Kutz Dieter F, Wölfel Alexander, Timmann Dagmar, Kolb Florian P
Department of Physiological Genomics, Institute of Physiology, University of Munich, Pettenkoferstr. 12, 80336 Munich, Germany.
J Neurosci Methods. 2007 Nov 30;166(2):250-8. doi: 10.1016/j.jneumeth.2007.07.014. Epub 2007 Jul 28.
Holding a slipping object in hand requires adjustment of grip forces. The aim of the study was to develop a method for measuring the temporal and spatial distribution of grip forces during the holding of a slipping object in the hand. A special grip rod with a measuring film containing 200 resistor-based pressure sensors equally distributed over 50 cm(2) was developed, providing a system that has a spatial resolution of 5 mm, a temporal resolution of 1/150 Hz and a force resolution 0.05 N. A force-change-detection algorithm was constructed to detect and separate pressure and position of individual fingers. The algorithm is a modification of a classical Gaussian random field theory algorithm for detecting significant data [Rogerson PA. Change detection thresholds for remotely sensed images. J Geog Syst 2002;4:85-97]. The modification takes the signal strength into account to reduce false positive detection in low grip force situations. The grip force measuring system and the force-change-detection algorithm allow measurement of the forces exerted by any number of fingers simultaneously without any constraints on finger position and are suitable for basic and clinical research in human and animal physiology as well as for psychophysics studies.
手持滑落的物体需要调整握力。本研究的目的是开发一种方法,用于测量手持滑落物体时握力的时间和空间分布。我们研制了一种特殊的握杆,其带有一片测量薄膜,该薄膜包含200个基于电阻的压力传感器,均匀分布在50平方厘米的区域内,提供了一个空间分辨率为5毫米、时间分辨率为1/150赫兹且力分辨率为0.05牛的系统。构建了一种力变化检测算法,用于检测和区分各个手指的压力和位置。该算法是对用于检测显著数据的经典高斯随机场理论算法的一种改进[Rogerson PA. 遥感图像的变化检测阈值。《地理系统杂志》2002年;4:85 - 97]。这种改进考虑了信号强度,以减少低握力情况下的误报检测。握力测量系统和力变化检测算法允许同时测量任意数量手指施加的力,对手指位置没有任何限制,适用于人类和动物生理学的基础研究和临床研究以及心理物理学研究。