首页> 外文期刊>Respiratory physiology & neurobiology >Peripheral-central chemoreceptor interaction and the significance of a critical period in the development of respiratory control.
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Peripheral-central chemoreceptor interaction and the significance of a critical period in the development of respiratory control.

机译:周围-中央化学感受器相互作用和呼吸控制发展中关键时期的意义。

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Respiratory control entails coordinated activities of peripheral chemoreceptors (mainly the carotid bodies) and central chemosensors within the brain stem respiratory network. Candidates for central chemoreceptors include Phox2b-containing neurons of the retrotrapezoid nucleus, serotonergic neurons of the medullary raphé, and/or multiple sites within the brain stem. Extensive interconnections among respiratory-related nuclei enable central chemosensitive relay. Both peripheral and central respiratory centers are not mature at birth, but undergo considerable development during the first two postnatal weeks in rats. A critical period of respiratory development (~P12-P13 in the rat) exists when abrupt neurochemical, metabolic, ventilatory, and electrophysiological changes occur. Environmental perturbations, including hypoxia, intermittent hypoxia, hypercapnia, and hyperoxia alter the development of the respiratory system. Carotid body denervation during the first two postnatal weeks in the rat profoundly affects the development and functions of central respiratory-related nuclei. Such denervation delays and prolongs the critical period, but does not eliminate it, suggesting that the critical period may be intrinsically and genetically determined.
机译:呼吸控制需要脑干呼吸网络中周围化学感受器(主要是颈动脉体)和中央化学传感器的协调活动。中枢化学感受器的候选者包括梯形后核的含Phox2b的神经元,髓质髓质的血清素能神经元和/或脑干内的多个位点。呼吸相关核之间的广泛互连使中央化学敏感继电器成为可能。外周和中央呼吸中心在出生时均未成熟,但在大鼠出生后的前两周内经历了相当大的发育。当发生突然的神经化学,代谢,通气和电生理变化时,就存在呼吸发育的关键时期(大鼠为P12-P13)。包括缺氧,间歇性缺氧,高碳酸血症和高氧在内的环境扰动会改变呼吸系统的发育。大鼠出生后前两周的颈动脉去神经支配会深刻影响中央呼吸相关核的发育和功能。这种去神经延迟和延长了关键时期,但并没有消除它,这表明关键时期可能是内在和遗传决定的。

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