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首页> 外文期刊>The journal of knee surgery >A Preclinical Model to Study the Influence of Graft Force on the Healing of the Anterior Cruciate Ligament Graft
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A Preclinical Model to Study the Influence of Graft Force on the Healing of the Anterior Cruciate Ligament Graft

机译:一种研究移植力对前十字韧带移植物愈合的临床前模型

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The purpose of this study is to establish a small animal anterior cruciate ligament (ACL) reconstruction research model where ACL graft force can be varied to create different graft force patterns with controlled knee motion. Cadaveric (n = =) and in vivo (n = 10) rat knees underwent ACL resection followed by reconstruction using a soft tissue autograft. Five cadaveric and five in vivo knees received a nonisometric, highforce femoral graft tunnel position. Five cadaveric and five in vivo knees received amore isometric, low-force graft tunnel position. ACL graft force (N) was then recorded as the knee was ranged from extension to 90 degrees using a customknee flexion device. Our results demonstrate that distinct ACL graft force patterns were generated for the high-force and low-force femoral graft tunnels. For high-force ACL grafts, ACL graft forces increased as the knee was flexed both in cadaveric and in vivo knees. At 90 degrees of knee flexion, high-force ACL grafts had significantly greater mean graft force when compared with baseline (cadaver: 7.76 +/- 0.54 N at 90 degrees vs. 4.94 +/- 0.14 N at 0 degree, p = 0.004; in vivo: 7.29 +/- 0.42 N at 90 degrees vs. 4.74 +/- 0.13 N at 0 degree, p = 0.007). In contrast, the graft forces for low-force ACL grafts did not change with knee flexion (cadaver: 4.94 +/- 0.11 N at 90 degrees vs. 4.72 +/- 0.14 N at 0 degree, p = 0.41; in vivo: 4.78 +/- 0.26 N at 90 degrees vs. 4.77 +/- 0.06 N at 0 degree, p = 1). Compared with nonisometric ACL grafts, the graft force for grafts placed in an isometric position had significantly lower ACL graft forces at 15, 30, 45, 60, 70, and 90 degrees in both cadaveric and in vivo knees. In conclusion, we have developed a novel ACL reconstruction model that can reproducibly produce two ACL graft force patterns. Thismodel would permit further research on how ACL graft forcesmay affect subsequent graft healing, maturation, and function.
机译:本研究的目的是建立一个小动物前十字韧带(ACL)重建研究模型,其中可以改变ACL移植力以产生具有受控膝关节运动的不同移植力图案。尸体(n = =)和体内(n = 10)大鼠膝盖接受ACL切除,然后使用软组织自体移植重建。五个尸体和五个体内膝盖接收了一个非体积的高度股骨移植隧道位置。五个尸体和五个体内膝盖接到余长等距,低力移植隧道位置。然后将膝关节从延伸到90度使用定制屈曲装置来记录ACL移植力(n)。我们的结果表明,为高力和低速股骨移植隧道产生了不同的ACL移植力图案。对于高力ACL移植物,随着膝关节弯曲在尸体和体内膝盖中,ACL移植力增加。在90度的膝关节屈曲时,与基线(尸体:7.76 +/- 0.54n为0度时,高效的ACL移植力有明显更大的嫁接力(在0度,P = 0.004;体内:7.29 +/- 0.42 n以90度与4.74 +/- 0.13n,0度,p = 0.007)。相比之下,低力ACL移植物的移植力与膝关节屈曲(尸体:4.94 +/- 0.11n,在0度,P = 0.41,P = 0.41;在体内:4.78 +/- 0.26 n以90度与0度,p = 1)。与非测量接枝相比,放置在等距位置的移植物的移植力在尸体和体内膝盖中具有显着降低15,30,45,60,70和90度的ACL移植力。总之,我们开发了一种新型ACL重建模型,可重复生产两种ACL移植力模式。 Thismodel将允许进一​​步研究ACL接枝施力如何影响随后的移植愈合,成熟和功能。

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