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麻醉猫呼吸时胸廓和腹部的形态变化。

The changes in configuration of the rib cage and abdomen during breathing in the anaesthetized cat.

作者信息

Da Silva K M, Sayers B M, Sears T A, Stagg D T

出版信息

J Physiol. 1977 Apr;266(2):499-521. doi: 10.1113/jphysiol.1977.sp011779.

Abstract
  1. The external surface of the rib cage and abdominal wall in anaesthetized cats was surgically exposed in order to record their movements cinematographically in spontaneous breathing and in paralysed cats, during artificial positive pressure ventilation. 2. Cine-stereophotography was used to allow the recording of the movements of a set of markers placed on the external surface of the trunk wall and the corresponding stereometric data were numerically and graphically processed into three-dimensional drawings. The cine-film frames corresponding to the phases of maximum inflation and deflation of the lungs were analysed to reveal the changes in configuration associated with the respiratory movements of the trunk wall. 3. The changes in shape of the diaphragm and the diaphragm and the displacements of the abdominal viscera between extreme inflation and deflation were recorded by X-ray photography. 4. During spontaneous inspiratory movements, the ribs rotated outwards and rostrally about the costovertebral joints, bringing about an increase in the transverse dimensions of the cage all along its length; these movements were accompanied by a clear-cut caudad displacement of the sternum, caused by the straightening of the costal cartilages and by the widening of the angles defined at sternochondral joints between the sternum and each of the costal cartilages. 5. Neuromuscular blockade abolished muscle tone in the trunk wall, allowing the weight of the viscera markedly to deform its configuration. 6. The inspiratory rib movements of the paralysed animal during artificial inspiration were similar to those during spontaneous breathing but the movements of the sternum were inverted and showed small cranial displacements. 7. The loss of muscular tone under neuromuscular blockade made the abdominal wall more compliant than the rib cage to the positive lung pressure and allowed greater mobility of the viscera with consequent distortion of the shape of the diaphragm. 8. The role of rib cage muscle tone in meeting requirements of purely configurational character in such a shell-like structure is discussed in relation to the optimal mechanical performance of the diaphragm.
摘要
  1. 为了在麻醉猫自主呼吸时以及在人工正压通气的麻痹猫中通过电影摄影记录胸廓和腹壁的运动,对其进行了手术暴露。2. 使用电影立体摄影术记录放置在躯干壁外表面的一组标记的运动,并将相应的立体测量数据进行数值和图形处理,制成三维图。分析与肺最大充气和放气阶段相对应的电影胶片帧,以揭示与躯干壁呼吸运动相关的形态变化。3. 通过X射线摄影记录极端充气和放气之间膈肌形状的变化以及腹腔脏器的位移。4. 在自主吸气运动期间,肋骨围绕肋椎关节向外和向前旋转,导致胸廓在其整个长度上的横向尺寸增加;这些运动伴随着胸骨明显的尾侧位移,这是由肋软骨变直以及胸骨与每个肋软骨之间胸肋关节处定义的角度变宽引起的。5. 神经肌肉阻滞消除了躯干壁的肌张力,使内脏的重量明显使其形态变形。6. 麻痹动物在人工吸气期间的吸气肋骨运动与自主呼吸时相似,但胸骨的运动相反,且显示出小的头侧位移。7. 神经肌肉阻滞下肌张力的丧失使腹壁比胸廓对肺正压更顺应,并使内脏有更大的移动性,从而导致膈肌形状变形。8. 结合膈肌的最佳机械性能,讨论了胸廓肌张力在满足这种壳状结构中纯形态特征要求方面的作用。

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本文引用的文献

1
[Postural function of the respiratory muscles].[呼吸肌的姿势功能]
Arch Int Physiol Biochim. 1960 Mar;68:314-26. doi: 10.3109/13813456009083552.
4
Mechanics of the diaphragm.膈肌的力学原理。
J Appl Physiol. 1971 Jun;30(6):797-805. doi: 10.1152/jappl.1971.30.6.797.
7
Direct action of contracting diaphragm on the rib cage in rabbits and dogs.
J Appl Physiol. 1974 Jun;36(6):715-9. doi: 10.1152/jappl.1974.36.6.715.

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