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首页> 外文期刊>Ciencia Rural >Drawer movement in canine knees undergoing extracapsular stabilization after cranial cruciate ligament rupture in vitro
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Drawer movement in canine knees undergoing extracapsular stabilization after cranial cruciate ligament rupture in vitro

机译:颅骨十字韧带断裂后犬膝经历囊外稳定的抽屉运动

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> face="Verdana, Arial, Helvetica, sans-serif" size="2">The TightRope technique, that has been developed, aims to improve the extra-capsular stabilization with lateral suture through smaller incisions and creating isometric bone tunnels at points that allow the inclusion of a mechanism that overrides the movement of drawer and reduce the occurrence of serious complications. Therefore, the objective was to evaluate the TightRope modified technique in canine cadaver knees in order to provide a simple and cost effective treatment for cranial cruciate ligament rupture (CCrLR). Experimentally; we used 20 pelvic limbs of ten canine corpses from the pathology service at the University of Northern Parana, which weighed between 6.3 and 24kg. To stabilize the cranial cruciate ligament (CCrL), which has been broken intentionally, the TightRope modified technique was adopted by using modified polyamide yarn, pin and a grub screw to provide orthopedic bone fixation. Comparing the displacement values obtained during the movement of the drawer before the break of CCrL and after the surgical procedure was observed that the TightRope modified technique provided significant stability for the majority (12 of 20) of the knees tested (P=0.0033). However, the stability of the technique was lower than the stability of the intact ligament.
机译:> face =“ Verdana,Arial,Helvetica,sans-serif” size =“ 2”>已开发的 TightRope 技术旨在通过侧向改善囊外稳定性通过较小的切口进行缝合,并在各点处创建等距的骨隧道,从而允许采用一种机制,该机制可以克服抽屉的运动并减少严重并发症的发生。因此,目的是评估犬尸体膝盖中的 TightRope 改良技术,以便为颅交叉韧带破裂(CCrLR)提供简单且经济高效的治疗方法。实验上我们使用了来自北巴拉那大学病理学部门的十只犬尸体的20个骨盆肢体,体重在6.3至24kg之间。为了稳定已被故意破坏的颅交叉韧带(CCrL),采用了 TightRope 改良技术,该技术采用了改良的聚酰胺纱线,大头针和平头螺钉来进行整形外科骨固定。比较在CCrL断裂之前和手术过程之后抽屉移动过程中获得的位移值,发现 TightRope 改良技术为大多数测试的膝盖(20个中的12个)提供了显着的稳定性(P = 0.0033)。但是,该技术的稳定性低于完整韧带的稳定性。

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