Dürselen Lutz, Hebisch Alexander, Claes Lutz E, Bauer Gerhard
Institute of Orthopaedic Research and Biomechanics, University of Ulm, Helmholtzstrasse 14, 89081 Ulm, Germany.
Clin Biomech (Bristol). 2003 Jul;18(6):505-10. doi: 10.1016/s0268-0033(03)00057-3.
To investigate the gapping behaviour of longitudinal meniscal tears.
The gap size of longitudinal meniscal tears was measured in porcine knee joints under various joint loading conditions.
Many meniscal fixation implants have low pull out forces. However, it is unknown if these forces are less than the forces the implants must resist in vivo. It is also unknown if gapping occurs in longitudinally torn menisci and what joint loads induce gapping.
Longitudinal tears were set in the medial menisci of eight porcine knee joints. To observe the tears an opaque placeholder of the same shape as the original articular surface replaced the medial tibial plateau. The knees were exposed to flexion-extension cycles in a loading and motion simulator under 30 and 200 N axial joint load without external moments, under tibial rotation moments, varus or valgus moments, and combined moments. For each load condition the maximum gap of the tear was registered.
Maximum gapping (1.59 mm, SD 0.47) occurred in the 3 cm tear at 200 N axial joint load under the combination of a valgus and external rotation moment. An internal tibial rotation moment produced the smallest gaps in tears of any length and at any axial joint load.
The maximum gap size found in this study and the previously published pull out stiffnesses of meniscal fixation implants reveal maximum forces on the implant in vivo of only 8.4 N. This explains why meniscal tears fixed with implants of low pull out strength can heal.
The current study shows that moderate joint loads only lead to small gaps of meniscal tears. Clinically, this means that fixation implants of low pull out strength are not in danger of failure in a normal rehabilitation regimen.
研究半月板纵向撕裂的间隙行为。
在不同关节负荷条件下,测量猪膝关节半月板纵向撕裂的间隙大小。
许多半月板固定植入物的拔出力较低。然而,尚不清楚这些力是否小于植入物在体内必须抵抗的力。纵向撕裂的半月板是否会出现间隙以及何种关节负荷会导致间隙也尚不清楚。
在八个猪膝关节的内侧半月板上制造纵向撕裂。为了观察撕裂情况,用与原始关节表面形状相同的不透明占位物替换内侧胫骨平台。在加载和运动模拟器中,使膝关节在无外力矩的30 N和200 N轴向关节负荷下进行屈伸循环,在胫骨旋转力矩、内翻或外翻力矩以及联合力矩作用下进行屈伸循环。对于每种负荷条件,记录撕裂的最大间隙。
在200 N轴向关节负荷下,在 valgus 和外旋力矩联合作用下,3 cm 长的撕裂处出现最大间隙(1.59 mm,标准差 0.47)。在任何长度的撕裂和任何轴向关节负荷下,胫骨内旋力矩产生的间隙最小。
本研究中发现的最大间隙大小以及先前发表的半月板固定植入物的拔出刚度表明,植入物在体内的最大受力仅为8.4 N。这解释了为什么用拔出强度低的植入物固定的半月板撕裂能够愈合。
当前研究表明,适度的关节负荷只会导致半月板撕裂产生小间隙。临床上,这意味着拔出强度低的固定植入物在正常康复方案中不会有失效的风险。