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利用振动关节描记术在特定负荷下检测膝关节声音。

The detection of knee joint sounds at defined loads by means of vibroarthrography.

机构信息

Department of Sports Medicine, Goethe University Frankfurt am Main, Germany.

Department of Sports Medicine, Goethe University Frankfurt am Main, Germany.

出版信息

Clin Biomech (Bristol). 2020 Apr;74:1-7. doi: 10.1016/j.clinbiomech.2020.01.021. Epub 2020 Feb 8.

Abstract

BACKGROUND

Crepitus of the knee may mirror structural and functional changes in the joint during motion. Although the magnitude of these sounds increases with greater cartilage damage, it is unclear whether knee joint sounds also reflect joint loading.

METHODS

Twelve healthy volunteers (mean 26 (SD 3.6) years, 7 females) participated in the randomized-balanced crossover study. Knee joint sounds were recorded (linear sampling, 5512 Hz) by means of two microphones, one placed on the medial tibial plateau and one on the patella. Two activities of daily living (standing up from/sitting down on a bench; descending stairs) and three open kinetic chain knee extension-flexion cycles (passive movement, 10% and 40% loading of the individual one repetition maximum) were performed. Each participant carried out three sets of five repetitions and three sets of 15 steps downwards (stairs), respectively. For data analysis, the mean sound amplitude and the median power frequency for each loading condition were determined. Friedman test and Bonferroni-Holm adjusted post-hoc test were performed to detect differences between conditions.

FINDINGS

We obtained significant differences between joint sound amplitudes for all movements, both measured at the medial tibial plateau (Chi = 20.7, p < 0.001) and at the patella (Chi = 27.6, p < 0.001). We showed a significant difference in the median power frequency of the patella between all movements (Chi = 17.8, p < 0.5).

INTERPRETATION

Overall, the larger the supposed knee joint loading was, the louder was the recorded knee crepitus. Consequently, vibroarthrographically assessed knee joint sounds can differ across knee joint loading conditions.

摘要

背景

膝关节弹响可能反映关节在运动过程中的结构和功能变化。虽然这些声音的幅度随着软骨损伤的增加而增大,但尚不清楚膝关节声音是否也反映关节的负荷情况。

方法

12 名健康志愿者(平均年龄 26(SD 3.6)岁,7 名女性)参加了随机平衡交叉研究。通过两个麦克风(线性采样,5512 Hz)记录膝关节声音,一个放置在内侧胫骨平台上,一个放置在髌骨上。进行了两种日常生活活动(从/坐在长凳上站起来;下楼梯)和三种开链膝关节伸展-屈曲循环(被动运动,个人最大重复次数的 10%和 40%负荷)。每位参与者分别进行三组五次重复和三组 15 次下楼梯(楼梯)。为了进行数据分析,确定了每个加载条件下的平均声幅和中位数功率频率。采用 Friedman 检验和 Bonferroni-Holm 校正后检验来检测条件之间的差异。

结果

我们在所有运动中都获得了膝关节声音幅度的显著差异,包括在胫骨内侧平台(Chi=20.7,p<0.001)和髌骨(Chi=27.6,p<0.001)上测量的声音幅度。我们还显示了髌骨上所有运动之间的中位数功率频率差异具有统计学意义(Chi=17.8,p<0.5)。

解释

总的来说,膝关节负荷越大,记录到的膝关节弹响越大。因此,通过振动关节描记法评估的膝关节声音可能因膝关节负荷条件而异。

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