首页> 外文期刊>Journal of biomechanical engineering. >In vivo calibration of a femoral fixation device transducer for measuring anterior cruciate ligament graft tension: a study in an ovine model.
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In vivo calibration of a femoral fixation device transducer for measuring anterior cruciate ligament graft tension: a study in an ovine model.

机译:用于测量前交叉韧带移植物张力的股骨固定装置传感器的体内校准:在绵羊模型中的研究。

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摘要

Toward developing a transducer for measuring in vivo tension in anterior cruciate ligament grafts in humans, the objectives of this study were to determine the following: (1) whether the calibration of a previously reported femoral fixation device transducer (FDT) (Ventura et al., 1998) is affected by the presence of the graft when implanted in the tibial metaphysis of an ovine model, (2) whether the FDT remains calibrated at 4 weeks postoperatively, and (3) whether the biological incorporation of the graft occurs prior to a change in the FDT calibration. The FDT was implanted in the hind limb of five sheep using an extra-articular procedure. Both the proximal common digital extensor tendon (i.e., graft) and a Teflon-coated wire were looped around the FDT inside a tunnel in the tibial metaphysis. The FDT was calibrated on three occasions using the loop of wire: once intraoperatively before graft insertion, once intraoperatively after graft insertion, and once postoperatively after the animals had been sacrificed at 4 weeks. Following sacrifice, the load transmitted to the FDT by the graft was also determined. The FDT exhibited linear calibration intraoperatively both before and after graft insertion with an average error relative to the calibration before insertion of the graft of -4.6 percent of full-scale load (150 N) and this average relative error was not significantly different from zero (p = 0.183). After 4 weeks of implantation, the average relative percent error was -5.0 percent and was not significantly different from zero (p = 0.434) indicating that the FDT remained calibrated in the in vivo environment. Because only 15 percent of the graft tension was transmitted to the FDT after 4 weeks, biological incorporation of the graft preceded the loss of calibration. In light of these findings, the FDT offers the capability of measuring the intra-articular ACL graft tension in vivo in animal models and possibly humans before the biological bond develops and also of monitoring the formation and maturation of the biological bond between a graft and bone tunnel.
机译:为了开发一种用于测量人体前交叉韧带移植物中体内张力的换能器,本研究的目的是确定以下方面:(1)是否对先前报道的股骨固定装置换能器(FDT)进行了校准(Ventura等。 (1998年)受到植入绵羊模型的胫骨干physi端时移植物的存在的影响;(2)FDT术后4周是否仍保持校准状态;(3)移植物的生物学掺入是否发生在移植前。 FDT校准发生变化。使用关节外手术将FDT植入五只绵羊的后肢。在胫骨干physi端的隧道内,近端普通指伸肌腱(即移植物)和涂有特氟龙的金属丝都绕在FDT周围。 FDT使用钢丝环在三种情况下进行了校准:一次在植入物之前进行术中操作,一次在植入物之后进行术中操作,一次在术后4周处死动物后进行一次校准。处死后,还确定了移植物传递给FDT的负荷。 FDT在植入物之前和之后均在术中表现出线性校准,相对于植入物之前的校准,平均误差为满量程载荷的-4.6%(150 N),并且该平均相对误差与零无显着差异( p = 0.183)。植入4周后,平均相对误差百分比为-5.0%,与零之间无显着差异(p = 0.434),表明FDT在体内环境中仍保持校准状态。因为在4周后只有15%的移植物张力传递到FDT,所以在失去校准之前先进行了生物移植。根据这些发现,FDT提供了在生物键形成之前在动物模型以及可能的人类中测量体内关节内ACL移植物张力的能力,并且还可以监视移植物与骨骼之间的生物键的形成和成熟度。隧道。

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