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  3. MockCC20 Aortic stenosis

MockCC20 Aortic stenosis

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  • A Offline
    A Offline
    admin
    wrote last edited by admin
    #1

    Stem : A male patient with a history of Aortic stenosis, going for TURP is found to have ejection systolic murmur in preoperative assessment.

    Pathophysiology of aortic stenosis?

    Lipid accumulation in the valve → fibrosis, calcification and stiffening → stenosis

    What are the symptoms of AS?

    In mild AS
    • Asymptomatic
    In moderate cases
    • Angina
    • Syncopal attacks
    • Dyspnoea
    In severe cases
    • Complications: pericarditis & MI
    • Sudden death

    Triad of aortic stenosis?

    • Syncope
    • Anginal pain
    • Dyspnoea

    What are the complications you may expect?

    • LVH
    • VF
    • Ventricular tachycardia (VT)
    • CHF
    • HTN
    • Angina
    • Intra operative sudden death

    Explain syncope in AS?

    Occurs upon exertion when systemic vasodilatation in the presence of a fixed stroke volume and COP causes the arterial systolic blood pressure to decline.

    What intraoperative complications can lead to death?

    • Myocardial infarction
    • Aortic dissection

    What are the anaesthetic considerations?

    Patient will have fixed cardiac output cannot respond to decreased afterload.

    What preoperative investigation to do?

    • Transthoracic echocardiography / Transoesophageal echo
    • Chest x ray
    • ECG

    What is the finding in ECG?
    75ee5eb6-890b-432b-8a3f-ecddb0b4c60c-image.jpeg

    Left ventricular hypertrophy

    Why/Explain your finding in the previous answer?

    S wave in V2 + R wave in V6 = more than 35 small squares.
    T wave inversion and altered ST segment in V2 to V6.
    ECG changes in Aortic stenosis?
    Left axis deviation
    LVH
    Heart block
    ST segment change

    How to calculate HR based on this ECG?

    300 / number of large squares between two R‑R intervals

    What are the advantages and disadvantages of doing AS surgery first VS doing bladder cancer surgery first?

    Doing AS first → reduces risk of complications but increases risk of cancer spread
    Doing cancer surgery first → prevents spread of cancer but increases risk of AS complications and death

    What to do first, AS or bladder cancer surgery?

    Depends on severity of aortic stenosis
    Normal aortic valve surface area: 2.5–3.5 cm²
    If aortic valve surface area < 1 cm² → severe stenosis → do AS surgery first

    What is antibiotics prophylaxis?

    NICE guidelines: No antibiotics except for major procedures or highly infected procedures (e.g., lower and upper GI surgeries)

    What are types of valve in valvular replacement surgery?

    Tissue valve
    Mechanical valve

    What are the differences between them? Mention 3

    -Mechanical
    Made of metal / ceramic
    Warfarin for life
    Higher thrombo‑embolism & bleeding risk
    Excellent durability (>95% at 10 years), can last lifetime
    Slight clicking noise
    -Tissue Valve
    Made of animal / human tissue
    No warfarin needed (only first 3 months)
    Lower thrombo‑embolism & bleeding risk
    Wear out after 10–20 years
    Noiseless

    What is the non‑surgical option for valvular replacement?

    Transcatheter aortic valve replacement
    Right aortic balloon valvuloplasty

    Define aortic sclerosis?

    Valve disease with insignificant gradient across the valve that can progress to stenosis

    State a common complication from the use of thiazide diuretics that might result in postponing the surgery?

    Hypokalaemia and hyponatraemia

    --Note--
    You may be asked about intrinsic and extrinsic pathways
    Intrinsic Pathway
    Trigger: Internal damage to the blood vessel wall (e.g., plaque rupture).
    Initiation: Exposure of negatively charged surfaces such as collagen activates factor XII (Hageman factor).
    Cascade: Sequential activation of factors XII, XI, IX, VIII, and X.
    Extrinsic Pathway
    Trigger: External trauma causing tissue injury.
    Initiation: Tissue factor (TF) released from damaged cells activates factor VII.
    Cascade: Activated factor VII (VIIa) activates factor X.

    Activated factor X (Xa) joins the common pathway

    Common Pathway
    Convergence: Both intrinsic and extrinsic pathways meet at factor X activation.
    Thrombin Formation: Factor Xa + factor V + calcium + phospholipids convert prothrombin → thrombin.
    Fibrin Formation: Thrombin converts fibrinogen → fibrin, forming a mesh that stabilises the clot.

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