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PMDC National Licensing Examination Basic Medical Sciences Flashcards
57 question-and-answer cards covering Basic Medical Sciences as it is examined in PMDC National Licensing Examination. 24 of them are printed below, taken from across the deck — no signup, no paywall on the preview.
24 sample cards from the Basic Medical Sciences deck
Sampled from the end of the deck, so these are different cards from the ones shown on the syllabus page.
Differentiate the three types of cartilage by their matrix fibers and a location of each.
Hyaline cartilage (type II collagen; articular surfaces, trachea). Elastic cartilage (elastic fibers; epiglottis, external ear). Fibrocartilage (type I collagen, dense; intervertebral discs, pubic symphysis).
Compare the three types of muscle tissue: skeletal, cardiac, and smooth.
Skeletal: striated, multinucleate, voluntary, peripheral nuclei. Cardiac: striated, branched, single central nucleus, involuntary, has intercalated discs. Smooth: non-striated, single central nucleus, involuntary, spindle-shaped.
Name the cells of bone and their functions.
Osteoblasts (form/secrete osteoid bone matrix), osteocytes (mature cells in lacunae that maintain bone), osteoclasts (multinucleated cells that resorb bone, derived from monocytes), and osteoprogenitor (stem) cells.
What are the three types of capillaries, and where is each found?
Continuous (uninterrupted endothelium; muscle, brain/BBB, lung). Fenestrated (have pores; kidney glomerulus, intestine, endocrine glands). Sinusoidal/discontinuous (large gaps; liver, spleen, bone marrow).
Describe the histological layers (tunics) of the GI tract from lumen outward.
1) Mucosa (epithelium, lamina propria, muscularis mucosae), 2) Submucosa (contains Meissner's plexus), 3) Muscularis externa (inner circular, outer longitudinal, with Auerbach's/myenteric plexus between), 4) Serosa/adventitia.
What histological features distinguish the trachea from the esophagus?
Trachea: pseudostratified ciliated columnar epithelium with goblet cells, C-shaped hyaline cartilage rings, and trachealis (smooth) muscle. Esophagus: non-keratinized stratified squamous epithelium with mucous glands and (in lower third) smooth muscle.
What is the Frank-Starling law of the heart?
The stroke volume of the heart increases in response to an increase in the volume of blood filling the heart (end-diastolic volume/preload). Increased venous return stretches the myocardial fibers, increasing the force of contraction.
Write the formula for cardiac output and define normal resting values.
Cardiac Output (CO) = Heart Rate (HR) x Stroke Volume (SV). Normal: roughly 5 L/min (HR about 70 bpm x SV about 70 mL). Cardiac index = CO / body surface area.
Define the four phases of the cardiac cycle related to ventricular pressure-volume.
1) Isovolumetric contraction (all valves closed, pressure rises), 2) Ventricular ejection (aortic/pulmonary valves open), 3) Isovolumetric relaxation (all valves closed, pressure falls), 4) Ventricular filling (AV valves open).
What ionic events produce the phases of the cardiac ventricular action potential?
Phase 0: rapid Na+ influx (depolarization). Phase 1: transient K+ efflux. Phase 2: plateau (Ca2+ influx balances K+ efflux). Phase 3: K+ efflux (repolarization). Phase 4: resting potential maintained by Na/K ATPase.
Write the equation for mean arterial pressure (MAP) and for systemic vascular resistance.
MAP = Diastolic BP + 1/3(Pulse Pressure), or MAP = CO x SVR. Pulse pressure = Systolic - Diastolic. SVR = (MAP - CVP) / CO.
What is the conduction pathway of the heart's electrical impulse?
SA node (pacemaker) → AV node (delay) → Bundle of His → right and left bundle branches → Purkinje fibers → ventricular myocardium. The SA node has the fastest intrinsic rate (about 60-100/min).
Define tidal volume, residual volume, vital capacity, and functional residual capacity.
Tidal volume (TV): air per normal breath (~500 mL). Residual volume (RV): air left after maximal expiration. Vital capacity = TV + IRV + ERV (max air expelled after max inspiration). Functional residual capacity (FRC) = ERV + RV.
State the alveolar gas equation and its purpose.
PAO2 = FiO2 x (Patm - PH2O) - (PaCO2 / R), where R is the respiratory quotient (~0.8). It calculates alveolar oxygen partial pressure and is used to compute the A-a gradient.
Describe the oxygen-hemoglobin dissociation curve and factors causing a rightward shift.
It is sigmoid-shaped. A rightward shift (decreased O2 affinity, easier unloading) is caused by increased CO2, increased H+ (lower pH, Bohr effect), increased temperature, and increased 2,3-BPG. Mnemonic: 'CADET face Right' (CO2, Acid, 2,3-DPG, Exercise, Temperature).
What is the renal clearance formula, and why is inulin used to measure GFR?
Clearance = (Urine concentration x Urine flow) / Plasma concentration. Inulin is used because it is freely filtered, neither reabsorbed nor secreted, so its clearance equals the glomerular filtration rate (GFR).
Describe the Henderson-Hasselbalch equation and normal blood pH/bicarbonate values.
pH = 6.1 + log([HCO3-] / (0.03 x PaCO2)). Normal arterial pH is 7.35-7.45, bicarbonate (HCO3-) is 22-26 mEq/L, and PaCO2 is 35-45 mmHg.
Classify the four primary acid-base disorders with their primary changes and compensation.
Metabolic acidosis: low HCO3- (compensate with hyperventilation, low PaCO2). Metabolic alkalosis: high HCO3- (compensate with hypoventilation). Respiratory acidosis: high PaCO2 (compensate with renal HCO3- retention). Respiratory alkalosis: low PaCO2 (compensate with renal HCO3- excretion).
Where do aldosterone and ADH act in the nephron, and what are their effects?
Aldosterone acts on the principal cells of the collecting duct/distal tubule, increasing Na+ reabsorption and K+/H+ secretion. ADH (vasopressin) acts on the collecting duct, inserting aquaporin-2 channels to increase water reabsorption.
Outline the renin-angiotensin-aldosterone system (RAAS) pathway.
Low BP/Na+ triggers renin release from the juxtaglomerular cells. Renin converts angiotensinogen to angiotensin I. ACE (in lungs) converts it to angiotensin II, which causes vasoconstriction and stimulates aldosterone release, raising blood pressure and Na+ retention.
Compare the actions of insulin and glucagon on blood glucose.
Insulin (from beta cells) lowers blood glucose by promoting glucose uptake, glycogenesis, and lipogenesis. Glucagon (from alpha cells) raises blood glucose by stimulating glycogenolysis and gluconeogenesis in the liver.
What are the hormones of the anterior pituitary and a target/function of each?
FSH/LH (gonads), ACTH (adrenal cortex/cortisol), TSH (thyroid), Prolactin (milk production), GH (growth/IGF-1). Mnemonic: 'FLAT PiG'. The posterior pituitary stores ADH and oxytocin.
Describe the hormonal control of the menstrual cycle's ovulation.
Rising estrogen from the dominant follicle exerts positive feedback on the anterior pituitary, triggering an LH surge around day 14. This LH surge induces ovulation and converts the follicle into the corpus luteum, which secretes progesterone.
Compare the actions of the thyroid hormones T3/T4 and the effect of calcitonin vs PTH on calcium.
T3/T4 increase basal metabolic rate, heat production, and protein/carbohydrate metabolism. For calcium: PTH (parathyroid) raises serum calcium (bone resorption, renal reabsorption, vitamin D activation), while calcitonin (thyroid C-cells) lowers serum calcium.
What this deck covers
The Basic Medical Sciences deck follows the PMDC National Licensing Examination Basic Medical Sciences syllabus — 6 chapters and 31 topics — so questions land on material that is genuinely examinable rather than trivia around it. That works out to roughly 9.5 cards per chapter.
Answers are written to be recallable, not just readable — averaging about 217 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.
Basic Medical Sciences flashcards FAQ
How many Basic Medical Sciences flashcards are in this PMDC National Licensing Examination deck?
57 cards. This page previews 24 of them, sampled evenly across the deck so you can judge the difficulty before installing anything.
Are these PMDC National Licensing Examination flashcards free?
Yes. The preview here is free to read with no signup, and the full 57-card deck is free inside the Examius app.
What do the Basic Medical Sciences cards cover?
They follow the PMDC National Licensing Examination Basic Medical Sciences syllabus — 6 chapters and 31 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.