基于时空运动学数据的健康人运动适应性评价

IF 0.1 Q4 MULTIDISCIPLINARY SCIENCES
V. Lukashevich, V. V. Ponomarev, S. Gubkin, S. M. Mankevich
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引用次数: 0

摘要

现代临床生物力学的一个重要问题是识别复杂的运动标志物,使评估复杂的运动适应反应成为可能,无论年龄、性别和人体测量偏差如何。本研究的目的是开发一种分析人类运动适应反应的方法,该方法基于通过进行不同的运动学测试获得的特定生物力学标记。这项研究涉及90名右侧运动侧领先的志愿者,年龄18.8[16.8/20.8]岁,身高171.8[179.2/164.8]厘米,体重65.3[76.6/58.5]公斤,男女比例为5:4。在研究过程中,所有参与者都使用TESLASUIT远程运动捕捉服进行了生物力学分析,并进行了各种运动学测试。在研究过程中,开发了一种分析人类运动适应反应的新方法。它基于计算活动阶段的特定时间标记、平均角偏差标记和惯性运动学标记。所有标志物都是在每次运动学测试“正面稳定性”、“矢状稳定性”、”空间定向“和”刺激识别“后计算的。我们的调查显示,第一次测试的特定指标(p<0.001)是活动期的时间指标,第二次和第四次测试的指标与平均角偏差参数相关,第三次测试的具体指标可以是大腿、腿和脚的惯性运动学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of motor adaptation of healthy persons according to space-time kinematics data
An important problem of modern clinical biomechanics is to identify complex movement markers that make it possible to evaluate complex motor adaptive reactions regardless of age, gender, and anthropometric deviations. The purpose of the present study was to develop a method for analysis of human motor adaptive reactions based on calculating specific biomechanical markers obtained by performing diverse kinematic tests. The study involved 90 volunteers with a right-leading kinematic side at an age of 18.8 [16.8/20.8] years, with a height of 171.8 [179.2/164.8] cm, a body weight of 65.3 [76.6/58.5] kg, and the ratio of men and women – 5 : 4. During the study, all participants underwent biomechanical analysis using the TESLASUIT remote motion capture suit and performing diverse kinematic tests. In the course of the study, a new method for analyzing human motor adaptive reactions was developed. It is based on calculating specific time markers of the active phase, average angular deviation markers, and inertial kinematic markers. All markers are calculated after each kinematic tests “frontal stability”, “sagittal stability”, “spatial orientation”, and “stimulus identification”. Our survey revealed that specific (p < 0.001) markers of the first test are the time indicators of the active phase, the markers of the second and fourth tests are associated with the average angular deviation parameters, and the specific indicators of the third test can be the inertial kinematics of thighs, legs, and feet.
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DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI
DOKLADY NATSIONALNOI AKADEMII NAUK BELARUSI MULTIDISCIPLINARY SCIENCES-
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