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首页> 外文期刊>Journal of Biomechanics >An innovative application of a small-scale motion analysis technique to quantify human skin deformation in vivo.
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An innovative application of a small-scale motion analysis technique to quantify human skin deformation in vivo.

机译:小规模运动分析技术在量化人体皮肤变形中的创新应用。

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This study highlights a new experimental method developed to measure full-field deformation of human skin in vivo. The technique uses a small-scale Qualisys (Sweden) 3D motion capture system and an array of reflective markers placed on the forearm of five healthy volunteers. A load of up to 1.5N was applied to induce skin deformation by pulling a fine wire attached to the centre of the marker configuration. Loading and marker displacements were recorded simultaneously. 3D marker trajectory data was generated for three different load directions. Tests were repeated to investigate accuracy and repeatability. Calibration results indicate the accuracy of the motion capture system with an average residual of 0.05 mm. The procedure was found to be repeatable and accurate for five repeated tests of measured displacements with a maximum variance of 5%. Experimental data are presented to demonstrate robustness and the ability to produce significant outputs. For all five subjects, at 1N load, the mean and standard deviations of skin axial and lateral displacements were found to be 11.7+/-1.6mm and 12.3+/-3.3mm, respectively. The axial displacements ratio (u(90)/u(0)) ranges from 0.63 to 1.45 with mean+/-standard deviation of 0.982+/-0.34 and 0.982+/-0.32 for left and right arms, respectively. The experiments generated useful and accurate data that can be used to study the viscoelastic, hyperelastic or anisotropic behaviour of human skin. The measured displacements will be analysed further to determine the mechanical properties of skin using inverse Finite Element Analysis and Ogden model.
机译:这项研究强调了一种新的实验方法,该方法用于测量体内人皮肤的全视野变形。该技术使用了小型Qualisys(瑞典)3D运动捕捉系统,并在五名健康志愿者的前臂上放置了一系列反射标记。施加高达1.5N的负载,以通过拉动附着在标记配置中心的细线引起皮肤变形。同时记录载荷和标记位移。针对三个不同的载荷方向生成了3D标记轨迹数据。重复测试以调查准确性和可重复性。校准结果表明运动捕捉系统的精度为平均0.05毫米。发现该程序对于测量的位移的五次重复测试是可重复的且准确的,最大方差为5%。提供实验数据以证明其鲁棒性和产生大量产出的能力。对于所有五个对象,在1N负载下,皮肤轴向和横向位移的平均偏差和标准偏差分别为11.7 +/- 1.6mm和12.3 +/- 3.3mm。轴向位移比(u(90)/ u(0))的范围为0.63至1.45,左臂和右臂的平均+/-标准偏差分别为0.982 +/- 0.34和0.982 +/- 0.32。实验产生了有用且准确的数据,可用于研究人类皮肤的粘弹性,超弹性或各向异性行为。将使用反有限元分析和Ogden模型进一步分析测得的位移,以确定皮肤的机械性能。

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