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按键开关设计和手指姿势对敲击电脑按键开关过程中手指关节运动学和动力学的影响。

Effects of keyswitch design and finger posture on finger joint kinematics and dynamics during tapping on computer keyswitches.

作者信息

Jindrich Devin L, Balakrishnan Aruna D, Dennerlein Jack T

机构信息

Department of Environmental Health, Harvard School of Public Health, 665 Huntington Avenue, Boston, MA 02115, USA.

出版信息

Clin Biomech (Bristol). 2004 Jul;19(6):600-8. doi: 10.1016/j.clinbiomech.2004.03.003.

Abstract

OBJECTIVE

To examine the effects of postural and keyswitch characteristics on musculoskeletal tissue loading during tapping on computer keyswitches.

DESIGN

We hypothesized that joint torques, stiffness and work parameters differ across keyswitch designs and finger postures typical of those observed during computer keyboard typing. We experimentally measured joint kinematics and calculated joint torques while tapping on different keyswitches in different postures, and analyzed the data using mechanical impedance models.

METHODS

Sixteen human subjects tapped with the index finger on computer keyswitches mounted on a sensor which measured vertical and horizontal forces. Miniature electro-optical goniometers mounted dorsally across each finger joint measured joint kinematics. Joint torques were calculated from endpoint forces and joint kinematics using an inverse dynamics algorithm. A linear spring-damper impedance model was fitted to joint torque, position, and velocity during the contact period of each tap. Subjects tapped in three postures approximating those employed during tapping on three rows of a computer keyboard, on four different keyswitches, resulting in 12 conditions.

RESULTS

More extended finger posture was associated with greater joint torques, energies, and stiffnesses, despite minimal differences in endpoint forces across posture. Greater keyswitch make forces were associated with increased forces, joint torques and joint stiffnesses, however this relationship was not monotonic.

CONCLUSIONS

Joint torques and stiffness parameters differed across keyswitch designs and finger postures. Estimates of joint impedance and work provided a unique perspective into finger dynamics.

RELEVANCE

Determining the causes of work-related musculoskeletal disorders is facilitated by characterizing workplace task biomechanics, which can be linked to specific injury mechanisms.

摘要

目的

研究姿势和按键切换特性对敲击计算机按键时肌肉骨骼组织负荷的影响。

设计

我们假设,在计算机键盘打字过程中观察到的典型按键切换设计和手指姿势下,关节扭矩、刚度和做功参数会有所不同。我们通过实验测量了关节运动学,并在不同姿势下敲击不同按键切换时计算了关节扭矩,还使用机械阻抗模型分析了数据。

方法

16名受试者用食指敲击安装在传感器上的计算机按键切换,该传感器测量垂直和水平力。安装在每个手指关节背侧的微型光电测角仪测量关节运动学。使用逆动力学算法根据端点力和关节运动学计算关节扭矩。在每次敲击的接触期,将线性弹簧-阻尼器阻抗模型拟合到关节扭矩、位置和速度上。受试者以三种近似在计算机键盘三行上敲击时所采用的姿势,在四种不同的按键切换上进行敲击,共产生12种情况。

结果

尽管不同姿势下的端点力差异极小,但手指姿势伸展程度越大,关节扭矩、能量和刚度就越大。按键切换的按下力越大,力、关节扭矩和关节刚度就越大,然而这种关系并非单调。

结论

不同的按键切换设计和手指姿势下,关节扭矩和刚度参数有所不同。关节阻抗和做功的估计为手指动力学提供了独特的视角。

相关性

通过描述工作场所任务的生物力学特性来确定与工作相关的肌肉骨骼疾病的病因,这有助于将其与特定的损伤机制联系起来。

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