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NEUROMUSCULAR DETERMINANTS OF FORCE COORDINATION DURING MULTIDIGIT GRASPING

机译:多重抓握过程中神经协调的力协调决定因素

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摘要

The biomechanical structure of the hand and its underlying neurophysiology contribute to the coordination of the kinematics and kinetics necessary for multidigit grasping. We recently examined the neural organization of inputs to different extrinsic finger flexors during multi‐digit object hold and found moderate to strong motor unit short‐term synchrony. This suggests a common neural input to the motoneurons innervating these different hand muscles/muscle compartments, which may in turn influence the coordination of grip forces.To further characterize this common input to the hand muscles during multidigit grasping, we used the frequency‐based measure of coherence. Motor unit coherence provides information with regards to the oscillatory frequency of a common input, as well as the coupling of the discharges of a motor unit pair at both short and long latencies.Preliminary results indicate that a large proportion of trials are characterized by significant coherence in the 1–12 Hz frequency range, which is more pronounced in the within‐ than between‐muscle/muscle compartment analysis. This indicates a differential organization of common oscillatory inputs to pairs of motoneurons innervating the same vs. different muscles/ muscle compartments. The functional role of the 1–12 Hz oscillatory modulation of motor unit behavior is currently being investigated.
机译:手的生物力学结构及其潜在的神经生理学有助于协调多指抓握所需的运动学和动力学。最近,我们检查了多位对象握持期间输入到不同外在手指屈肌的神经组织,发现中度到强度运动单位短期同步。这暗示了运动神经元神经的通用神经输入支配着这些不同的手部肌肉/肌肉腔,这反过来可能会影响抓握力的协调性。为了进一步表征多指握持过程中手部肌肉的这种通用输入,我们使用了基于频率的测量连贯性电机单元相干性提供了有关公共输入的振荡频率以及电机单元对在短时延迟和长时延之间的放电耦合的信息。初步结果表明,大部分试验都具有显着的相干性。在1–12 Hz频率范围内,这在内部/肌肉/肌肉腔室分析中更为明显。这表明神经振动对的成对运动神经对的不同组织,它们分别支配着相同或不同的肌肉/肌肉隔室。目前正在研究电动机单元行为的1-12 Hz振荡调制的功能作用。

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