardial infarction or injuryElevated troponin suggests cardiac source or concurrent acute coronary syndromeStroke can cause troponin elevation; interpret in context

Advanced Neuroimaging

CT-Based Protocols

ModalityIndicationsKey FindingsLimitations
CT angiography (head and neck)All suspected large vessel strokes; thrombectomy evaluationLarge vessel occlusion, carotid stenosis, dissection, aneurysmRequires contrast; radiation exposure
CT perfusionExtended window thrombectomy evaluation (6-24 hours); wake-up strokesCore infarct versus penumbra mismatch; guides intervention beyond traditional windowsRequires specialized software; may overestimate core in some cases

MRI-Based Protocols

SequencePurposeKey Findings
Diffusion-weighted imaging (DWI)Gold standard for acute ischemic stroke detectionRestricted diffusion (bright on DWI, dark on ADC) within minutes of stroke onset
FLAIR (Fluid-attenuated inversion recovery)Detect subacute infarcts; estimate stroke timingDWI-FLAIR mismatch suggests stroke within 4.5 hours (useful for wake-up strokes)
Gradient echo or SWI (susceptibility-weighted imaging)Detect hemorrhage; microbleedsBlooming artifact from blood products; multiple microbleeds suggest amyloid angiopathy
MR angiographyNon-invasive vascular imagingLarge vessel occlusion, stenosis, dissection
MRI with contrastTumor, abscess, inflammation evaluationEnhancement patterns help characterize lesions

CT versus MRI in Acute Stroke

CT is faster and more available, making it the standard for hyperacute stroke. However, MRI with diffusion-weighted imaging is more sensitive for acute ischemia (especially small infarcts and posterior fossa strokes) and can estimate stroke timing. Many centers use a rapid MRI protocol (“code stroke MRI”) that can be completed in 6-10 minutes. The choice depends on institutional capabilities and clinical scenario.

Vascular and Cardiac Investigations

For Suspected Ischemic Stroke or Transient Ischemic Attack

Vascular Imaging

  • CT angiography (head and neck): First-line for large vessel evaluation; identifies occlusion, stenosis, dissection
  • MR angiography: Alternative without radiation; may miss small dissections
  • Carotid ultrasound: Screening for carotid stenosis; operator-dependent
  • Transcranial Doppler: Detects intracranial stenosis; monitors for microemboli
  • Conventional angiography: Gold standard but invasive; reserved for complex cases or intervention

Cardiac Evaluation

  • Telemetry or Holter monitoring: Detect paroxysmal atrial fibrillation (30-day monitoring increases yield)
  • Transthoracic echocardiography: Assess for thrombus, valvular disease, wall motion abnormalities
  • Transesophageal echocardiography: Better for left atrial appendage thrombus, patent foramen ovale, aortic arch atheroma
  • Bubble study: Detect right-to-left shunt (patent foramen ovale)

Targeted Investigations by Suspected Etiology

If Suspecting Intracerebral Hemorrhage

Initial Workup

  • CT head: Confirms diagnosis; determines location and volume
  • CT angiography: “Spot sign” predicts hematoma expansion; may show underlying vascular malformation
  • Coagulation studies: INR, PTT, platelet count for reversal decisions

Further Evaluation

  • MRI with SWI: Detect underlying tumor, cavernoma, microbleeds (suggests amyloid angiopathy or hypertensive disease)
  • Conventional angiography: If vascular malformation suspected (young patient, lobar location)
  • Repeat imaging: At 24 hours to assess for expansion

If Suspecting Subarachnoid Hemorrhage

Diagnostic Approach

  • Non-contrast CT head: Sensitivity greater than 95% within 6 hours; decreases over time
  • Lumbar puncture: If CT negative and clinical suspicion remains; look for xanthochromia

Aneurysm Evaluation

  • CT angiography: First-line to identify aneurysm location
  • Conventional angiography: Gold standard; allows treatment planning
  • MR angiography: Alternative if CT angiography contraindicated

If Suspecting Multiple Sclerosis

Imaging

  • MRI brain with and without contrast: Periventricular, juxtacortical, infratentorial lesions; enhancing (acute) versus non-enhancing (chronic)
  • MRI spine: Spinal cord lesions; typically short segment

Cerebrospinal Fluid Analysis

  • Oligoclonal bands: Present in more than 90% of multiple sclerosis; not in matched serum
  • IgG index: Elevated indicates intrathecal immunoglobulin synthesis
  • Cell count and protein: Mild pleocytosis and elevated protein may be present

If Suspecting Encephalitis or Central Nervous System Infection

InvestigationPurposeKey Findings
Lumbar punctureEssential for diagnosis; obtain before antibiotics if possible (but do not delay antibiotics)Pleocytosis (lymphocytic in viral, neutrophilic in bacterial), protein, glucose, opening pressure
Cerebrospinal fluid herpes simplex virus PCRDiagnose herpes simplex encephalitisPositive PCR is diagnostic; may be negative in first 24-72 hours
Cerebrospinal fluid culture and Gram stainIdentify bacterial pathogensPositive in bacterial meningitis; abscess may have sterile cerebrospinal fluid
MRI brain with contrastCharacterize lesions; identify abscess or encephalitis patternTemporal lobe involvement in herpes simplex encephalitis; ring enhancement in abscess
Autoimmune encephalitis panelDiagnose autoimmune causes (anti-NMDA receptor, LGI1, and others)Specific antibodies; may require both serum and cerebrospinal fluid testing

If Suspecting Spinal Cord Pathology

Urgent Imaging

  • MRI entire spine with and without contrast: Gold standard; identifies compression, myelitis, tumor, abscess
  • CT myelography: If MRI contraindicated or unavailable

Additional Studies

  • Lumbar puncture: If myelitis suspected; after ruling out complete block
  • Vitamin B12 and copper levels: If subacute combined degeneration suspected
  • Aquaporin-4 (NMO-IgG) antibody: If neuromyelitis optica suspected

Evaluation for Young Patient with Stroke (Age less than 50)

Extended Workup for Cryptogenic Stroke in Young Patients

When standard stroke workup is unrevealing in a young patient, consider:

  • Hypercoagulable panel: Protein C, protein S, antithrombin III, factor V Leiden, prothrombin gene mutation (test remote from acute event and off anticoagulation)
  • Antiphospholipid antibodies: Lupus anticoagulant, anticardiolipin, anti-beta-2 glycoprotein I (repeat at 12 weeks if positive)
  • Homocysteine level: Elevated levels increase stroke risk
  • Sickle cell screening: In appropriate populations
  • Transesophageal echocardiography with bubble study: Evaluate for patent foramen ovale and atrial septal aneurysm
  • Extended cardiac monitoring: 30-day or implantable loop recorder to detect paroxysmal atrial fibrillation
  • Vasculitis workup: ESR, CRP, ANA, ANCA if clinical suspicion
  • Drug screen: Cocaine, amphetamines

Investigation Priority by Clinical Scenario

Clinical ScenarioImmediate PrioritySecondary Investigations
Acute stroke within thrombolysis windowCT head, glucose, ECGCT angiography, labs (do not delay treatment)
Acute stroke beyond thrombolysis windowCT head, CT angiography (for thrombectomy evaluation)CT or MRI perfusion, MRI, cardiac workup
Suspected subarachnoid hemorrhageCT head, CT angiographyLumbar puncture if CT negative; conventional angiography
Suspected spinal cord compressionEmergent MRI spineCT myelography if MRI unavailable
Subacute progressive deficitMRI brain with contrastLumbar puncture, specialized studies based on findings
Transient ischemic attack (resolved deficit)MRI with DWI, CT angiography, ECGEchocardiography, extended cardiac monitoring, risk stratification

7. Pattern Recognition and Clinical Decision-Making

Practical algorithms and decision pathways for focal neurologic deficits

Step 1: Is This an Emergency?

Clinical ScenarioUrgency LevelImmediate Action
Acute focal deficit within 24 hours of onsetEMERGENTActivate stroke code; CT head immediately; determine last known well time; assess for thrombolysis and thrombectomy eligibility
Thunderclap headache with or without focal signsEMERGENTCT head immediately; if negative, lumbar puncture; CT angiography if subarachnoid hemorrhage confirmed
Bilateral leg weakness with sensory level or bladder dysfunctionEMERGENTEmergent MRI spine; neurosurgical consultation; steroids if cord compression confirmed
Decreasing level of consciousness with focal signsEMERGENTCT head; assess for herniation; neurosurgical consultation; consider intubation for airway protection
Transient deficit now resolved (suspected transient ischemic attack)URGENTSame-day evaluation; MRI with diffusion-weighted imaging, vascular imaging, ECG, telemetry; ABCD2 score for risk stratification
Subacute progressive deficit over days to weeksURGENTMRI brain with contrast within 24-48 hours; targeted workup based on findings
Chronic slowly progressive deficitROUTINEOutpatient MRI; comprehensive neurologic evaluation; appropriate specialist referral

Step 2: The Acute Stroke Algorithm

Time Goals for Acute Stroke (“Time Is Brain”):

  • Door to physician: Less than 10 minutes
  • Door to CT completion: Less than 25 minutes
  • Door to CT interpretation: Less than 45 minutes
  • Door to needle (thrombolysis): Less than 60 minutes (ideally less than 45 minutes)
  • Door to groin puncture (thrombectomy): Less than 90 minutes
Decision PointIf YesIf No
Is glucose less than 60 mg/dL?Give glucose; reassess—deficit may resolve completelyContinue stroke evaluation
Does CT show hemorrhage?No thrombolysis; reverse anticoagulation if applicable; blood pressure control; neurosurgery consultationConsider thrombolysis if within window and no contraindications
Is patient within 4.5 hours of last known well?Evaluate for intravenous thrombolysis (alteplase or tenecteplase)Evaluate for extended window intervention
Are there contraindications to thrombolysis?Proceed directly to thrombectomy evaluation if large vessel occlusion presentAdminister thrombolysis; then evaluate for thrombectomy
Does CT angiography show large vessel occlusion?Evaluate for mechanical thrombectomy (up to 24 hours in selected patients)Medical management; stroke unit admission
Is patient 6-24 hours from last known well with large vessel occlusion?CT or MRI perfusion to assess core versus penumbra mismatch; thrombectomy if favorableMedical management; secondary prevention

Intravenous Thrombolysis: Key Contraindications

Absolute Contraindications

  • Active internal bleeding
  • Recent intracranial or spinal surgery (within 3 months)
  • History of intracranial hemorrhage
  • Known intracranial neoplasm or arteriovenous malformation
  • Suspected aortic dissection
  • Current severe uncontrolled hypertension (greater than 185/110 despite treatment)
  • Active bleeding diathesis
  • Platelet count less than 100,000
  • INR greater than 1.7 or therapeutic anticoagulation

Relative Contraindications (Weigh Risks and Benefits)

  • Minor or rapidly improving symptoms
  • Major surgery within 14 days
  • Recent gastrointestinal or urinary hemorrhage (within 21 days)
  • Recent myocardial infarction (within 3 months)
  • Seizure at onset (if residual deficit is post-ictal)
  • Glucose less than 50 or greater than 400 mg/dL
  • Pregnancy
  • Recent lumbar puncture

Step 3: Pattern-Based Decision Algorithms

Algorithm A: Acute Hemiparesis

Clinical PatternMost Likely DiagnosisAction
Face and arm greater than leg weakness with aphasia or neglectMiddle cerebral artery strokeStroke code; CT; CT angiography; thrombolysis or thrombectomy evaluation
Leg greater than arm weaknessAnterior cerebral artery strokeStroke code; consider bilateral anterior cerebral artery territory if both legs affected
Pure motor hemiparesis (face, arm, leg equal) without cortical signsLacunar stroke (internal capsule or pons)MRI confirms; typically not thrombectomy candidate; excellent prognosis
Hemiparesis with diabetes and glucose less than 60 mg/dLHypoglycemia (stroke mimic)Give glucose; deficit should resolve within minutes; investigate cause
Hemiparesis following witnessed seizure, now improvingTodd’s paralysisObserve; should resolve over hours; brain imaging to exclude structural lesion

Algorithm B: Acute Brainstem Signs

Clinical PatternMost Likely DiagnosisAction
Vertigo, nystagmus, ataxia with abnormal HINTS examinationPosterior circulation stroke (cerebellar or brainstem)MRI with diffusion-weighted imaging (CT often misses posterior fossa); evaluate for basilar occlusion
Crossed deficits (ipsilateral cranial nerve, contralateral body)Brainstem strokeMRI; vascular imaging; monitor for progression
Quadriparesis with preserved consciousnessLocked-in syndrome (ventral pons)Emergent imaging; basilar artery occlusion evaluation; consider thrombectomy
Ipsilateral facial sensory loss, Horner syndrome, ataxia with contralateral body pain and temperature lossLateral medullary (Wallenberg) syndromeMRI; evaluate for vertebral artery dissection

Algorithm C: Acute Visual Disturbance

Clinical PatternMost Likely DiagnosisAction
Monocular vision loss, painless, acuteCentral retinal artery occlusion or ophthalmic artery occlusionOphthalmology emergency; consider intra-arterial thrombolysis; evaluate for carotid disease
Homonymous hemianopiaPosterior cerebral artery stroke or optic radiation lesionMRI; stroke workup if acute
Binocular diplopia with vertigoBrainstem strokeMRI with diffusion-weighted imaging; posterior circulation evaluation
Monocular vision loss with eye painOptic neuritis (multiple sclerosis)MRI orbits and brain with contrast; visual evoked potentials

“What Do I Do If…” Decision Reference

Clinical SituationImmediate ActionNext Step
Patient arrives with acute deficit but last known well time is unknownTreat as “wake-up stroke”; proceed with CT, CT angiography, MRIDWI-FLAIR mismatch or perfusion imaging may identify candidates for intervention
Patient on warfarin with INR 3.5 and acute deficitCT head immediately; if hemorrhage, give 4-factor prothrombin complex concentrate and vitamin KIf ischemic stroke and INR less than 1.7 after reversal, may consider thrombolysis; thrombectomy is option
Patient on direct oral anticoagulant (apixaban, rivaroxaban, dabigatran)CT head; check when last dose takenIf hemorrhage, give specific reversal agent (idarucizumab for dabigatran; andexanet alfa for factor Xa inhibitors); thrombolysis generally contraindicated
Symptoms rapidly improving during evaluationContinue full stroke workup; do not discharge based on improvement aloneMRI with diffusion-weighted imaging may show infarct; high recurrence risk; admit for evaluation
Patient develops worsening headache and declining consciousness after thrombolysisStop thrombolysis immediately; emergent CT head (suspect hemorrhagic conversion)If hemorrhage confirmed, reverse fibrinolysis (cryoprecipitate, tranexamic acid); neurosurgery consultation
Young patient with stroke and no vascular risk factorsStandard acute stroke protocolExtended workup: dissection (CT angiography neck), hypercoagulable panel, echocardiography with bubble study, vasculitis screen, drug screen
Acute paraparesis with sensory levelEmergent MRI entire spine; dexamethasone if cord compression suspectedNeurosurgical decompression within hours if compressive lesion; prognosis depends on speed of intervention
CT shows large territory infarct with midline shiftNeurosurgical consultation for decompressive craniectomy considerationIn selected patients less than 60 years with malignant middle cerebral artery infarction, craniectomy improves survival

Transient Ischemic Attack: Rapid Risk Stratification

ABCD2 Score for Transient Ischemic Attack Risk

Predicts 2-day stroke risk after transient ischemic attack:

  • Age 60 years or older: 1 point
  • Blood pressure 140/90 mmHg or higher at presentation: 1 point
  • Clinical features: Unilateral weakness: 2 points; Speech disturbance without weakness: 1 point
  • Duration: 60 minutes or longer: 2 points; 10-59 minutes: 1 point
  • Diabetes: 1 point

Interpretation: Score 0-3 = lower risk (1% 2-day stroke risk); Score 4-5 = moderate risk (4%); Score 6-7 = high risk (8%). However, all transient ischemic attack patients warrant urgent evaluation regardless of score—imaging findings (diffusion-weighted imaging positive, large vessel stenosis) may indicate higher risk than clinical score suggests.

Troubleshooting: Deficit Not Explained by Initial Workup

Systematic Re-Evaluation Questions

  • Was the correct imaging obtained? (MRI with diffusion-weighted imaging is more sensitive than CT for acute ischemia, especially posterior fossa and small infarcts)
  • Is the localization correct? (Review examination—could this be peripheral rather than central?)
  • Were stroke mimics excluded? (Recheck glucose; consider seizure, migraine, functional disorder)
  • Is this a rare stroke mechanism? (Dissection, vasculitis, hypercoagulable state, endocarditis)
  • Could there be multiple lesions? (Multifocal process such as multiple sclerosis, vasculitis, metastases)
  • Is additional history available? (Collateral information, prior episodes, psychiatric history)
  • Should specialized consultation be obtained? (Neurology, neuro-ophthalmology, neurosurgery)

8. Clinical Pearls and Pitfalls

Practical wisdom — learn from successes and avoid common mistakes

Must-Know Clinical Pearls

Time is brain: In large vessel ischemic stroke, approximately 1.9 million neurons die every minute. Earlier treatment leads to better outcomes—every 15-minute reduction in door-to-needle time is clinically meaningful.
Last known well, not symptom onset: The critical time for treatment eligibility is when the patient was last known to be at their neurologic baseline, not when symptoms were first noticed. For wake-up strokes, this is when they went to sleep.
Always check glucose first: Hypoglycemia is the great stroke mimic and is immediately reversible. A fingerstick glucose should be obtained within minutes of arrival—before or during CT scanning.
CT negative does not mean no stroke: Non-contrast CT is highly sensitive for hemorrhage but may be completely normal in the first hours of ischemic stroke. A normal CT in a patient with clinical stroke should prompt thrombolysis consideration, not reassurance.
Posterior fossa strokes are often missed: CT is particularly insensitive for brainstem and cerebellar strokes. If clinical suspicion is high and CT is negative, obtain MRI with diffusion-weighted imaging. Cerebellar strokes can cause rapid deterioration from edema and herniation.
Transient ischemic attack is a neurologic emergency: Complete resolution of symptoms does not mean low risk. Transient ischemic attack patients have 10-15% 90-day stroke risk, with highest risk in the first 48 hours. Same-day workup and intervention dramatically reduces subsequent stroke.
The HINTS examination outperforms imaging for acute vertigo: In acute vestibular syndrome, a bedside HINTS examination (Head Impulse, Nystagmus pattern, Test of Skew) by a trained examiner is more sensitive than early MRI for detecting stroke. A “central” HINTS pattern mandates further evaluation even with negative imaging.
Young stroke requires extended workup: In patients under 50 without traditional vascular risk factors, pursue dissection, patent foramen ovale, hypercoagulable states, and vasculitis. Up to one-third of young strokes remain cryptogenic even after thorough evaluation.

Critical Pitfalls to Avoid

Waiting for laboratory results to give thrombolysis: The only laboratory test required before thrombolysis is glucose. Do not wait for coagulation studies, complete blood count, or chemistry unless the patient is known to be on anticoagulants or have a bleeding disorder.
Dismissing “improving” symptoms: Symptoms that are improving may still represent significant stroke. Fluctuating deficits are common and may herald complete occlusion. Never discharge a patient based on improvement alone without completing the workup.
Attributing vertigo to “inner ear” without proper examination: Posterior circulation stroke commonly presents with vertigo. The presence of other brainstem signs, central nystagmus patterns, or a positive HINTS examination should prompt urgent evaluation for stroke.
Missing spinal cord compression: Bilateral leg weakness with bladder dysfunction is a surgical emergency. Hours of delay can mean the difference between walking and permanent paraplegia. Obtain emergent MRI and neurosurgical consultation immediately.
Confusing aphasia with confusion: Patients with aphasia may appear confused because they cannot communicate effectively, but their cognition may be intact. Carefully distinguish language deficits from encephalopathy—they have very different localizations and etiologies.
Forgetting to ask about anticoagulation: Patients on anticoagulants have dramatically altered management. Always ask about blood thinners—including aspirin, warfarin, and direct oral anticoagulants. Check the medication list and verify with pharmacy records if possible.
Over-reliance on age to exclude stroke: While stroke is more common in elderly patients, it can occur at any age. Young patients with focal deficits deserve the same urgent evaluation as older patients. Dissection and cardiac sources are particularly common in young stroke.
Diagnosing Bell’s palsy without a complete examination: Isolated lower motor neuron facial weakness (Bell’s palsy) should be a diagnosis of exclusion. Ensure there are no other cranial nerve findings, limb weakness, or brainstem signs that would suggest stroke or other central pathology.

Key Takeaways

  • Acute focal neurologic deficit is a medical emergency until proven otherwise—assume stroke and activate appropriate protocols immediately.
  • Document the “last known well” time precisely; this determines treatment eligibility and is more important than when symptoms were noticed.
  • Check fingerstick glucose immediately—hypoglycemia is a reversible stroke mimic that must be excluded before or during imaging.
  • A normal CT does not exclude ischemic stroke; it excludes hemorrhage and identifies patients who may be candidates for thrombolysis.
  • The pattern of deficits allows anatomical localization before imaging—use this to guide the differential diagnosis and interpret imaging findings.
  • Upper motor neuron signs (spasticity, hyperreflexia, Babinski) indicate central nervous system lesions; lower motor neuron signs (flaccidity, atrophy, fasciculations) indicate peripheral lesions.
  • Crossed findings (ipsilateral cranial nerve deficit with contralateral body deficit) localize to the brainstem.
  • Posterior fossa strokes are commonly missed by CT; have a low threshold for MRI when clinical suspicion is present.
  • Transient ischemic attack requires the same urgent workup as completed stroke—the risk of subsequent stroke is highest in the first 48 hours.
  • Bilateral leg weakness with a sensory level and bladder dysfunction indicates spinal cord pathology and requires emergent MRI and neurosurgical evaluation.
  • Approximately 20-30% of suspected strokes are mimics—hypoglycemia, seizures, migraine, and functional disorders must be considered.
  • Young patients with stroke require extended workup for dissection, hypercoagulable states, patent foramen ovale, and vasculitis.

Quick Reference Algorithm

Systematic Approach to Acute Focal Neurologic Deficit:

  1. Recognize and activate: Any sudden focal deficit should trigger immediate evaluation; activate stroke code if within 24 hours of onset.
  2. Stabilize and assess: ABCs, vital signs, fingerstick glucose, brief neurologic examination (NIHSS if stroke suspected).
  3. Establish timing: Determine “last known well” time precisely; this drives all treatment decisions.
  4. Image immediately: Non-contrast CT to exclude hemorrhage; CT angiography if large vessel occlusion suspected.
  5. Treat aggressively: Thrombolysis within 4.5 hours if eligible; thrombectomy for large vessel occlusion up to 24 hours in selected patients.
  6. Diagnose the mechanism: Vascular imaging, cardiac evaluation, and laboratory studies to determine stroke etiology and guide secondary prevention.
  7. Prevent recurrence: Antiplatelet or anticoagulation therapy, statin, blood pressure management, and risk factor modification based on stroke mechanism.
  8. Rehabilitate: Early mobilization, physical and occupational therapy, speech therapy as indicated; stroke unit care improves outcomes.