Department of Medicine and Science in Sports and Exercise, Tohoku University Graduate School of Medicine, Sendai, Japan.
Division of Biomedical Engineering for Health & Welfare, Tohoku University Graduate School of Biomedical Engineering, Sendai, Japan.
PLoS One. 2018 Sep 4;13(9):e0203288. doi: 10.1371/journal.pone.0203288. eCollection 2018.
We determined the effects of wearing an above-knee compression garment (CG) on knee joint position sense. Healthy young adults (n = 24, age = 27.46 ± 4.65 years) performed a passive knee position-matching task on an isokinetic dynamometer with each leg separately. We determined the magnitude of compression by measuring anatomical thigh cross sectional area (CSA) in standing using magnetic resonance imaging. Wearing the CG compressed CSA by 2% (t = 2.91, p = 0.010, Cohen's d = 0.68). Repeated measures ANOVA (rANOVA) with three repetition factors (condition: CG, no CG; leg: right dominant, left non-dominant; and target angles: 30°, 45°, 60°) revealed an effect of angles (p < 0.001), where the matching of knee joint position was more accurate at 60° compared to 30° and 45° (p < 0.001). However, CG did not reduce passive joint position sense errors. In fact, joint position error was less without CG (p = 0.014). In conclusion, while CG does compress the thigh it does not afford the purported benefits for proprioception as measured by a target-matching task in the present study.
我们确定了穿膝上压缩服装(CG)对膝关节位置感的影响。健康的年轻成年人(n=24,年龄=27.46±4.65 岁)分别用等速测力机进行被动膝关节位置匹配任务。我们使用磁共振成像(MRI)在站立时测量解剖大腿横截面积(CSA)来确定压缩的幅度。穿着 CG 会将 CSA 压缩 2%(t=2.91,p=0.010,Cohen's d=0.68)。具有三个重复因素(条件:CG,无 CG;腿:右优势,左非优势;和目标角度:30°、45°、60°)的重复测量方差分析(rANOVA)显示出角度的影响(p<0.001),与 30°和 45°相比,60°时膝关节位置的匹配更准确(p<0.001)。然而,CG 并没有降低被动关节位置感误差。事实上,没有 CG 时关节位置误差更小(p=0.014)。总之,虽然 CG 确实会压缩大腿,但在本研究中,通过目标匹配任务测量的本体感觉并没有提供预期的好处。