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大鼠附着装置及改变膝关节负荷后步态的改变。

Gait alterations in rats following attachment of a device and application of altered knee loading.

机构信息

McClure Musculoskeletal Research Center, Department of Orthopaedics and Rehabilitation, University of Vermont, Burlington, VT 05405, USA.

出版信息

J Biomech. 2010 Dec 1;43(16):3227-31. doi: 10.1016/j.jbiomech.2010.07.036. Epub 2010 Aug 23.

Abstract

Animal models are widely used to study cartilage degeneration. Experimental interventions to alter contact mechanics in articular joints may also affect the loads borne by the leg during gait and consequently affect the overall loading experienced in the joint. In this study, force plate analyses were utilized to measure parameters of gait in the rear legs of adult rats following application of a varus loading device that altered loading in the knee. Adult rats were assigned to Control, Sham, or Loaded groups (n ≥ 4/each). Varus loading devices were surgically attached to rats in the Sham and Loaded groups. In the Loaded group, this device applied a controlled compressive overload to the medial compartment of the knee during periods of engagement. Peak ground reaction forces during walking were recorded for each rear leg of each group. Analyses of variance were used to compare outcomes across groups (Control, Sham, and Loaded), leg (contralateral, experimental) and device status (disengaged, engaged) to determine the effects of surgically attaching the device and applying a compressive overload to the joint with the device. The mean peak vertical force in the experimental leg was reduced to 30% in the Sham group in comparison to the contralateral leg and the Control group, indicating an effect of attaching the device to the leg (p<0.01). No differences were found in ground reaction forces between the Sham and Loaded groups with application of compressive overloads with the device. The significant reduction in vertical force due to the surgical attachment of the varus loading device must be considered and accounted for in future studies.

摘要

动物模型被广泛用于研究软骨退变。改变关节接触力学的实验干预措施也可能影响步态时腿部承受的负荷,从而影响关节的整体负荷。在这项研究中,利用力板分析测量了成年大鼠后腿在施加改变膝关节负荷的内翻负荷装置后的步态参数。将成年大鼠分为对照组、假手术组和负荷组(每组 n≥4)。假手术组和负荷组的大鼠接受了手术,将内翻负荷装置附着在膝关节上。在负荷组中,该装置在装置的接合期向膝关节内侧施加受控的压缩性过载。记录每组每只后腿的行走时最大地面反作用力。方差分析用于比较各组(对照组、假手术组和负荷组)、肢体(对侧、实验)和装置状态(分离、接合)的结果,以确定手术附着装置和用装置施加压缩性过载对关节的影响。与对侧肢体和对照组相比,假手术组实验肢体的平均最大垂直力降低到 30%,表明附着装置对肢体的影响(p<0.01)。当装置施加压缩性过载时,假手术组和负荷组之间的地面反作用力没有差异。由于内翻负荷装置的手术附着而导致的垂直力的显著降低,在未来的研究中必须考虑并加以说明。

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本文引用的文献

1
Force plate for measuring the ground reaction forces in small animal locomotion.
J Biomech. 2006;39(15):2877-81. doi: 10.1016/j.jbiomech.2005.10.006. Epub 2005 Dec 13.
2
Reliability of ground reaction forces measured on a treadmill system in healthy dogs.
Vet J. 2007 Mar;173(2):373-8. doi: 10.1016/j.tvjl.2005.10.004. Epub 2005 Dec 1.
4
Gait analysis in a rat model of osteoarthrosis.
Physiol Behav. 1997 Nov;62(5):951-4. doi: 10.1016/s0031-9384(97)00022-x.
5
Differential fore- and hindpaw force transmission in the walking rat.
Physiol Behav. 1995 Sep;58(3):415-9. doi: 10.1016/0031-9384(95)00072-q.
7
Gait alterations in dogs after transection of the anterior cruciate ligament.
Arthritis Rheum. 1989 Sep;32(9):1142-7. doi: 10.1002/anr.1780320913.

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