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Biomechanics of Osteochondral Impact with Cushioning and Graft Insertion: Cartilage Damage is Correlated with Delivered Energy

机译:骨软骨冲击与缓冲和移植物插入的生物力学:软骨损伤与传递的能量相关。

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摘要

Articular cartilage is susceptible to impact injury. Impact may occur during events ranging from trauma to surgical insertion of an OsteoChondral Graft (OCG) into an OsteoChondral Recipient site (OCR). To evaluate energy density as a mediator of cartilage damage, a specialized drop tower apparatus was used to impact adult bovine samples while measuring contact force, cartilage surface displacement, and OCG advancement. When a single impact was applied to an isolated (non-inserted) OCG, force and surface displacement each rose monotonically and then declined. In each of five sequential impacts of increasing magnitude, applied to insert an OCG into an OCR, force rose rapidly to an initial peak, with minimal OCG advancement, and then to a second prolonged peak, with distinctive oscillations. Energy delivered to cartilage was confirmed to be higher with larger drop height and mass, and found to be lower with an interposed cushion or OCG insertion into an OCR. For both single and multiple impacts, the total energy density delivered to the articular cartilage correlated to damage, quantified as total crack length. The corresponding fracture toughness of the articular cartilage was 12.0mJ/mm2. Thus, the biomechanics of OCG insertion exhibits distinctive features compared to OCG impact without insertion, with energy delivery to the articular cartilage being a factor highly correlated with damage.
机译:关节软骨容易受到撞击伤害。从创伤到将骨软骨移植物(OCG)手术插入骨软骨受体位点(OCR)的事件期间,可能会发生影响。为了评估作为软骨损伤介质的能量密度,在测量接触力,软骨表面位移和OCG进程的同时,使用了专门的落塔装置对成年牛的样品进行冲击。对孤立的(未插入)OCG施加单一冲击时,力和表面位移均单调上升,然后下降。在将OCG插入OCR的过程中,强度增加的五个顺序影响中的每一个,力都迅速上升到初始峰(具有最小的OCG推进),然后上升到第二个延长的峰(具有明显的振荡)。随着下落高度和质量的增加,传递到软骨的能量被确认较高,而插入缓冲垫或将OCG插入OCR则能量较低。对于单次冲击和多次冲击,传递到关节软骨的总能量密度与损伤相关,量化为总裂纹长度。关节软骨的相应断裂韧性为12.0mJ / mm 2 。因此,与没有插入的OCG冲击相比,OCG插入的生物力学表现出独特的特征,能量传递到关节软骨是与损伤高度相关的因素。

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