a Design Concepts, Inc. , Madison , WI , USA.
Ergonomics. 2013;56(12):1841-9. doi: 10.1080/00140139.2013.847212. Epub 2013 Oct 17.
This paper describes the development and application of a novel multi-axis hand dynamometer for quantifying 2D grip force magnitude and direction in the flexion-extension plane of the fingers.
A three-beam reconfigurable form dynamometer, containing two active beams for measuring orthogonal forces and moments regardless of point of force application, was designed, fabricated and tested. Maximum grip exertions were evaluated for 16 subjects gripping cylindrical handles varying in diameter.
Mean grip force magnitudes were 231 N (SD = 67.7 N), 236 N (72.9 N), 208 N (72.5 N) and 158 N (45.7 N) for 3.81 cm, 5.08 cm, 6.35 cm and 7.62 cm diameter handles, respectively. Grip force direction rotated clockwise and the centre of pressure moved upward along the handle as handle diameter increased.
Given that the multi-axis dynamometer simultaneously measures planar grip force magnitude and direction, and centre of pressure along the handle, this novel sensor design provides more grip force characteristics than current sensor designs that would improve evaluation of grip characteristics and model-driven calculations of musculoskeletal forces from dynamometer data.
本文描述了一种新型多轴手持测力计的开发和应用,该测力计可用于量化手指屈伸平面内的 2D 握力大小和方向。
设计、制造和测试了一种由三根梁组成的可重构形式测力计,其中两根主动梁可测量正交力和力矩,而不受力作用点的影响。对 16 名受试者用不同直径的圆柱形手柄进行了最大握力测试。
直径为 3.81cm、5.08cm、6.35cm 和 7.62cm 的手柄的平均握力分别为 231N(SD=67.7N)、236N(72.9N)、208N(72.5N)和 158N(45.7N)。随着手柄直径的增加,握力方向顺时针旋转,压力中心沿手柄向上移动。
由于多轴测力计可同时测量平面握力大小和方向以及手柄上的压力中心,因此这种新型传感器设计比目前的传感器设计提供了更多的握力特征,这将有助于评估握力特征,并从测力计数据中对肌肉骨骼力进行模型驱动计算。