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An Economic Modular and Portable Skin Viscoelasticity Measurement Device for In Situ Longitudinal Studies

机译:经济模块化和便携式的皮肤粘弹性测量设备用于就地纵向研究

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摘要

A indentation-based device to measure tissue mechanical property was designed and built using over-the-counter and 3D-printed parts. The device costs less than 100 USD and is capable of measuring samples of various geometry because of its modular design. The device is light-weight, thus portable, for measurements that can be performed at different sites. It was demonstrated that the measurement results obtained using our device are comparable to previous observations. The elastic shear modulus of the human skin was in the range of 2 kPa to 8 kPa, and skin tissues in old mice were stiffer than young mice. Mechanical properties of the skin tissues belonging to the same test subject varied depending on the location of the measurement. In conclusion, because our device is economic, modular, portable, and robust, it is suitable to serve as a standard measurement platform for studying tissue mechanics.
机译:使用非处方和3D打印部件设计并制造了一种基于压痕的组织机械性能测量设备。该设备的成本低于100美元,并且由于采用模块化设计,因此能够测量各种几何形状的样品。该设备重量轻,便于携带,可在不同地点进行测量。结果表明,使用我们的设备获得的测量结果与以前的观察结果相当。人体皮肤的弹性剪切模量在2 kPa至8 kPa的范围内,老年小鼠的皮肤组织比年轻小鼠更硬。属于同一测试对象的皮肤组织的机械特性根据测量位置而变化。总之,由于我们的设备经济,模块化,便携式且坚固耐用,因此适合用作研究组织力学的标准测量平台。

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