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Finger interaction during maximal radial and ulnar deviation efforts: experimental data and linear neural network modeling

机译:最大radial骨和尺骨偏向努力过程中的手指交互作用:实验数据和线性神经网络建模

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摘要

The purpose of this study was to characterize finger interactions during radial/ulnar deviation, including interactions with flexion movements. Subjects performed single-finger and multi-finger maximal voluntary contraction (MVC), and maximal forces and various indices of interaction among the fingers were quantified. MVCs in radial/ulnar deviation were 50–80% as strong as in flexion. Along with the ‘master’ fingers (i.e., those explicitly instructed to produce force), substantial force production was also observed in ‘slave’ fingers (i.e., those not explicitly instructed to produce force), a phenomenon termed: force ‘enslaving’. In addition, a drop in MVC during multi-finger tasks as compared to single finger tasks (force ‘deficit’) was also observed. A previously unreported phenomenon that we term: ‘preferred direction enslaving’ was also apparent; both master and slave fingers produced force in the instructed direction with a non-zero perpendicular component. Due to the architectural separation of the involved muscles, preferred direction enslaving provides strong evidence that enslaving results from neural rather than biomechanical factors. A final new phenomenon: ‘negative deficit’, or force ‘facilitation’ was observed in 46.4% of the trials in 21 out of 23 subjects during multi-finger lateral efforts and was further demonstrative of extensive interconnection among neurons serving hand muscles. The data were modeled with high accuracy (~4% mean square error) using a linear neural network with motor ‘commands’ as inputs and finger forces as outputs. The proposed network, equivalent to linear regression, can be used to determine the extent to which finger forces are influenced by peripheral constraints during functional prehensile activities.
机译:这项研究的目的是表征radial骨/尺骨偏斜过程中手指的相互作用,包括与屈曲运动的相互作用。受试者进行了单指和多指的最大自愿收缩(MVC),并量化了最大的力量和手指之间相互作用的各种指标。 VC /尺骨偏斜的MVC强度与屈曲强度相同,为50-80%。除了“主”手指(即明确指示要产生力的手指)外,在“从”手指(即未明确指示要产生力的手指)中也观察到大量的力产生,这种现象称为:“奴役”。此外,与单指任务(力“不足”)相比,在多指任务中MVC下降。我们还曾提到过一种以前未曾报道过的现象:“首选方向奴役”。主手指和从手指均以非零垂直分量沿指令方向产生力。由于受累肌肉的结构分离,首选方向奴役提供了有力的证据,表明奴役是神经而非生物力学因素造成的。最后一个新现象:在多指侧向努力中,在23名受试者中的21名受试者中,有46.4%的试验中观察到“负性赤字”或用力“促进”,这进一步证明了服务于手部肌肉的神经元之间的广泛互连。使用线性神经网络以马达“命令”作为输入,手指力作为输出,以高精度(〜4%均方误差)对数据进行建模。所提出的网络等效于线性回归,可以用来确定手指功能在功能性活动中受到外围约束的影响程度。

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