• Wrong document? Swap it for free
  • Written by students who passed
  • Immediately available after payment
  • Read online or as PDF
Sell
Where do you study
Your language
Document preview thumbnail
Preview 4 out of 41 pages
Exam (elaborations)

Psio 305 Revision Exam 2025/2026 Questions With Answers Graded A+

Document preview thumbnail
Preview 4 out of 41 pages

PSIO 305 REVISION EXAM 2025/2026 QUESTIONS WITH ANSWERS GRADED A+

Content preview

PSIO 305 REVISION EXAM 2025/2026 QUESTIONS WITH
ANSWERS GRADED A+
✔✔Hypocortisolism as a risk factor for PTSD - ✔✔-low cortisol level before or shortly
after the traumatic event is predictive of subsequent PTSD

-high levels of cortisol associated with low incidence of PTSD

-high doses of corticosterone reduces subsequent PTSD in animal models

✔✔Genetic influences on PTSD - ✔✔-Monozygotic twins have significantly higher
concordance for PTSD than dizygotic twins

-estimated 30% heritability

-genes associated with HPA axis are associated with PTSD

✔✔Epigenetic influences on PTSD - ✔✔-previous experience (childhood trauma, or
repeated trauma) may alter the genome epigenetically, conferring PTSD susceptibility

✔✔Activation of beta2 receptors on blood vessels in muscle - ✔✔-causes slow and mild
vasodilation

✔✔Dexamethasone suppression test (DST) - ✔✔Used to assess adrenal gland function
by measuring how cortisol levels change in response to an injection of dexamethasone

dexamethasone -> provides negative feedback to pituitary gland to suppress secretion
of ACTH

✔✔PTSD response to DST - ✔✔-increased suppression of cortisol compared to healthy
individuals

✔✔31 segments of the spinal cord - ✔✔1. cervical: 8

2. thoracic: 12

3. Lumbar: 5

4. Sacral: 5

5. Coccygeal: 1

-each segment has a pair of nerves

,✔✔Dorsal and Ventral roots of the spinal cord - ✔✔Dorsal root -> carry afferent sensory
information

Dorsal ganglia -> contains cell bodies of somatic and visceral afferent neurons

Ventral root -> carry efferent information from the CNS to muscles and glands

Autonomic ganglion -> contains cell bodies of post-ganglionic autonomic neurons

✔✔Two types of nerve tissue - ✔✔Gray matter -> unmyelinated nerve cell bodies
-clusters of cell bodies in the CNS are nuclei
-dendrites
-axon terminals

White matter -> myelinated axons
-axon bundles connecting CNS regions are tracts
-contains very few cell bodies

✔✔Connections for afferent somatic neurons and afferent visceral neurons -
✔✔Connect with interneurons in the dorsal horns

✔✔Contents of ventral and lateral horns of the spinal cord - ✔✔Ventral horns ->
contains cell bodies of efferent neurons

Lateral horns -> contain cell bodies of pre-ganglionic autonomic neurons

✔✔Direction of info in the descending, ascending and propriospinal tracts -
✔✔Ascending tracts -> take sensory info to the brain

Descending tracts -> carry signals from the brain

Propriospinal tracts -> stay in the spinal cord

✔✔Spinal reflexes - ✔✔-Integrated in the spinal cord -> response is initiated without
input from the brain

-stimulus triggers response from sensory cell that carries info to interneuron that
synapses with the spinal cord where the info is directly relayed to effector

✔✔Connections for the different parts of the brain stem: midbrain, pons, medulla
oblongata - ✔✔midbrain -> connects to forebrain

pons -> connects to cerebellum

medulla oblongata -> connects to spinal cord

,✔✔What the reticular formation controls - ✔✔-wakefulness, sleep, muscle tone, pain
modulation

✔✔Cranial nerves and their types - ✔✔1. Olfactory - Sensory
2. Optic - Sensory
3. Oculomotor - motor
4. Trochlear - motor
5. Trigeminal - mixed
6. Abducens - motor
7. Facial - mixed
8. Vestibulocochlear - sensory
9. Glossopharyngeal - mixed
10. Vagus - mixed
11. Spinal Accessory - motor
12. Hypoglossal - motor

✔✔Pathway through which peripheral epinephrine modulates brain function -
✔✔Peripheral epinephrine acts on visceral sensory component of Vagus nerve

Connects to the NTS w

✔✔Types of signals and what they effect through the vagal nerve neuroendocrine
immune interaction - ✔✔Immune signals and endocrine signals travel through Vagal
afferents to the NTS

Affects emotion and autonomic control

✔✔Vagal mediation of gut feeling - ✔✔Vagal afferents differentially modulate innate
anxiety and learned fear

✔✔Functions of the medulla oblongata - ✔✔Contains somatosensory and corticospinal
(pyramids) tracts

Controls involuntary functions such as blood pressure, breathing, swallowing, and
vomiting

✔✔Functions of the Pons - ✔✔Relays info between cerebellum and cerebrum

Coordinates control of breathing together with centers in medulla

✔✔Functions of the midbrain - ✔✔Relays signals for auditory and visual reflexes

Controls eye movement via oculomotor (CN III) and Trochlear (CN IV) nuclei

, ✔✔Location and function of the Reticular Formation - ✔✔Loosely defined network of
highly interconnected nuclei in the brain stem

Functions:
-Somatic motor control
-Cardiovascular control
-Coordinates breathing
-Modulates pain
-Modulates brain state

✔✔Functions of diffuse neuromodulatory systems - ✔✔-Project axons to large areas of
the brain and release neuromodulators that modulate diverse brain functions

-brain stem reticular formation is the main source of diffuse modulatory systems

✔✔Neuromodulators vs Classic neurotransmitters - ✔✔Neuromodulators are special
neurotransmitters that are not removed from synaptic cleft quickly and can diffuse a
long distance to influence more than one neuron for a sustained period of time

Classic -> undergo rapid reuptake or breakdown and therefore act locally at the specific
synapses

✔✔Function, origin, and site of termination for Noradrenergic diffuse modulatory system
- ✔✔Function: attention, arousal, sleep-wake cycle, learning, memory, anxiety, pain and
mood

Origin: Locus coeruleus of the pons

Terminates: Cerebral cortex, thalamus, hypothalamus, olfactory bulb, cerebellum,
midbrain, spinal cord

✔✔Function, origin, and site of termination for Serotonergic diffuse modulatory systems
- ✔✔Function:
-Lower nuclei -> pain, locomotion
-Upper nuclei -> sleep-wake cycle, mood and emotional behaviors (aggression or
depression)

Origin: Raphe nuclei along brain stem midline

Terminates:
-lower nuclei to spinal cord
-upper nuclei to most of brain

✔✔Function, origin, and site of termination for Dopaminergic diffuse modulatory system
- ✔✔Function: motor control, 'reward' centers linked to addictive behaviors

Document information

Uploaded on
April 10, 2025
Number of pages
41
Written in
2024/2025
Type
Exam (elaborations)
Contains
Questions & answers
$13.49

Wrong document? Swap it for free Within 14 days of purchase and before downloading, you can choose a different document. You can simply spend the amount again.
Written by students who passed
Immediately available after payment
Read online or as PDF

Seller avatar
Reputation scores are based on the amount of documents a seller has sold for a fee and the reviews they have received for those documents. There are three levels: Bronze, Silver and Gold. The better the reputation, the more your can rely on the quality of the sellers work.
EXAMCAFE
3.5
(43)
Sold
294
Followers
11
Items
36191
Last sold
3 days ago



Why students choose Stuvia

Created by fellow students, verified by reviews

Quality you can trust: written by students who passed their tests and reviewed by others who've used these notes.

Didn't get what you expected? Choose another document

No worries! You can instantly pick a different document that better fits what you're looking for.

Pay as you like, start learning right away

No subscription, no commitments. Pay the way you're used to via credit card and download your PDF document instantly.

Student with book image

“Bought, downloaded, and aced it. It really can be that simple.”

Alisha Student

Working on your references?

Create accurate citations in APA, MLA and Harvard with our free citation generator.

Working on your references?

Frequently asked questions