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首页> 外文期刊>Experimental Mechanics >An alternative mechanism of non-contact anterior cruciate ligament injury during jump-landing: In-vitro simulation
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An alternative mechanism of non-contact anterior cruciate ligament injury during jump-landing: In-vitro simulation

机译:跳跃着陆过程中非接触式前交叉韧带损伤的另一种机制:体外模拟

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摘要

In the United States, an estimated 100,000 anterior cruciate ligament (ACL) injuries occur every year. Despite decades of research, to this date, the mechanism or mechanisms of non-contact ACL injuries are not well understood. This is primarily because trials cannot be conducted on live subjects to understand the injury mechanism, and it is difficult to instrument a live human knee to measure the response of tissues during dynamic activities. In this paper, we present a dynamic knee injury simulator capable of in-vitro modeling of the ACL injury during jump-landing activity. This system was used to simulate jump-landing on cadaveric knees and to successfully test which conditions would result in isolated ACL injury. A restricted flexion of the hip (a hip that flexes minimally or not at all during landing), combined with low quadriceps and hamstring force levels during landing were found to be conducive to ACL injury. Elevated levels of quadriceps force prevented the injury from occurring even under restricted hip flexion conditions. The measured strain rates in the ACL tissue during injury causing activities were over 250%/s.
机译:在美国,每年约有100,000例前交叉韧带(ACL)受伤。尽管进行了数十年的研究,但迄今为止,对非接触式ACL损伤的一种或多种机制尚不十分了解。这主要是因为无法在活着的受试者上进行试验以了解其损伤机理,并且很难用人的活着的膝盖来测量动态活动过程中组织的反应。在本文中,我们提出了一种动态膝关节损伤模拟器,该模拟器能够在跳跃着陆活动期间对ACL损伤进行体外建模。该系统用于模拟尸体膝盖上的跳降,并成功测试了哪些情况会导致孤立的ACL损伤。发现髋关节屈曲受限(着陆时屈曲最小或完全没有屈曲),股四头肌和股四头肌力量偏低均有助于ACL损伤。即使在髋关节屈曲受限的情况下,股四头肌力量的增加也可以防止受伤的发生。在导致损伤的活动期间,ACL组织中测得的应变率超过250%/ s。

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