, CHAPTER LIST
Chapter 1 Structure and Function Neuroanatomy and Research Methods
Chapter 2 Neurophysiology:The Generation, Transmission, and Integration of Neural Signals
Chapter 3 The Chemistry of Behavior:Neurotransmitters and Neuropharmacology
Chapter 4 Development of the Brain
Chapter 5 The Sensorimotor System
Chapter 6 Hearing, Balance, Taste, and Smell
Chapter 7 Vision: From Eye to Brain
Chapter 8 Hormones and Sex
Chapter 9 Homeostasis: Active Regulation of the Internal Environment
Chapter 10 Biological Rhythms and Sleep
Chapter 11 Emotions, Aggression, and Stress
Chapter 12 Psychopathology The Biology of Behavioral Disorders
Chapter 13 Memory and Learning
Chapter 14 Attention and Higher Cognition
Chapter 15 Language and Lateralization
,CHAPTER 1: Structure and Function: Neuroanatomy and Research
Methods
MULTIPLE CHOICE QUESTIONS (Q1–Q15)
Question 1
Topic: Anatomical Planes and Brain Orientations
Bloom's Level: Remember/Understand
When making a horizontal section of the human brain, which anatomical orientation is visible
within the plane of section?
A. Anterior to posterior and medial to lateral dimensions
B. Superior to inferior axes relative to the brainstem
C. Dorsal to ventral axes relative to the spinal cord axis
D. Rostral to caudal axes omitting lateral orientations
Answer: A
Rationale: Horizontal sections are cut parallel to the horizon, displaying the anterior-to-posterior (rostralto-
caudal) and medial-to-lateral axes simultaneously within a single plane.
Question 2
Topic: Autonomic Nervous System Divisions
Bloom's Level: Apply/Analyze
A patient exhibits elevated heart rate, inhibited digestion, and dilated pupils following an acute
fright. Which division of the nervous system is primarily mediating this coordinated physiological
response?
A. Somatic nervous system pathways operating directly via cranial nerves
, B. Parasympathetic nervous system pathways organized via pelvic nerves
C. Sympathetic nervous system via thoracic and lumbar spinal nerves
D. Enteric nervous system circuits operating via local submucosal arcs
Answer: C
Rationale: The sympathetic nervous system originates from the thoracic and lumbar segments of the
spinal cord and mobilizes body energy during stress ("fight-or-flight"), causing tachycardia, pupil dilation,
and gastrointestinal inhibition.
Question 3
Topic: Cortical Planes of Section and Brain Lobes
Bloom's Level: Apply/Analyze
A neurologist reviews a brain scan cut parallel to the forehead, dividing the brain into front and
back portions. What is this plane of section called, and which structure is located rostral to the
occipital lobe in this plane?
A. Sagittal plane of section; parietal lobe
B. Horizontal plane of section; temporal lobe
C. Transverse plane of section; spinal cord
D. Coronal plane of section; parietal lobe
Answer: D
Rationale: A coronal (frontal) section cuts perpendicular to the sagittal plane, dividing the brain into
anterior (front) and posterior (back) portions. The parietal lobe lies rostral (anterior) to the occipital lobe.
Question 4
Topic: Cortical Localization of Primary Somatosensory Cortex
Bloom's Level: Remember/Understand
Primary somatosensory cortex is localized to which specific anatomical structure within the
cerebral cortex?
A. Precentral gyrus located directly in the frontal lobe
B. Postcentral gyrus located within the parietal lobe
C. Superior temporal gyrus located in the temporal lobe
D. Calcarine sulcus located directly in occipital lobe
,Answer: B
Rationale: The postcentral gyrus, located immediately posterior to the central sulcus within the parietal
lobe, contains the primary somatosensory cortex (S1), which processes somatic sensory information.
Question 5
Topic: Basal Ganglia Degeneration in Parkinson's Disease
Bloom's Level: Apply/Analyze
A patient presenting with resting tremors, bradykinesia, and rigidity displays degeneration of
dopaminergic neurons projecting from the substantia nigra to which subcortical motor complex?
A. Basal ganglia motor structures
B. Limbic system nuclear complexes
C. Thalamic sensory relay nuclei
D. Cerebellar deep nuclear groups
Answer: A
Rationale: The basal ganglia (including the caudate nucleus, putamen, and globus pallidus) receive
dopaminergic input from the substantia nigra; degeneration of this nigrostriatal pathway causes the motor
symptoms of Parkinson's disease.
Question 6
Topic: Hypothalamic Subregions and Feeding Control
Bloom's Level: Apply/Analyze
Damage restricted to the lateral hypothalamus in a rodent model results in which specific
behavioral alteration?
A. Aphagia and severe weight loss due to diminished hunger signals
B. Hyperphagia and extreme obesity due to diminished satiety signals
C. Marked suppression of anterior pituitary endocrine hormone secretion D. Inability to relay primary
visual signals to the occipital cortex
Answer: A
Rationale: The lateral hypothalamus functions as a hunger center; lesions to this region cause aphagia
(refusal to eat) and severe weight loss, in contrast to ventramedial hypothalamic lesions which produce
hyperphagia.
,Question 7
Topic: Ventricular System and Cerebrospinal Fluid Flow
Bloom's Level: Remember/Understand
Cerebrospinal fluid (CSF) flows from the fourth ventricle into which space surrounding the brain
before being absorbed into the dural venous sinuses?
A. Epidural space surrounding the dural layer
B. Subdural space located beneath dura mater
C. Subarachnoid space surrounding the brain
D. Central canal passing through spinal cord
Answer: C
Rationale: CSF exits the fourth ventricle through the apertures of Luschka and Magendie into the
subarachnoid space (between the arachnoid mater and pia mater), where it cushions the brain and is
reabsorbed via arachnoid villi into dural venous sinuses.
Question 8
Topic: Neuronal Functional Zones and Signal Integration
Bloom's Level: Remember/Understand
Which structural region of the neuron acts as the integration zone where incoming synaptic
potentials are summed to determine whether an action potential will be initiated?
A. Dendritic spine arborizations
B. Axon hillock initial segment
C. Synaptic axon terminal boutons
D. Unmyelinated nodes of Ranvier
Answer: B
Rationale: The axon hillock and adjacent initial segment have a high density of voltage-gated sodium
channels and integrate postsynaptic potentials (EPSPs and IPSPs) to determine if threshold is reached.
Question 9
Topic: Glial Cells and Myelination in CNS vs. PNS
Bloom's Level: Remember/Understand
,In the central nervous system, which type of glial cell wraps around axons to form myelin
sheaths, and what is its counterpart in the peripheral nervous system?
A. Microglia within CNS; Schwann cells in PNS
B. Astrocytes within CNS; oligodendrocytes in PNS
C. Oligodendrocytes in CNS; Schwann cells in PNS
D. Schwann cells within CNS; astrocytes in PNS
Answer: C
Rationale: Oligodendrocytes form myelin sheaths around multiple axon segments in the CNS, whereas
Schwann cells provide myelination for single axon segments in the PNS.
Question 10
Topic: Microglial Activation in Brain Injury
Bloom's Level: Remember/Understand
Following a focal ischemic stroke, which glial cell type becomes activated, alters its morphology
to act as a phagocyte, and clears cellular debris from the damaged tissue site?
A. Resident microglial glial cells
B. Myelinating oligodendrocyte cells
C. Neurogenic radial glial line cells
D. Ventricular ependymal lining cells
Answer: A
Rationale: Microglia are the resident immune cells of the CNS; upon injury, they transform into active
phagocytes to engulf necrotic debris and cellular pathogens.
Question 11
Topic: Functional Neuroimaging (fMRI)
Bloom's Level: Apply/Analyze
A researcher wants to measure changes in oxygenated blood flow in human participants in real
time while they perform a language task. Which imaging technique is best suited for this study
due to its non-invasive nature and good spatial resolution?
A. Computed Tomography scanning with radiological contrast
B. Functional Magnetic Resonance Imaging technique (fMRI)
, C. Positron Emission Tomography using radioactive glucose
D. Scalp Electroencephalography recording methods (EEG)
Answer: B
Rationale: fMRI detects changes in blood oxygenation level-dependent (BOLD) signals, providing high
spatial resolution of active neural regions without exposing participants to ionizing radiation.
Question 12
Topic: Electrophysiological Recording Methods (EEG)
Bloom's Level: Apply/Analyze
An investigator studying epilepsy needs to record electrical activity of the cerebral cortex with
millisecond temporal resolution to pinpoint the precise onset of seizure spikes. Which method
should be selected?
A. Structural Magnetic Resonance Imaging methods scan
B. Positron Emission Tomography scanning methods
C. Scalp Electroencephalography recording methods
D. Diffusion Tensor Imaging tractography methods
Answer: C
Rationale: EEG directly measures scalp electrical activity generated by synchronized neuronal
populations, providing millisecond-level temporal resolution ideal for detecting rapid electrophysiological
events like seizure spikes.
Question 13
Topic: Causal Inference in Behavioral Neuroscience (Necessity vs. Sufficiency)
Bloom's Level: Evaluate/Synthesize
If electrical stimulation of the amygdala elicits defensive freezing and autonomic arousal in an
awake animal, whereas bilateral lesion of the same structure abolishes fear responses to
conditioned stimuli, what can be inferred about the amygdala's role?
A. Amygdala activity is sufficient without being strictly required for fear expression. B.
Amygdala activity plays a predominantly inhibitory role in emotional processing.
C. Amygdala activity represents an indirect non-causal byproduct of motor activation.
D. Amygdala activity is both necessary and sufficient for mediating fear responses.
,Answer: D
Rationale: Stimulation inducing the behavior demonstrates sufficiency, while lesioning eliminating the
behavior demonstrates necessity, establishing that the amygdala is both necessary and sufficient for fear
processing.
Question 14
Topic: Experimental Design and Correlational Limitations
Bloom's Level: Evaluate/Synthesize
A study finds a strong positive correlation between cortical thickness in the hippocampus and
spatial memory performance in older adults. What limits researchers from establishing that
increased hippocampal thickness directly causes better spatial memory?
A. Correlational observational designs inherently lack longitudinal follow-up measurements across
aging cohorts.
B. Third variables or reverse causality cannot be ruled out without experimental manipulation of the
variable.
C. Cortical thickness metrics cannot be quantified with sufficient accuracy using structural MRI
neuroimaging.
D. Spatial memory tasks primarily evaluate subcortical brain function rather than cerebral cortical
integrity.
Answer: B
Rationale: Correlational designs demonstrate association between variables but cannot establish
causality, as unmeasured confounding variables or bidirectional influences may account for the
relationship.
Question 15
Topic: Optogenetics vs. Electrical Stimulation
Bloom's Level: Apply/Analyze
A neuroscientist uses optogenetics to selectively express channelrhodopsin-2 in
parvalbuminpositive interneurons of the medial prefrontal cortex. What unique advantage does
this technique offer over traditional electrical stimulation?
A. It substantially eliminates the requirement for invasive cranial surgery or implantation of optical fibers.
, B. It visualizes systemic metabolic turnover of neurotransmitter precursors dynamically across the whole
brain.
C. It permanently deletes targeted genetic sequences across all cell types in the central nervous system.
D. It provides cell-type specific temporal control of neuronal firing using specific wavelengths of light.
Answer: D
Rationale: Optogenetics utilizes cell-type specific promoters to direct the expression of light-sensitive ion
channels (such as channelrhodopsin-2), enabling researchers to depolarize or hyperpolarize specific
genetically targeted neuronal subpopulations with high temporal precision using light.
MATCHING SET (Questions 16–20)
Directions: Match each term in Column A (Questions 16–20) with its correct definition or
anatomical function in Column B (Options A–E).
Column B Definitions / Functions:
A. Primary sensory relay station routing ascending sensory pathways to the cerebral cortex
B. Resident immune cells of the CNS that engulf cellular debris and respond to tissue damage
C. Star-shaped glial cells that maintain the blood-brain barrier, regulate extracellular ions, and provide
metabolic support
D. Hindbrain structure critical for motor coordination, posture, balance, and procedural learning
E. Limbic system structure located in the medial temporal lobe essential for declarative memory
consolidation
Question 16
Topic: Matching — Astrocytes Bloom's
Level: Remember/Understand
Column A Term: Astrocytes
Answer: C
Rationale: Astrocytes are star-shaped glial cells that maintain the blood-brain barrier, regulate
extracellular ion concentrations, and provide metabolic support to neurons.
Chapter 1 Structure and Function Neuroanatomy and Research Methods
Chapter 2 Neurophysiology:The Generation, Transmission, and Integration of Neural Signals
Chapter 3 The Chemistry of Behavior:Neurotransmitters and Neuropharmacology
Chapter 4 Development of the Brain
Chapter 5 The Sensorimotor System
Chapter 6 Hearing, Balance, Taste, and Smell
Chapter 7 Vision: From Eye to Brain
Chapter 8 Hormones and Sex
Chapter 9 Homeostasis: Active Regulation of the Internal Environment
Chapter 10 Biological Rhythms and Sleep
Chapter 11 Emotions, Aggression, and Stress
Chapter 12 Psychopathology The Biology of Behavioral Disorders
Chapter 13 Memory and Learning
Chapter 14 Attention and Higher Cognition
Chapter 15 Language and Lateralization
,CHAPTER 1: Structure and Function: Neuroanatomy and Research
Methods
MULTIPLE CHOICE QUESTIONS (Q1–Q15)
Question 1
Topic: Anatomical Planes and Brain Orientations
Bloom's Level: Remember/Understand
When making a horizontal section of the human brain, which anatomical orientation is visible
within the plane of section?
A. Anterior to posterior and medial to lateral dimensions
B. Superior to inferior axes relative to the brainstem
C. Dorsal to ventral axes relative to the spinal cord axis
D. Rostral to caudal axes omitting lateral orientations
Answer: A
Rationale: Horizontal sections are cut parallel to the horizon, displaying the anterior-to-posterior (rostralto-
caudal) and medial-to-lateral axes simultaneously within a single plane.
Question 2
Topic: Autonomic Nervous System Divisions
Bloom's Level: Apply/Analyze
A patient exhibits elevated heart rate, inhibited digestion, and dilated pupils following an acute
fright. Which division of the nervous system is primarily mediating this coordinated physiological
response?
A. Somatic nervous system pathways operating directly via cranial nerves
, B. Parasympathetic nervous system pathways organized via pelvic nerves
C. Sympathetic nervous system via thoracic and lumbar spinal nerves
D. Enteric nervous system circuits operating via local submucosal arcs
Answer: C
Rationale: The sympathetic nervous system originates from the thoracic and lumbar segments of the
spinal cord and mobilizes body energy during stress ("fight-or-flight"), causing tachycardia, pupil dilation,
and gastrointestinal inhibition.
Question 3
Topic: Cortical Planes of Section and Brain Lobes
Bloom's Level: Apply/Analyze
A neurologist reviews a brain scan cut parallel to the forehead, dividing the brain into front and
back portions. What is this plane of section called, and which structure is located rostral to the
occipital lobe in this plane?
A. Sagittal plane of section; parietal lobe
B. Horizontal plane of section; temporal lobe
C. Transverse plane of section; spinal cord
D. Coronal plane of section; parietal lobe
Answer: D
Rationale: A coronal (frontal) section cuts perpendicular to the sagittal plane, dividing the brain into
anterior (front) and posterior (back) portions. The parietal lobe lies rostral (anterior) to the occipital lobe.
Question 4
Topic: Cortical Localization of Primary Somatosensory Cortex
Bloom's Level: Remember/Understand
Primary somatosensory cortex is localized to which specific anatomical structure within the
cerebral cortex?
A. Precentral gyrus located directly in the frontal lobe
B. Postcentral gyrus located within the parietal lobe
C. Superior temporal gyrus located in the temporal lobe
D. Calcarine sulcus located directly in occipital lobe
,Answer: B
Rationale: The postcentral gyrus, located immediately posterior to the central sulcus within the parietal
lobe, contains the primary somatosensory cortex (S1), which processes somatic sensory information.
Question 5
Topic: Basal Ganglia Degeneration in Parkinson's Disease
Bloom's Level: Apply/Analyze
A patient presenting with resting tremors, bradykinesia, and rigidity displays degeneration of
dopaminergic neurons projecting from the substantia nigra to which subcortical motor complex?
A. Basal ganglia motor structures
B. Limbic system nuclear complexes
C. Thalamic sensory relay nuclei
D. Cerebellar deep nuclear groups
Answer: A
Rationale: The basal ganglia (including the caudate nucleus, putamen, and globus pallidus) receive
dopaminergic input from the substantia nigra; degeneration of this nigrostriatal pathway causes the motor
symptoms of Parkinson's disease.
Question 6
Topic: Hypothalamic Subregions and Feeding Control
Bloom's Level: Apply/Analyze
Damage restricted to the lateral hypothalamus in a rodent model results in which specific
behavioral alteration?
A. Aphagia and severe weight loss due to diminished hunger signals
B. Hyperphagia and extreme obesity due to diminished satiety signals
C. Marked suppression of anterior pituitary endocrine hormone secretion D. Inability to relay primary
visual signals to the occipital cortex
Answer: A
Rationale: The lateral hypothalamus functions as a hunger center; lesions to this region cause aphagia
(refusal to eat) and severe weight loss, in contrast to ventramedial hypothalamic lesions which produce
hyperphagia.
,Question 7
Topic: Ventricular System and Cerebrospinal Fluid Flow
Bloom's Level: Remember/Understand
Cerebrospinal fluid (CSF) flows from the fourth ventricle into which space surrounding the brain
before being absorbed into the dural venous sinuses?
A. Epidural space surrounding the dural layer
B. Subdural space located beneath dura mater
C. Subarachnoid space surrounding the brain
D. Central canal passing through spinal cord
Answer: C
Rationale: CSF exits the fourth ventricle through the apertures of Luschka and Magendie into the
subarachnoid space (between the arachnoid mater and pia mater), where it cushions the brain and is
reabsorbed via arachnoid villi into dural venous sinuses.
Question 8
Topic: Neuronal Functional Zones and Signal Integration
Bloom's Level: Remember/Understand
Which structural region of the neuron acts as the integration zone where incoming synaptic
potentials are summed to determine whether an action potential will be initiated?
A. Dendritic spine arborizations
B. Axon hillock initial segment
C. Synaptic axon terminal boutons
D. Unmyelinated nodes of Ranvier
Answer: B
Rationale: The axon hillock and adjacent initial segment have a high density of voltage-gated sodium
channels and integrate postsynaptic potentials (EPSPs and IPSPs) to determine if threshold is reached.
Question 9
Topic: Glial Cells and Myelination in CNS vs. PNS
Bloom's Level: Remember/Understand
,In the central nervous system, which type of glial cell wraps around axons to form myelin
sheaths, and what is its counterpart in the peripheral nervous system?
A. Microglia within CNS; Schwann cells in PNS
B. Astrocytes within CNS; oligodendrocytes in PNS
C. Oligodendrocytes in CNS; Schwann cells in PNS
D. Schwann cells within CNS; astrocytes in PNS
Answer: C
Rationale: Oligodendrocytes form myelin sheaths around multiple axon segments in the CNS, whereas
Schwann cells provide myelination for single axon segments in the PNS.
Question 10
Topic: Microglial Activation in Brain Injury
Bloom's Level: Remember/Understand
Following a focal ischemic stroke, which glial cell type becomes activated, alters its morphology
to act as a phagocyte, and clears cellular debris from the damaged tissue site?
A. Resident microglial glial cells
B. Myelinating oligodendrocyte cells
C. Neurogenic radial glial line cells
D. Ventricular ependymal lining cells
Answer: A
Rationale: Microglia are the resident immune cells of the CNS; upon injury, they transform into active
phagocytes to engulf necrotic debris and cellular pathogens.
Question 11
Topic: Functional Neuroimaging (fMRI)
Bloom's Level: Apply/Analyze
A researcher wants to measure changes in oxygenated blood flow in human participants in real
time while they perform a language task. Which imaging technique is best suited for this study
due to its non-invasive nature and good spatial resolution?
A. Computed Tomography scanning with radiological contrast
B. Functional Magnetic Resonance Imaging technique (fMRI)
, C. Positron Emission Tomography using radioactive glucose
D. Scalp Electroencephalography recording methods (EEG)
Answer: B
Rationale: fMRI detects changes in blood oxygenation level-dependent (BOLD) signals, providing high
spatial resolution of active neural regions without exposing participants to ionizing radiation.
Question 12
Topic: Electrophysiological Recording Methods (EEG)
Bloom's Level: Apply/Analyze
An investigator studying epilepsy needs to record electrical activity of the cerebral cortex with
millisecond temporal resolution to pinpoint the precise onset of seizure spikes. Which method
should be selected?
A. Structural Magnetic Resonance Imaging methods scan
B. Positron Emission Tomography scanning methods
C. Scalp Electroencephalography recording methods
D. Diffusion Tensor Imaging tractography methods
Answer: C
Rationale: EEG directly measures scalp electrical activity generated by synchronized neuronal
populations, providing millisecond-level temporal resolution ideal for detecting rapid electrophysiological
events like seizure spikes.
Question 13
Topic: Causal Inference in Behavioral Neuroscience (Necessity vs. Sufficiency)
Bloom's Level: Evaluate/Synthesize
If electrical stimulation of the amygdala elicits defensive freezing and autonomic arousal in an
awake animal, whereas bilateral lesion of the same structure abolishes fear responses to
conditioned stimuli, what can be inferred about the amygdala's role?
A. Amygdala activity is sufficient without being strictly required for fear expression. B.
Amygdala activity plays a predominantly inhibitory role in emotional processing.
C. Amygdala activity represents an indirect non-causal byproduct of motor activation.
D. Amygdala activity is both necessary and sufficient for mediating fear responses.
,Answer: D
Rationale: Stimulation inducing the behavior demonstrates sufficiency, while lesioning eliminating the
behavior demonstrates necessity, establishing that the amygdala is both necessary and sufficient for fear
processing.
Question 14
Topic: Experimental Design and Correlational Limitations
Bloom's Level: Evaluate/Synthesize
A study finds a strong positive correlation between cortical thickness in the hippocampus and
spatial memory performance in older adults. What limits researchers from establishing that
increased hippocampal thickness directly causes better spatial memory?
A. Correlational observational designs inherently lack longitudinal follow-up measurements across
aging cohorts.
B. Third variables or reverse causality cannot be ruled out without experimental manipulation of the
variable.
C. Cortical thickness metrics cannot be quantified with sufficient accuracy using structural MRI
neuroimaging.
D. Spatial memory tasks primarily evaluate subcortical brain function rather than cerebral cortical
integrity.
Answer: B
Rationale: Correlational designs demonstrate association between variables but cannot establish
causality, as unmeasured confounding variables or bidirectional influences may account for the
relationship.
Question 15
Topic: Optogenetics vs. Electrical Stimulation
Bloom's Level: Apply/Analyze
A neuroscientist uses optogenetics to selectively express channelrhodopsin-2 in
parvalbuminpositive interneurons of the medial prefrontal cortex. What unique advantage does
this technique offer over traditional electrical stimulation?
A. It substantially eliminates the requirement for invasive cranial surgery or implantation of optical fibers.
, B. It visualizes systemic metabolic turnover of neurotransmitter precursors dynamically across the whole
brain.
C. It permanently deletes targeted genetic sequences across all cell types in the central nervous system.
D. It provides cell-type specific temporal control of neuronal firing using specific wavelengths of light.
Answer: D
Rationale: Optogenetics utilizes cell-type specific promoters to direct the expression of light-sensitive ion
channels (such as channelrhodopsin-2), enabling researchers to depolarize or hyperpolarize specific
genetically targeted neuronal subpopulations with high temporal precision using light.
MATCHING SET (Questions 16–20)
Directions: Match each term in Column A (Questions 16–20) with its correct definition or
anatomical function in Column B (Options A–E).
Column B Definitions / Functions:
A. Primary sensory relay station routing ascending sensory pathways to the cerebral cortex
B. Resident immune cells of the CNS that engulf cellular debris and respond to tissue damage
C. Star-shaped glial cells that maintain the blood-brain barrier, regulate extracellular ions, and provide
metabolic support
D. Hindbrain structure critical for motor coordination, posture, balance, and procedural learning
E. Limbic system structure located in the medial temporal lobe essential for declarative memory
consolidation
Question 16
Topic: Matching — Astrocytes Bloom's
Level: Remember/Understand
Column A Term: Astrocytes
Answer: C
Rationale: Astrocytes are star-shaped glial cells that maintain the blood-brain barrier, regulate
extracellular ion concentrations, and provide metabolic support to neurons.