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通过敲击肌腱来测量力?在人类髌腱中不准确。

Gauging force by tapping tendons? Inaccurately in the human patellar tendon.

机构信息

Human Movement Science, Faculty of Sport Science, Ruhr University Bochum, Bochum, Germany; School of Human Movement and Nutrition Sciences, University of Queensland, Brisbane, Australia.

Human Movement Science, Faculty of Sport Science, Ruhr University Bochum, Bochum, Germany.

出版信息

J Biomech. 2024 Aug;173:112254. doi: 10.1016/j.jbiomech.2024.112254. Epub 2024 Jul 31.

Abstract

Accurately estimating in vivo tendon load non-invasively remains a major challenge in biomechanics, which might be overcome by shear-wave tensiometry. Shear-wave tensiometry measures the speed of mechanically induced tendon shear waves by skin-mounted accelerometers. To gauge the feasibility and accuracy of this novel technique, we obtained patellar tendon shear wave speeds via shear-wave tensiometry during sustained or ramp voluntary contractions of the knee extensors in two experiments (n = 8 in both). In experiment one, participants produced a constant knee extension torque of ∼ 50 Nm at five different knee joint angles (i.e. variable tendon load), which resulted in estimated patellar tendon forces between 1005 ± 6N and 1182 ± 16 N. However, wave speed squared did not correlate with estimated tendon force within participants (r(31) = -0.19, p = 0.278). In experiment two, averaged correlation coefficients between normalized wave speed squared and torque of maximal and submaximal voluntary contractions across participants ranged between r = 0.43 and r = 0.94, while the time-varying correlation between these normalized signals ranged from r = -0.99 to r = 1.00. Further, the mean absolute errors (MAEs) between normalized wave speed squared and normalized torque across participants ranged between 0.03 and 0.54, which were larger than the MAEs between normalized torque and normalized summed EMG amplitude from the superficial quadriceps muscles (0.03-0.54 versus 0.06-0.26, respectively). In conclusion, there was no simple relation between shear wave speed squared and patellar tendon load, which severely limits the feasibility of shear-wave tensiometry for accurately estimating in vivo tendon load at the knee joint.

摘要

准确地无创估计体内肌腱负荷仍然是生物力学中的一个主要挑战,这可能可以通过切变波张力测量法来克服。切变波张力测量法通过皮肤安装的加速度计测量机械诱导的肌腱切变波的速度。为了评估这项新技术的可行性和准确性,我们在两个实验中通过切变波张力测量法在膝关节伸肌持续或斜坡自愿收缩期间获得了髌腱切变波速度(两个实验中 n = 8)。在实验一中,参与者在五个不同的膝关节角度产生恒定的膝关节伸展扭矩(即可变的肌腱负荷),这导致估计的髌腱力在 1005 ± 6 N 和 1182 ± 16 N 之间。然而,波速平方与参与者内的估计肌腱力没有相关性(r(31) = -0.19,p = 0.278)。在实验二中,跨参与者最大和次最大自愿收缩的归一化波速平方和扭矩之间的平均相关系数范围为 r = 0.43 到 r = 0.94,而这些归一化信号之间的时变相关性范围从 r = -0.99 到 r = 1.00。此外,跨参与者的归一化波速平方和归一化扭矩之间的平均绝对误差(MAE)范围为 0.03 到 0.54,这大于从浅层四头肌的归一化扭矩和归一化总和 EMG 幅度之间的 MAE(分别为 0.03-0.54 与 0.06-0.26)。总之,波速平方与髌腱负荷之间没有简单的关系,这严重限制了切变波张力测量法在膝关节中准确估计体内肌腱负荷的可行性。

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