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20-Bio-B6 Analytical Biochemistry · May 2017

Question 2 of 6

Nivaar worked solution (AI-drafted; not reviewed by a licensed engineer)

Notes on this paper

National Exams May 2017 — printed exam code 04-Bio-A6, 3 hours, closed book (approved Casio/Sharp calculator only). Six questions are printed; the first five as they appear in the answer book are marked, each of equal value; most require an essay-format answer. All six are answered here.

This solution follows the paper's true printed subject and reuses that verified analysis, since the underlying physiology does not change with the sitting label.

Reference texts: Guyton & Hall, Textbook of Medical Physiology (13th ed.); Junqueira & Mescher, Basic Histology: Text and Atlas (14th ed.); Robbins & Cotran, Pathologic Basis of Disease (9th ed., for the Q2 autopsy case).

Question 2

Question text not reproduced: the examination questions are © Engineers and Geoscientists BC. Open the official past paper (linked at the top of this page) to read the question, then follow the worked solution below.

Proposed mechanism

The sequence — a minor blunt-trauma impact to the lower limb, followed by a period of immobility (the flight), followed days later by sudden dyspnoea and collapse — is the classic presentation of a deep vein thrombosis (DVT) that embolised to the pulmonary circulation. Virchow’s triad explains why the seemingly trivial impact is causally relevant: (1) endothelial injury to a lower-limb vein from the gentle collision provides a nidus for platelet adhesion and clot initiation; (2) venous stasis during the subsequent flight (prolonged immobile sitting, dependent legs, cabin hypobaric/dehydrating conditions) allows a thrombus to propagate in the calf/popliteal veins without being washed out by the calf-muscle pump; (3) a degree of hypercoagulability (the stress response to trauma and travel raises clotting factors and lowers fibrinolytic activity) further favours clot growth. Over the following days the thrombus enlarges and eventually a fragment (or the whole clot) detaches, travels through the right heart, and lodges in the pulmonary arterial tree as a pulmonary embolus (PE). A large saddle-embolus (straddling the main pulmonary artery bifurcation) or a large single-vessel occlusion acutely obstructs right ventricular outflow, causes acute right heart strain and hypoxaemia, and can produce sudden collapse and death from acute cor pulmonale/electromechanical dissociation — exactly the picture described.

Expected autopsy findings