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咳嗽的运动机制。

Cough motor mechanisms.

作者信息

Fontana Giovanni A, Lavorini Federico

机构信息

Dipartimento di Area Critica Medico Chirurgica, Unità Funzionale di Medicina Respiratoria, Viale G.B. Morgagni 85, 50134 Firenze, Italy.

出版信息

Respir Physiol Neurobiol. 2006 Jul 28;152(3):266-81. doi: 10.1016/j.resp.2006.02.016. Epub 2006 Apr 4.

Abstract

Cough is a defensive airway mechanisms which involves the sequential activation of several laryngeal and respiratory muscles in the generation of the typical four-phase motor pattern. Activation of such muscles can be considered to represent the "primary" cough motor mechanism, and its functional significance, although complex, appears to be fairly well established. Nonetheless, the outflows of cough are numerous, and may additionally involve the reflex or mechanical activation of other respiratory and non-respiratory motor systems. These additional, or "secondary", outflows of cough can mainly be regarded as being involved in either enhancing the defensive function of cough, or opposing the possible noxious effects exerted by the mechanical stresses of coughing. In addition, both the primary and secondary cough motor mechanisms are known to play multiple functional roles, thus considerably complicating the cough panorama. Finally, some of the secondary cough motor responses, such as the changes in the pattern of breathing, seem to be devoid of any favourable action and their functional meaning, if any, is not fully understood. Although it is well known that all patterns of cough can be produced voluntarily, the extent to which also volitional cough is accompanied by an array of motor responses similar to that of reflex cough remains to be elucidated.

摘要

咳嗽是一种气道防御机制,在典型的四阶段运动模式的产生过程中,涉及多个喉部和呼吸肌的顺序激活。这些肌肉的激活可被视为代表了“原发性”咳嗽运动机制,其功能意义虽然复杂,但似乎已相当明确。尽管如此,咳嗽的传出通路众多,可能还涉及其他呼吸和非呼吸运动系统的反射性或机械性激活。这些额外的或“继发性”咳嗽传出通路主要可被视为参与增强咳嗽的防御功能,或对抗咳嗽机械应力可能产生的有害影响。此外,原发性和继发性咳嗽运动机制都已知发挥多种功能作用,从而使咳嗽的情况变得相当复杂。最后,一些继发性咳嗽运动反应,如呼吸模式的变化,似乎没有任何有利作用,其功能意义(如果有的话)也尚未完全明了。虽然众所周知所有咳嗽模式都可以自主产生,但自主咳嗽伴随一系列类似于反射性咳嗽的运动反应的程度仍有待阐明。

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