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Measurement of the force-displacement response of in vivo human skin under a rich set of deformations.

机译:在丰富的变形下测量人体皮肤的力-位移响应。

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摘要

The non-linear, anisotropic, and viscoelastic properties of human skin vary according to location on the body, age, and individual. The measurement of skin's mechanical properties is important in several fields including medicine, cosmetics, and forensics. In this study, a novel force-sensitive micro-robot applied a rich set of three-dimensional deformations to the skin surface of different areas of the arms of 20 volunteers. The force-displacement response of each area in different directions was measured. All tested areas exhibited a non-linear, viscoelastic, and anisotropic force-displacement response. There was a wide quantitative variation in the stiffness of the response. For the right anterior forearm, the ratio of the maximum probe reaction force to maximum probe displacement ranged from 0.44 N mm(-1) to 1.45 N mm(-1). All volunteers exhibited similar qualitative anisotropic characteristics. For the anterior right forearm, the stiffest force-displacement response was when the probe displaced along the longitudinal axis of the forearm. The response of the anterior left forearm was stiffest in a direction 20 degrees to the longitudinal axis of the forearm. The posterior upper arm was stiffest in a direction 90 degrees to the longitudinal axis of the arm. The averaged posterior upper arm response was less stiff than the averaged anterior forearm response. The maximum probe force at 1.3mm probe displacement was 0.69N for the posterior upper arm and 1.1N for the right anterior forearm. The average energy loss during the loading-unloading cycle ranged from 11.9% to 34.2%. This data will be very useful for studying the non-linear, anisotropic, and viscoelastic behaviour of skin and also for generating material parameters for appropriate constitutive models.
机译:人体皮肤的非线性,各向异性和粘弹性质会根据身体,年龄和个体的位置而变化。皮肤机械性能的测量在包括医学,化妆品和法医在内的多个领域中都很重要。在这项研究中,一种新型的力敏感型微型机器人对20名志愿者手臂不同区域的皮肤表面施加了一组丰富的三维变形。测量了每个区域在不同方向上的力-位移响应。所有测试区域均显示非线性,粘弹性和各向异性力-位移响应。响应的刚度在数量上有很大的差异。对于右前臂,最大探头反作用力与最大探头位移的比值范围为0.44 N mm(-1)至1.45 N mm(-1)。所有志愿者都表现出相似的定性各向异性特征。对于右前臂,最强的力-位移响应是当探针沿前臂的纵轴位移时。左前臂的反应在与前臂纵轴成20度的方向上最硬。上臂后部在与臂的纵轴成90度的方向上最硬。平均后上臂反应不如平均前臂反应僵硬。上臂后部位移为1.3mm时的最大探测力为0.69N,右前臂为1.1N。装卸周期内的平均能量损失为11.9%至34.2%。该数据对于研究皮肤的非线性,各向异性和粘弹性行为以及为适当的本构模型生成材料参数将非常有用。

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