首页> 外文期刊>The Journal of Physiology >Contraction of the human diaphragm during rapid postural adjustments.
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Contraction of the human diaphragm during rapid postural adjustments.

机译:快速调整姿势时人diaphragm肌的收缩。

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1. The response of the diaphragm to the postural perturbation produced by rapid flexion of the shoulder to a visual stimulus was evaluated in standing subjects. Gastric, oesophageal and transdiaphragmatic pressures were measured together with intramuscular and oesophageal recordings of electromyographic activity (EMG) in the diaphragm. To assess the mechanics of contraction of the diaphragm, dynamic changes in the length of the diaphragm were measured with ultrasonography. 2. With rapid flexion of the shoulder in response to a visual stimulus, EMG activity in the costal and crural diaphragm occurred about 20 ms prior to the onset of deltoid EMG. This anticipatory contraction occurred irrespective of the phase of respiration in which arm movement began. The onset of diaphragm EMG coincided with that of transversus abdominis. 3. Gastric and transdiaphragmatic pressures increased in association with the rapid arm flexion by 13.8 +/- 1.9 (mean +/- S.E.M.) and 13.5 +/- 1.8 cmH2O, respectively. The increasesoccurred 49 +/- 4 ms after the onset of diaphragm EMG, but preceded the onset of movement of the limb by 63 +/- 7 ms. 4. Ultrasonographic measurements revealed that the costal diaphragm shortened and then lengthened progressively during the increase in transdiaphragmatic pressure. 5. This study provides definitive evidence that the human diaphragm is involved in the control of postural stability during sudden voluntary movement of the limbs.
机译:1.在站立的受试者中评估了diaphragm肌对肩膀快速屈曲对视觉刺激产生的姿势扰动的反应。测量了胃,食管和dia肌的压力,以及隔膜中肌电活动(EMG)的肌内和食管记录。为了评估隔膜的收缩机制,用超声检查隔膜长度的动态变化。 2.在视觉刺激下,肩部快速弯曲,三角肌肌电图发作前约20 ms,肋肌和cru肌肌电图发生活动。不管手臂开始运动的呼吸阶段如何,都会发生这种预期的收缩。 diaphragm肌肌电图发作与腹横肌相吻合。 3.随着手臂的快速弯曲,胃和trans肌压力分别增加了13.8 +/- 1.9(平均+/- S.E.M.)和13.5 +/- 1.8 cmH2O。隔膜肌电图发作后49 +/- 4 ms出现增加,但在肢体运动开始之前63 +/- 7 ms。 4.超声检查结果显示,经dia肌压力增加时,肋骨隔膜先变短,然后逐渐延长。 5.这项研究提供了确凿的证据表明,在四肢突然自愿运动过程中,人类during肌参与了姿势稳定性的控制。

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