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吸气负荷期间胸壁和躯干肌肉的活动。

Chest wall and trunk muscle activity during inspiratory loading.

作者信息

Cala S J, Edyvean J, Engel L A

机构信息

Thoracic Medicine Unit, Westmead Hospital, New South Wales, Australia.

出版信息

J Appl Physiol (1985). 1992 Dec;73(6):2373-81. doi: 10.1152/jappl.1992.73.6.2373.

DOI:10.1152/jappl.1992.73.6.2373
PMID:1490946
Abstract

We measured the electromyographic (EMG) activity in four chest wall and trunk (CWT) muscles, the erector spinae, latissimus dorsi, pectoralis major, and trapezius, together with the parasternal, in four normal subjects during graded inspiratory efforts against an occlusion in both upright and seated postures. We also measured CWT EMGs in six seated subjects during inspiratory resistive loading at high and low tidal volumes [1,280 +/- 80 (SE) and 920 +/- 60 ml, respectively]. With one exception, CWT EMG increased as a function of inspiratory pressure generated (Pmus) at all lung volumes in both postures, with no systematic difference in recruitment between CWT and parasternal muscles as a function of Pmus. At any given lung volume there was no consistent difference in CWT EMG at a given Pmus between the two postures (P > 0.09). However, at a given Pmus during both graded inspiratory efforts and inspiratory resistive loading, EMGs of all muscles increased with lung volume, with greater volume dependence in the upright posture (P < 0.02). The results suggest that during inspiratory efforts, CWT muscles contribute to the generation of inspiratory pressure. The CWT muscles may act as fixators opposing deflationary forces transmitted to the vertebral column by rib cage articulations, a function that may be less effective at high lung volumes if the direction of the muscular insertions is altered disadvantageously.

摘要

我们在四名正常受试者处于直立和坐姿时,针对阻塞物进行分级吸气努力的过程中,测量了四块胸壁和躯干(CWT)肌肉(竖脊肌、背阔肌、胸大肌和斜方肌)以及胸骨旁肌的肌电图(EMG)活动。我们还在六名坐姿受试者进行高、低潮气量[分别为1,280±80(SE)和920±60毫升]的吸气阻力负荷时,测量了CWT的肌电图。除了一个例外情况,在两种姿势下的所有肺容量时,CWT肌电图均随产生的吸气压力(Pmus)增加而增加,CWT肌肉和胸骨旁肌之间的募集情况作为Pmus的函数没有系统差异。在任何给定的肺容量下,两种姿势下给定Pmus时CWT肌电图没有一致的差异(P>0.09)。然而,在分级吸气努力和吸气阻力负荷期间的给定Pmus时,所有肌肉的肌电图均随肺容量增加,在直立姿势下对肺容量的依赖性更大(P<0.02)。结果表明,在吸气努力期间,CWT肌肉有助于产生吸气压力。CWT肌肉可能充当固定器,对抗通过胸廓关节传递到脊柱的放气力量,如果肌肉插入方向不利改变,这种功能在高肺容量时可能效果较差。

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