Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing, 100871, China.
Department of Sports Medicine, Peking University Third Hospital, Institute of Sports Medicine of Peking University, Beijing, 100871, China.
BMC Musculoskelet Disord. 2023 Nov 28;24(1):919. doi: 10.1186/s12891-023-07000-w.
Patients with anterior cruciate ligament (ACL) deficiency (ACLD) tend to have altered lower extremity dynamics. Little is known about the changes in dynamic function and activation during jogging in patients with ACLD.
Twenty patients with an injured ACL before ACL reconstruction (ACLD group) and nine healthy male volunteers (control group) were recruited. Each volunteer repeated the jogging experiment five times. Based on the experimental data measured, a musculoskeletal multibody dynamics model was employed to simulate the tibiofemoral joint dynamics during jogging. Eighteen muscles were used for analysis. The obtained dynamics data were used for clustering and curve difference analysis.
The 18 muscles studied were divided into 3 categories. All the quadriceps, the soleus, the gastrocnemius, and the popliteus were classified as label 1. All the hamstrings were classified as label 2, and the sartorius muscles were classified as label 3. Among them, the classification of the short head of the biceps femoris was significantly different between the two groups (P < 0.001). The force curves of all 18 muscles and the between-group differences were studied according to clustered categories. Most muscle force in label 1 was approaching zero in the terminal stance phase, which was significantly lower than that in the control group (P < 0.05). The muscle force in label 2 had areas with significant differences in the stance phase. Muscle force in label 3 was significantly lower than that in the control group in the pre-swing phase.
This study showed that there are various changes of muscle function and activation in patients with ACLD. Through clustering and curve analysis, the joint reactions and changes of different muscle forces in the gait cycle between the ACLD and control groups could be further clarified.
前交叉韧带(ACL)损伤(ACLD)患者下肢动力学往往发生改变。对于 ACLD 患者在慢跑过程中动态功能和激活的变化知之甚少。
招募了 20 名 ACL 重建前 ACL 损伤的患者(ACLD 组)和 9 名健康男性志愿者(对照组)。每位志愿者重复进行了 5 次慢跑实验。基于测量的实验数据,采用肌肉骨骼多体动力学模型来模拟慢跑过程中的胫股关节动力学。共分析了 18 块肌肉。获得的动力学数据用于聚类和曲线差异分析。
研究的 18 块肌肉分为 3 类。所有股四头肌、比目鱼肌、腓肠肌和腘肌均归类为标签 1。所有腘绳肌均归类为标签 2,股薄肌归类为标签 3。其中,两组之间短头股二头肌的分类有显著差异(P<0.001)。根据聚类类别研究了所有 18 块肌肉的力曲线和组间差异。标签 1 中的大部分肌肉力在终末站立阶段接近零,明显低于对照组(P<0.05)。标签 2 中的肌肉力在站立阶段有明显差异的区域。标签 3 中的肌肉力在摆动前期明显低于对照组。
本研究表明 ACLD 患者存在多种肌肉功能和激活变化。通过聚类和曲线分析,可以进一步阐明 ACLD 组和对照组在步态周期中关节反应和不同肌肉力的变化。