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一种新颖、廉价且易于使用的肌腱夹具,用于体外生物力学测试。

A novel, inexpensive and easy to use tendon clamp for in vitro biomechanical testing.

机构信息

Institute of Biomedical Manufacturing and Life Quality, School of Mechanical and Power Engineering, ShangHai JiaoTong University, Shanghai, PR China.

出版信息

Med Eng Phys. 2012 May;34(4):516-20. doi: 10.1016/j.medengphy.2011.11.019. Epub 2011 Dec 19.

Abstract

Frozen clamps can hold tendons and ligaments tightly and transmit high loads, from 4 kN to 13 kN, without slippage, yet they are complex and expensive. The existing non-frozen serrated jaw clamp is simple to fabricate and use, but the maximal tensile force it can sustain is only about 2.5 kN, which is not enough in many biomechanical tests. In this study, a new type of non-frozen clamp, which has lateral block boards and asymmetrical teeth jaws, was designed. The lateral block boards made of titanium alloy were used to prevent the soft tissues from being squeezed out during compressing, while the asymmetrical teeth jaws made of nylon were used to grip and keep holding soft tissues. The capability of this new type of clamp was tested by stretching five cattle tendons to failure on the tensile and compression testing machine, none of them displayed any slippage before rupture, the maximum tension force was 6.87 kN. This non-frozen asymmetrical teeth jaw clamp was designed for gripping tendons in foot and ankle dynamic simulation test, but it can also be applied to other in vitro tests, such as hip and knee dynamic tests.

摘要

冷冻夹具可以紧紧地夹住肌腱和韧带,并传递高达 4 kN 到 13 kN 的高负荷,而且不会滑动,但它们复杂且昂贵。现有的非冷冻锯齿状颌夹制造和使用简单,但它能承受的最大拉力只有大约 2.5 kN,在许多生物力学测试中都不够用。在这项研究中,设计了一种新型的非冷冻夹具,它具有侧向挡块和不对称的齿状颌。由钛合金制成的侧向挡块用于防止在压缩过程中软组织被挤出,而由尼龙制成的不对称齿状颌用于夹持和保持软组织的固定。通过在拉伸和压缩试验机上拉伸五根牛肌腱直至失效来测试这种新型夹具的性能,在断裂之前,它们都没有发生任何滑动,最大张力为 6.87 kN。这种非冷冻不对称齿状颌夹具是为了在足踝动态模拟测试中夹持肌腱而设计的,但它也可以应用于其他体外测试,如髋关节和膝关节动态测试。

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