Haut Donahue Tammy L, Hull M L, Rashid Mark M, Jacobs Christopher R
Department of Mechanical Engineering, Michigan Technological University, 1400 Townsend Dr, Houghton, MI 49931, USA.
J Orthop Res. 2004 Jul;22(4):807-14. doi: 10.1016/j.orthres.2003.12.010.
In an effort to prevent degeneration of articular cartilage associated with meniscectomies, both meniscal allografts and synthetic replacements have been studied. A number of biomechanical criteria may be important for a meniscal replacement to restore normal tibiofemoral contact pressure in the knee joint and hence be clinically successful. One of these criteria is geometric similarity. The objectives of the current study were to: determine the sensitivity of the contact variables of the tibial plateau to the transverse depth and width of both the lateral and medial menisci; determine the sensitivity of the contact variables of the tibial plateau to the cross-sectional width and height of the lateral and medial menisci; and determine the tolerances on each of the four parameters for both menisci. To satisfy these objectives, a previously developed finite element model of the tibiofemoral joint was used to compute the contact pressure distribution on the tibial plateau. The effect of the above-mentioned geometric parameters on the contact behavior was studied by perturbing the finite element model. Results showed that the contact variables are similarly sensitive to both the transverse and cross-sectional parameters of the menisci. Additionally the medial meniscal parameters have a greater effect on the contact variables than do the lateral meniscal parameters. Finally, less than a 0.5 mm change in the medial meniscal height and greater than a 1 mm change in the lateral meniscal height could be tolerated before the relative difference in the contact variables from those for the original geometry exceeded 10%. Thus in the design or selection of meniscal replacements, each of the four parameters should be measured when sizing a replacement tissue. Also tighter tolerances should be placed on the medial meniscal parameters compared to the lateral meniscal parameters.
为了防止与半月板切除术相关的关节软骨退变,人们对半月板同种异体移植和合成替代品都进行了研究。对于半月板置换物来说,一些生物力学标准对于恢复膝关节正常的胫股接触压力从而在临床上取得成功可能很重要。其中一个标准是几何相似性。本研究的目的是:确定胫骨平台接触变量对内外侧半月板横向深度和宽度的敏感性;确定胫骨平台接触变量对内外侧半月板横截面宽度和高度的敏感性;确定两个半月板这四个参数各自的公差。为了实现这些目标,使用先前开发的胫股关节有限元模型来计算胫骨平台上的接触压力分布。通过扰动有限元模型研究上述几何参数对接触行为的影响。结果表明,接触变量对半月板的横向和横截面参数同样敏感。此外,内侧半月板参数对接触变量的影响比外侧半月板参数更大。最后,在内侧半月板高度变化小于0.5毫米且外侧半月板高度变化大于1毫米之前,接触变量与原始几何形状相比的相对差异超过10%是可以容忍的。因此,在设计或选择半月板置换物时,在确定置换组织大小时应测量这四个参数中的每一个。而且与外侧半月板参数相比,内侧半月板参数应设置更严格的公差。