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Anastomosis Around the Knee Joint / Genicular anastomosis : Lower limb anatomy | MBBS 1st year NEXT

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  • čas přidán 29. 09. 2023
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    Anastomosis Around the Knee Joint / Genicular anastomosis : Lower limb anatomy | MBBS 1st year NEXT
    The knee joint is primarily supplied by a complex network of blood vessels that form an anastomosis, ensuring robust and consistent blood flow. This interconnected system primarily comprises four main arteries: the femoral, popliteal, anterior tibial recurrent, and posterior tibial recurrent arteries.
    · Femoral Artery: Originating from the iliac artery, the femoral artery travels down the thigh and gives off genicular branches that contribute to the anastomotic network around the knee.
    · Popliteal Artery: This artery is the continuation of the femoral artery as it passes through the adductor hiatus to enter the popliteal fossa. It provides superior and inferior genicular arteries, which play a vital role in the anastomotic loop.
    · Anterior Tibial Recurrent Artery: Branching off from the anterior tibial artery, it loops back to contribute to the anastomosis at the anterior aspect of the knee.
    · Posterior Tibial Recurrent Artery: A branch of the posterior tibial artery, it takes part in the anastomotic loop at the posterior aspect of the knee.
    Mechanisms and Importance of Anastomosis
    · Redundancy: Anastomosis provides a backup system for blood supply, critical for the functioning and healing of the knee joint. If one artery gets blocked or compromised, the blood can still flow through alternative routes.
    · Flexibility and Movement: The anastomotic network accommodates the wide range of movements that the knee joint undergoes, ensuring consistent blood supply under different physiological conditions.
    · Tissue Health: Consistent blood flow is critical for delivering nutrients and oxygen, as well as for removing waste products from the tissues surrounding the knee.
    · Clinical Implications: Understanding the intricacies of the knee's anastomotic network is crucial in surgical procedures, such as knee replacement or repair of vascular injuries, to prevent ischemia or necrosis.
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