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首页> 外文期刊>The Journal of Physiology >Mechanical effect of muscle spindles in the canine external intercostal muscles.
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Mechanical effect of muscle spindles in the canine external intercostal muscles.

机译:犬体外肋间肌中肌肉纺锤体的机械作用。

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摘要

High-frequency mechanical vibration of the ribcage increases afferent activity from external intercostal muscle spindles, but the effect of this procedure on the mechanical behaviour of the respiratory system is unknown. In the present study, we have measured the changes in external intercostal muscle length and the craniocaudal displacement of the ribs during ribcage vibration (40 Hz) in anaesthetized dogs. With vibration, external intercostal inspiratory activity increased by approximately 50 %, but the respiratory changes in muscle length and rib displacement were unaltered. A similar response was obtained after the muscles in the caudal segments of the ribcage were sectioned and the caudally oriented force exerted by these muscles on the rib was removed, thus suggesting that activation of external intercostal muscle spindles by vibration generates little tension. Prompted by this observation, we also examined the role played by the external intercostal muscle spindles in determining the respiratorydisplacement of the ribs during breathing against high inspiratory airflow resistances. Although resistances consistently elicited prominent reflex increases in external intercostal inspiratory activity, the normal inspiratory cranial displacement of the ribs was reversed into an inspiratory caudal displacement. Also, this caudal rib displacement was essentially unchanged after section of the external intercostal muscles, whereas it was clearly enhanced after denervation of the parasternal intercostals. These findings indicate that stretch reflexes in external intercostal muscles confer insufficient tension on the muscles to significantly modify the mechanical behaviour of the respiratory system.
机译:胸腔的高频机械振动增加了来自外部肋间肌纺锤的传入活动,但是该过程对呼吸系统机械行为的影响尚不清楚。在本研究中,我们测量了麻醉犬在胸腔振动(40 Hz)期间肋间外肌长度和肋骨颅尾移位的变化。伴随振动,肋间的外部吸气活动增加了约50%,但呼吸的肌肉长度和肋骨位移改变没有改变。剖开胸腔尾段的肌肉并去除这些肌肉施加在肋骨上的尾向力后,获得了类似的响应,因此表明通过振动激活外部肋间肌纺锤产生的拉力很小。根据这一观察结果,我们还检查了外部肋间肌纺锤体在确定呼吸过程中肋骨对高吸气气流阻力的呼吸位移中所起的作用。尽管抵抗力持续引起外部肋间吸气活动的明显反射增加,但肋骨的正常吸气颅骨移位却被转换为吸气尾椎移位。同样,该尾肋移位在肋间外侧肌肉切开后基本上没有改变,而在胸骨旁肋间神经支配后明显增强。这些发现表明,肋间外肌的拉伸反射使肌肉的张力不足以显着改变呼吸系统的机械行为。

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