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Across-muscle coherence is modulated as a function of wrist posture during two-digit grasping

机译:跨肌肉连贯性在两位数抓握过程中根据手腕姿势进行调节

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摘要

The purpose of this study was to investigate the extent to which correlated neural inputs, quantified as EMG-EMG coherence across intrinsic and extrinsic hand muscles, varied as a function of wrist angle during a constant force precision grip task. Eight adults (5 males; mean age 29 years) participated in the experiment. Subjects held an object using a two-digit precision grip at a constant force at a flexed, neutral, and extended wrist posture, while the EMG activity from intrinsic and extrinsic hand muscles was recorded through intramuscular fine-wire electrodes. The integral of z-transformed coherence computed across muscles pairs was greatest in the flexed wrist posture and significantly greater than EMG-EMG coherence measured in the neutral and extended wrist posture (. P<. 0.01 and 0.05, respectively). Furthermore, EMG-EMG coherence did not differ statistically between the extrinsic and intrinsic muscle pairs, even though it tended to be greater for the extrinsic muscle pair (. P≥. 0.063). These findings lend support to the notion of a functional role of correlated neural inputs to hand muscles for the task-dependent coordination of hand muscle activity that is likely mediated by somatosensory feedback.
机译:这项研究的目的是调查在恒力精确抓握任务期间,相关神经输入(以跨内在和外在手肌的EMG-EMG相干性量化)随腕角变化的程度。八名成人(5名男性;平均年龄29岁)参加了实验。受试者以两位数的精确握力以弯曲,中立和伸展的手腕姿势以恒定的力握住物体,而通过肌内细线电极记录来自内在和外在手肌的EMG活动。跨肌肉对计算的z变换一致性的积分在腕部弯曲姿势中最大,并且显着大于在中性和扩展腕部姿势中测得的EMG-EMG一致性(分别为P <。0.01和0.05)。此外,外在肌和内在肌对之间的EMG-EMG连贯性在统计上没有差异,即使外在肌对的肌电连贯性趋于更大(。P≥。0.063)。这些发现为手部肌肉相关任务的相关神经输入功能作用的概念提供了支持,该功能作用取决于任务的手部肌肉活动的协调,这很可能是由体感反馈介导的。

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