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首页> 外文期刊>Journal of mechanics in medicine and biology >INTERSEGMENTAL COORDINATION IN LOWER EXTREMITIES AND MULTI-SEGMENTAL SPINE DURING DIFFERENT ACTIVITIES OF DAILY LIVING
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INTERSEGMENTAL COORDINATION IN LOWER EXTREMITIES AND MULTI-SEGMENTAL SPINE DURING DIFFERENT ACTIVITIES OF DAILY LIVING

机译:日常生活活动中下肢和多节段脊柱的体齐协调

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Human movement consists of numerous degrees of freedom (DOF). How the nervous system (NS) computes the appropriate command to coordinate these DOFs to finish specific tasks is still hotly debated. One common way to simplify the redundant DOFs is to coordinate multiple DOFs by combining them into units or synergies. The present study aimed to investigate the kinematic complexity of five activities of daily living (ADLs) and to detect the amount of kinematic synergy during every ADL and the relationship of the motion pattern between these ADLs. Method: Twenty-six able-bodied male individuals performed level walking, stair climbing, trunk bending, ipsilateral pick-up and contralateral pick-up in sequence. The segmental excursion of the thorax, upper lumbar, lower lumbar, pelvis, thigh and shank was calculated. Principal component analysis (PCA) was applied to determine the motion pattern of every ADL. Result: In the sagittal plane, trunk bending, ipsilateral pick-up and contralateral pick-up could be simplified by using one principal component (PC) with more than 95% variance accounted for (VAF). In addition, the motion pattern of every PC was similar among the three ADLs. Moreover, the angles between the vectors representing the first PC of the three ADLs were all less than 10 degrees. Level walking and stair climbing needed at least two PCs to reach 95% VAF. In addition, the motion pattern was different between the two ADLs. Moreover, the angle between the first PC of the two ADLs was around 90 degrees. In the coronal plane, the five ADLs except contralateral pick-up arrived at 90% VAF with two PCs. The motion pattern and the angle between the first PC both demonstrated larger differences among the five ADLs. Conclusion: Two PCs were essential to represent level walking and stair climbing, indicating a complex control strategy used by the NS. Trunk bending, ipsilateral pick-up and contralateral pick-up could be described with one PC in the sagittal plane, showing a strong coupling and simple motion pattern. In addition, the motion pattern varied considerably among these ADLs. The outcomes of this study can help clinicians to select suitable ADLs for the patients with various joint or disc diseases and to conduct corresponding functional test and rehabilitation.
机译:人类运动包括许多自由度(DOF)。神经系统(NS)如何计算适当的命令,以协调这些DOF以完成特定的任务仍然发生了热烈的争论。简化冗余DOF的一种常见方法是通过将它们组合成单位或协同效应来坐标多个DOF。本研究旨在研究日常生活(ADL)的五种活动的运动复杂性,并在每个ADL期间检测运动学协同作用的量和这些ADL之间的运动模式的关系。方法:二十六种能够的男性个人进行水平行走,楼梯攀岩,躯干弯曲,同侧拾取和对侧依次提取。计算胸部,上腰,下腰,腰部,骨盆,大腿和柄部的节段性偏移。应用主成分分析(PCA)来确定每个ADL的运动模式。结果:在矢状平面中,可以通过使用一个主成分(PC)来简化躯干弯曲,同侧拾取和对侧拾取,其中一个主成分(PC)占(VAF)的5多个方差。此外,三个ADL之间的每个PC的运动模式相似。此外,表示三个ADL的第一PC的矢量之间的角度均小于10度。水平行走和楼梯攀登至少需要两台PC达到95%的VAF。另外,两个ADL之间的运动模式不同。此外,两个ADL的第一PC之间的角度约为90度。在冠状平面中,除了对侧拾取外的五个ADL,达到90%的VAF,两台PC。第一PC之间的运动模式和角度均在五个ADL之间显示出更大的差异。结论:两台PC对于代表水平行走和楼梯攀爬至关重要,表明NS使用的复杂控制策略。可以在矢状平面中使用一台PC描述躯干弯曲,同侧拾取和对侧接线,显示出强耦合和简单的运动模式。另外,运动模式在这些ADL之间变化很大。该研究的结果可以帮助临床医生为各种关节或椎间盘疾病的患者选择合适的ADL,并进行相应的功能测试和康复。

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