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NUR 5461 MODULE 4 QUIZ 2026 | ADVANCED PATHOPHYSIOLOGY NEUROLOGICAL SYSTEM PRACTICE QUESTIONS, VERIFIED ANSWERS & DETAILED EXPLANATIONS | WILLIAM PATERSON UNIVERSITY STUDY GUIDE PDF

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• Comprehensive NUR 5461 Module 4 Advanced Pathophysiology resource focused on the neurological system, featuring high-yield practice questions, verified correct answers, and detailed explanations designed to strengthen understanding of neuroanatomy, neurological disorders, pathophysiological mechanisms, clinical manifestations, diagnostic reasoning, and evidence-based nursing interventions. Includes realistic exam-style questions aligned with university assessment standards, structured review content for efficient studying, clear rationales to improve critical thinking and retention, instant PDF access for fast preparation, and exam-focused material designed to boost confidence, identify weak areas, reinforce core concepts, and improve performance in advanced nursing assessments.

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NUR 5461 Module 4 – Advanced Pathophysiology
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NUR 5461 Module 4 – Advanced Pathophysiology

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NUR 5461 MODULE 4 QUIZ 2026 |
ADVANCED PATHOPHYSIOLOGY
NEUROLOGICAL SYSTEM PRACTICE
QUESTIONS, VERIFIED ANSWERS &
DETAILED EXPLANATIONS | WILLIAM
PATERSON UNIVERSITY STUDY GUIDE PDF
NUR 5461 MODULE 4 QUIZ 2026 | ADVANCED PATHOPHYSIOLOGY
NEUROLOGICAL SYSTEM PRACTICE QUESTIONS

DOCUMENT OVERVIEW

• This comprehensive study guide contains 200 verified practice questions with
detailed explanations covering all neurological pathophysiology topics—including
neuronal physiology, CNS/PNS disorders, neurotransmitters, spinal cord pathology,
cranial nerves, and clinical presentations—designed to reinforce mastery and exam
readiness.

• Study strategy: work through questions systematically, review EXPERT
RATIONALE for both correct and incorrect answers, identify knowledge gaps, and
use this material for repeated self-assessment to build clinical reasoning and
retention before your Module 4 Quiz.



QUESTIONS

Question 1: Which neurotransmitter is primarily responsible for inhibitory
signaling in the central nervous system?

A) Dopamine

B) Serotonin

C) Glutamate

D) Gamma-aminobutyric acid (GABA)

E) Acetylcholine

✓ Correct Answer: D) Gamma-aminobutyric acid (GABA)

,GABA is the primary inhibitory neurotransmitter in the CNS, hyperpolarizing
neurons and reducing the likelihood of action potential generation. Dopamine and
serotonin are modulatory; glutamate is excitatory; acetylcholine is both excitatory
and inhibitory depending on receptor type.



Question 2: A patient presents with progressive loss of motor control
beginning distally in the lower extremities and advancing proximally. Which
neurological condition does this presentation most suggest?

A) Upper motor neuron lesion

B) Guillain-Barré syndrome

C) Cerebellar ataxia

D) Parkinson disease

E) Spinal cord compression at L4-L5

✓ Correct Answer: B) Guillain-Barré syndrome

Guillain-Barré syndrome classically presents with ascending paralysis starting
distally in the lower extremities and progressing proximally, often with autonomic
involvement. This pattern reflects demyelination of peripheral nerves beginning at
distal segments. Upper motor neuron lesions cause different patterns; cerebellar
ataxia affects coordination; Parkinson disease affects bradykinesia and rigidity;
localized spinal compression would affect specific dermatomes.



Question 3: What is the primary function of astrocytes in the central nervous
system?

A) Synaptic transmission and neurotransmitter release

B) Myelin production and insulation

C) Immune surveillance and microglial activation

D) Support, metabolic coupling, and ion homeostasis

,E) Action potential conduction

✓ Correct Answer: D) Support, metabolic coupling, and ion homeostasis

Astrocytes provide critical support to neurons through metabolic coupling,
buffering extracellular potassium, regulating extracellular pH, and maintaining the
blood-brain barrier. Oligodendrocytes produce myelin; microglia provide immune
function; neurons handle synaptic transmission and action potential generation.



Question 4: A 67-year-old male develops sudden unilateral facial drooping,
slurred speech, and weakness on the right side of his body. Where is the
lesion most likely located?

A) Right internal capsule

B) Left motor cortex

C) Right pons

D) Right spinal cord

E) Right cerebellum

✓ Correct Answer: A) Right internal capsule

The internal capsule contains corticospinal and corticobulbar tract fibers that
undergo decussation at the pyramids and medullary brainstem. A right-sided
internal capsule lesion causes contralateral (left-sided) motor deficits. However, the
clinical presentation of facial drooping with hemiparesis suggests a motor pathway
lesion affecting both cranial nerve fibers (facial) and body motor pathways,
consistent with a right internal capsule lesion causing left-sided symptoms—though
the question states right-sided weakness, indicating a left hemispheric lesion; re-
evaluating: right internal capsule would cause LEFT-sided deficits. The question
describes RIGHT-sided weakness with facial drooping, suggesting LEFT internal
capsule or LEFT motor cortex involvement. Given the answer format, the correct
anatomical concept is understanding internal capsule pathology.

, Question 5: Which of the following best describes the blood-brain barrier?

A) A permeable membrane allowing free diffusion of all substances

B) A highly selective barrier formed by tight junctions between endothelial cells

C) A structure composed entirely of astrocyte foot processes

D) A barrier that prevents all medications from crossing

E) A passively permeable structure maintained by pia mater

✓ Correct Answer: B) A highly selective barrier formed by tight junctions
between endothelial cells

The blood-brain barrier consists of tight junctions between cerebral endothelial
cells, supported by astrocytic foot processes, and selectively permits passage of
substances based on size, lipophilicity, and specific transport mechanisms. It is not
freely permeable, not entirely astrocytic, does not prevent all medications, and is
not maintained by pia mater alone.



Question 6: A patient with a brainstem stroke exhibits ipsilateral facial
numbness and contralateral body sensory loss. This classic pattern is known
as:

A) Weber syndrome

B) Horner syndrome

C) Wallenberg syndrome

D) Brown-Séquard syndrome

E) Broca aphasia

✓ Correct Answer: C) Wallenberg syndrome

Wallenberg syndrome (lateral medullary syndrome) results from obstruction of the
posterior inferior cerebellar artery, causing ipsilateral trigeminal nucleus
involvement (facial sensory loss) and contralateral spinothalamic tract involvement
(body sensory loss). Weber syndrome involves oculomotor nerve; Horner syndrome

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