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首页> 外文期刊>Journal of Neurophysiology >Motor unit activity during isometric and concentric-eccentric contractions of the human first dorsal interosseus muscle.
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Motor unit activity during isometric and concentric-eccentric contractions of the human first dorsal interosseus muscle.

机译:人类第一背骨间肌等距和同心-偏心收缩过程中的运动单位活动。

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摘要

1. Motor unit activity was recorded with intramuscular fine wire electrodes during isometric, concentric, and eccentric activity in the human first dorsal interosseus muscle. Twenty-one units from 11 subjects were sampled. 2. During isotonic cycles of shortening and lengthening, 18 of 21 units were recruited during the concentric phase, increased their discharge rates as the concentric movement progressed, then decreased their discharge rate during the eccentric phase, and were derecruited. 3. A different pattern of recruitment was observed in recordings from three units. These units were recruited during the eccentric phase, at a time when other units were decreasing their discharge rate or being derecruited. In two of the units selectively recruited during the eccentric phase, it was possible to determine their isometric thresholds, which were higher than those of units exhibiting the more common pattern of recruitment. 4. For two of the three units exhibiting selective recruitment during eccentric contraction, the unit was recorded simultaneously with different pairs of recording wires separated by 5-10 mm. Each discharge of these units was detected by both electrodes, making it unlikely that movement artifact was responsible for the initiation or cessation of discharge. 5. The recruitment patterns observed suggest that changes in the type or distribution of synaptic inputs to motoneurons during movement can, in some instances, override pre- and postsynaptic factors that shape recruitment order in isometric conditions.
机译:1.在人的第一背骨间肌肉中等距,同心和偏心活动期间,使用肌内细丝电极记录了运动单位活动。从11位受试者中抽取21个单位。 2.在缩短和延长的等渗循环中,同心相期间募集了21个单元中的18个,随着同心运动的进行而增加了其排放速率,然后在偏心相期间降低了它们的排放速率,并取消了该组。 3.在三个单位的录音中观察到了不同的征募模式。这些单元是在偏心阶段招募的,当时其他单元正在降低其排放率或取消其招聘。在偏心阶段选择性招募的两个单位中,可以确定其等距阈值,该阈值高于表现出更常见招募模式的单位的等距阈值。 4.对于三个在偏心收缩过程中表现出选择性募集的单元中的两个,使用间隔5-10 mm的不同对记录线同时记录该单元。这些电极的每次放电都由两个电极检测到,因此运动伪影不太可能导致放电的开始或停止。 5.观察到的募集模式表明,在运动过程中向运动神经元的突触输入的类型或分布的变化,在某些情况下,可以取代在等轴测条件下影响募集顺序的突触前和突触后因素。

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