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Mechanical properties of the human hand digits: Age-related differences

机译:人类手指的机械特性:与年龄有关的差异

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Background Mechanical properties of human digits may have significant implications for the hand function. We quantified several mechanical characteristics of individual digits in young and older adults. Methods Digit tip friction was measured at several normal force values using a method of induced relative motion between the digit tip and the object surface. A modified quick-release paradigm was used to estimate digit apparent stiffness, damping, and inertial parameters. The subjects grasped a vertical handle instrumented with force/moment sensors using a prismatic grasp with four digits; the handle was fixed to the table. Unexpectedly, one of the sensors yielded leading to a quick displacement of the corresponding digit. A second-order, linear model was used to fit the force/displacement data. Findings Friction of the digit pads was significantly lower in older adults. The apparent stiffness coefficient values were higher while the damping coefficients were lower in older adults leading to lower damping ratio. The damping ratio was above unity for most data in young adults and below unity for older adults. Quick release of a digit led to force changes in other digits of the hand, likely due to inertial hand properties. These phenomena of "mechanical enslaving" were smaller in older adults although no significant difference was found in the inertial parameter in the two groups. Interpretations The decreased friction and damping ratio present challenges for the control of everyday prehensile tasks. They may lead to excessive digit forces and low stability of the grasped object.
机译:背景技术人类手指的机械特性可能对手功能有重要影响。我们量化了年轻人和老年人中单个数字的几个机械特性。方法使用指尖和物体表面之间的相对运动方法,在数个法向力值下测量指尖摩擦。修改后的快速释放范例用于估计数字表观刚度,阻尼和惯性参数。受试者握住一个垂直把手,该把手上装有力/力矩传感器,并使用四位数的棱柱形握把。手柄固定在桌子上。出乎意料的是,其中一个传感器屈服导致相应手指快速移位。使用二阶线性模型拟合力/位移数据。结果在老年人中,指垫的摩擦明显降低。老年人的表观刚度系数值较高,而阻尼系数较低,导致阻尼比较低。对于年轻人而言,大多数数据的阻尼比均大于1,而对于成年人,其阻尼比均小于1。数字的快速释放可能会导致手的其他数字发生力变化,这可能是由于惯性手的特性所致。尽管两组的惯性参数没有显着差异,但这些“机械奴役”现象在老年人中较小。解释减小的摩擦和阻尼比对控制日常预应力任务提出了挑战。它们可能会导致手指压力过大以及所握持物体的稳定性降低。

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