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在姿势任务中,特定腹部肌肉的收缩会受到呼吸动作的影响。

Contractions of specific abdominal muscles in postural tasks are affected by respiratory maneuvers.

作者信息

Hodges P W, Gandevia S C, Richardson C A

机构信息

Department of Physiotherapy, The University of Queensland, Brisbane, Queensland 4072, Australia.

出版信息

J Appl Physiol (1985). 1997 Sep;83(3):753-60. doi: 10.1152/jappl.1997.83.3.753.

Abstract

The influence of respiratory activity of the abdominal muscles on their reaction time in a postural task was evaluated. The electromyographic (EMG) onsets of the abdominal muscles and deltoid were evaluated in response to shoulder flexion initiated by a visual stimulus occurring at random throughout the respiratory cycle. Increased activity of the abdominal muscles was produced by inspiratory loading, forced expiration below functional residual capacity, and a static glottis-closed expulsive maneuver. During quiet breathing, the latency between activation of the abdominal muscles and deltoid was not influenced by the respiratory cycle. When respiratory activity of the abdominal muscles increased, the EMG onset of transversus abdominis and internal oblique, relative to deltoid, was significantly earlier for movements beginning in expiration, compared with inspiration [by 97-107 ms (P < 0.01) and 64-90 ms (P < 0.01), respectively]. However, the onset of transversus abdominis EMG was delayed by 31-54 ms (P < 0.01) when movement was performed during a static expulsive effort, compared with quiet respiration. Thus changes occur in early anticipatory contraction of transversus abdominis during respiratory tasks but they cannot be explained simply by existing activation of the motoneuron pool.

摘要

评估了腹部肌肉的呼吸活动对其在姿势任务中反应时间的影响。在整个呼吸周期中随机出现的视觉刺激引发肩部屈曲时,对腹部肌肉和三角肌的肌电图(EMG)起始进行了评估。吸气负荷、在功能残气量以下的用力呼气以及静态声门关闭的呼气动作会使腹部肌肉的活动增加。在安静呼吸期间,腹部肌肉和三角肌激活之间的潜伏期不受呼吸周期的影响。当腹部肌肉的呼吸活动增加时,相对于三角肌,腹横肌和腹内斜肌的EMG起始对于从呼气开始的动作而言,相较于吸气明显更早[分别提前97 - 107毫秒(P < 0.01)和64 - 90毫秒(P < 0.01)]。然而,与安静呼吸相比,在静态呼气用力期间进行动作时,腹横肌EMG的起始延迟了31 - 54毫秒(P < 0.01)。因此,在呼吸任务期间腹横肌的早期预期收缩会发生变化,但不能简单地用运动神经元池的现有激活来解释这些变化。

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