🇮🇳 PGIMER Entrance · flashcards

PGIMER Entrance Anatomy Flashcards

51 question-and-answer cards covering Anatomy as it is examined in PGIMER Entrance. 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.

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24 sample cards from the Anatomy deck

Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.

  1. List the 12 cranial nerves and their functional category (sensory/motor/both).

    I Olfactory(S), II Optic(S), III Oculomotor(M), IV Trochlear(M), V Trigeminal(B), VI Abducens(M), VII Facial(B), VIII Vestibulocochlear(S), IX Glossopharyngeal(B), X Vagus(B), XI Accessory(M), XII Hypoglossal(M). 'Some Say Marry Money But My Brother Says Big Brains Matter Most.'

  2. Which cranial nerve nuclei lie in the midbrain, pons, and medulla?

    Midbrain: III (oculomotor), IV (trochlear). Pons: V (motor/sensory), VI, VII, VIII. Medulla: IX, X, XI (cranial part), XII. The nucleus ambiguus (IX, X, XI) and solitary nucleus span the medulla.

  3. Which cranial nerve has the longest intracranial course and is the only one to emerge dorsally from the brainstem?

    The trochlear nerve (CN IV). It also supplies the superior oblique muscle and is the only cranial nerve that decussates before emerging.

  4. Describe the formation of the Circle of Willis.

    Anterior: two anterior cerebral arteries joined by the anterior communicating artery. Lateral/posterior: internal carotids give posterior communicating arteries joining the posterior cerebral arteries (from basilar). It links the internal carotid and vertebrobasilar systems.

  5. Which artery supplies the lateral surface of the cerebral hemisphere and which is the most common site of aneurysm?

    The middle cerebral artery (MCA) supplies most of the lateral surface. The most common site of berry (saccular) aneurysm is the anterior communicating artery.

  6. What deficit results from occlusion of the anterior cerebral artery?

    Contralateral motor and sensory loss affecting the lower limb more than the upper limb/face (medial homunculus), and possible urinary incontinence and abulia.

  7. What are the limbs and bends of the internal capsule, and what major tract passes through the posterior limb?

    Anterior limb, genu, posterior limb, retrolenticular and sublenticular parts. The corticospinal tract and sensory thalamocortical fibres run in the posterior limb; corticobulbar fibres in the genu.

  8. Name the components of the basal ganglia and the structures forming the corpus striatum and lentiform nucleus.

    Caudate nucleus, putamen, globus pallidus, plus functionally subthalamic nucleus and substantia nigra. Corpus striatum = caudate + lentiform. Lentiform nucleus = putamen + globus pallidus. Neostriatum = caudate + putamen.

  9. Trace the flow of CSF through the ventricular system.

    Lateral ventricles → interventricular foramina of Monro → third ventricle → cerebral aqueduct of Sylvius → fourth ventricle → foramina of Luschka (lateral, x2) and Magendie (median) → subarachnoid space → absorbed by arachnoid granulations into the superior sagittal sinus.

  10. Describe the course and decussation of the lateral corticospinal tract.

    Originates in the motor cortex, descends through internal capsule and brainstem, ~85-90% of fibres decussate at the pyramidal (motor) decussation in the lower medulla, then descend in the lateral funiculus to synapse on anterior horn cells. Controls contralateral limb movement.

  11. Compare the dorsal column-medial lemniscus pathway and the spinothalamic tract (modality, decussation level).

    DCML: fine touch, vibration, proprioception; first-order neuron ascends ipsilaterally, decussates in the medulla (internal arcuate fibres). Spinothalamic: pain and temperature; decussates within 1-2 segments at the spinal cord level (anterior white commissure).

  12. What are the classifications of epithelium based on the number of layers and cell shape, with one example each?

    Simple squamous (alveoli), simple cuboidal (kidney tubules), simple columnar (gut), pseudostratified (trachea), stratified squamous (skin/esophagus), stratified cuboidal (sweat ducts), transitional/urothelium (bladder).

  13. List the types of connective tissue proper and the main fibre and cell types.

    Loose (areolar) and dense (regular/irregular) connective tissue. Fibres: collagen, elastic, reticular. Cells: fibroblasts (resident), macrophages, mast cells, plasma cells, adipocytes. Ground substance contains GAGs and proteoglycans.

  14. Compare the three muscle types (skeletal, cardiac, smooth) by striations, nuclei, and control.

    Skeletal: striated, multinucleate (peripheral nuclei), voluntary. Cardiac: striated, central single nucleus, intercalated discs, involuntary. Smooth: non-striated, single central nucleus, spindle-shaped, involuntary.

  15. Describe the histological structure of the classic hepatic lobule and the zones of the liver acinus.

    Hexagonal lobule with a central vein and portal triads (hepatic artery, portal vein, bile duct) at corners; hepatocyte plates radiate outward separated by sinusoids. Acinus zones: Zone 1 (periportal, best oxygenated), Zone 2, Zone 3 (centrilobular, most susceptible to ischemia).

  16. Describe the components of a renal corpuscle and the cells of the juxtaglomerular apparatus.

    Renal corpuscle = glomerulus + Bowman's capsule, with visceral (podocytes) and parietal layers. JGA: juxtaglomerular (granular) cells of the afferent arteriole (secrete renin), macula densa of the distal tubule, and extraglomerular mesangial (lacis) cells.

  17. Differentiate the histology of the adrenal cortex zones and their secretions.

    Zona glomerulosa: mineralocorticoids (aldosterone). Zona fasciculata: glucocorticoids (cortisol). Zona reticularis: androgens. Medulla: catecholamines (chromaffin cells). Mnemonic 'GFR - Salt, Sugar, Sex.'

  18. Describe the histology of the thyroid gland and the function of its two cell types.

    Follicles lined by follicular (principal) cells surrounding colloid (thyroglobulin) - produce T3/T4. Parafollicular (C) cells lie between follicles or in the wall and secrete calcitonin.

  19. Compare spermatogenesis and oogenesis in terms of timing and number of gametes produced.

    Spermatogenesis: continuous from puberty, one primary spermatocyte → 4 spermatozoa, ~64 days. Oogenesis: begins in fetal life (arrests in prophase I until puberty, metaphase II until fertilization), one primary oocyte → 1 ovum + polar bodies.

  20. Where does fertilization normally occur and what is the result of the cortical reaction?

    Fertilization occurs in the ampulla of the uterine (fallopian) tube. The cortical reaction (release of cortical granules) causes the zona reaction, hardening the zona pellucida to prevent polyspermy.

  21. Describe the stages from fertilization to implantation with their timing.

    Day 1: zygote. Day 2-3: cleavage (2-16 cell morula). Day 4-5: blastocyst (inner cell mass + trophoblast + blastocele). Day 5-6: hatching from zona. Day 6-7: implantation begins in the posterior superior uterine wall; completed by ~day 9-10.

  22. List the major derivatives of the three germ layers (ectoderm, mesoderm, endoderm).

    Ectoderm: epidermis, nervous system, neural crest derivatives, enamel. Mesoderm: muscle, bone, connective tissue, blood/cardiovascular, kidneys, gonads, dermis. Endoderm: epithelial lining of GI/respiratory tracts, liver, pancreas, thyroid, bladder.

  23. Match each pharyngeal arch to its cranial nerve and a key skeletal derivative.

    1st: CN V (trigeminal) - Meckel's cartilage (malleus, incus, mandible). 2nd: CN VII (facial) - Reichert's cartilage (stapes, styloid, hyoid lesser horn). 3rd: CN IX (glossopharyngeal) - hyoid greater horn. 4th/6th: CN X (vagus, superior and recurrent laryngeal) - laryngeal cartilages.

  24. Define teratogen and give the critical period of greatest susceptibility to major congenital anomalies.

    A teratogen is an agent (drug, infection, radiation, chemical) that causes congenital malformations. The greatest susceptibility is during the embryonic period (weeks 3-8) of organogenesis; weeks 1-2 follow an 'all-or-none' effect, and the fetal period (9+ weeks) mainly affects function/growth.

What this deck covers

The Anatomy deck follows the PGIMER Entrance Anatomy syllabus — 4 chapters and 17 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 12.8 cards per chapter.

Answers are written to be recallable, not just readable — averaging about 231 characters, which is long enough to carry the reasoning and short enough to say out loud.

A deck like this earns its keep on the second and third pass. Read the syllabus first so you know the shape of the subject, then use the cards to find the specific facts that have not stuck.

Anatomy flashcards FAQ

How many Anatomy flashcards are in this PGIMER Entrance deck?

51 cards. This page previews 24 of them, sampled evenly across the deck so you can judge the difficulty before installing anything.

Are these PGIMER Entrance flashcards free?

Yes. The preview here is free to read with no signup, and the full 51-card deck is free inside the Examius app.

What do the Anatomy cards cover?

They follow the PGIMER Entrance Anatomy syllabus — 4 chapters and 17 topics — so the questions track what is actually examinable.

How should I use these flashcards?

Read the syllabus first so you know the shape of the subject, then drill the deck. Examius schedules each card with spaced repetition, so cards you keep missing come back sooner and ones you know drift further apart.