Wu J Z, Dong R G, Smutz W P, Rakheja S
National Institute for Occupational Safety & Health (NIOSH), 1095 Willowdale Road, Morgantown, WV 26505, USA.
Med Eng Phys. 2003 Jun;25(5):397-406. doi: 10.1016/s1350-4533(03)00035-3.
Many neural and vascular diseases in hands and fingers have been related to the degenerative responses of local neural and vascular systems in fingers to excessive dynamic loading. Since fingerpads serve as a coupling element between the hand and the objects, the investigation of the dynamic coupling between fingertip and subjects could provide important information for the understanding of the pathomechanics of these neural and vascular diseases. In the present study, the nonlinear and time-dependent force responses of fingertips during dynamic contact have been investigated experimentally and theoretically. Four subjects (2 male and 2 female) with an average age of 24 years participated in the study. The index fingers of right and left hands of each subject were compressed using a flat platen via a micro testing machine. A physical model was proposed to simulate the nonlinear and time-dependent force responses of fingertips during dynamic contact. Using a force relaxation test and a fast loading test at constant loading speed, the material/structural parameters underlying the proposed physical model could be identified. The predicted rate-dependent force/displacement curves and time-histories of force responses of fingertips were compared with those measured in the corresponding experiments. Our results suggest that the force responses of fingertips during the dynamic contacts are nonlinear and time-dependent. The physical model was verified to characterize the nonlinear, rate-dependent force-displacement behaviors, force relaxations, and time-histories of force responses of fingertips during dynamic contact.
手部和手指的许多神经和血管疾病都与手指局部神经和血管系统对过度动态负荷的退行性反应有关。由于指尖作为手与物体之间的耦合元件,研究指尖与物体之间的动态耦合可为理解这些神经和血管疾病的病理力学提供重要信息。在本研究中,对动态接触过程中指尖的非线性和时间依赖性力响应进行了实验和理论研究。四名平均年龄为24岁的受试者(2名男性和2名女性)参与了该研究。通过微型试验机使用平板对每个受试者的右手和左手食指进行压缩。提出了一个物理模型来模拟动态接触过程中指尖的非线性和时间依赖性力响应。通过力松弛试验和恒定加载速度下的快速加载试验,可以确定所提出物理模型的材料/结构参数。将预测的指尖速率依赖性力/位移曲线和力响应的时间历程与相应实验中测量的结果进行了比较。我们的结果表明,动态接触过程中指尖的力响应是非线性和时间依赖性的。该物理模型被验证能够表征动态接触过程中指尖的非线性、速率依赖性力-位移行为、力松弛以及力响应的时间历程。