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Perspective on the human cough reflex.对人类咳嗽反射的见解。
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Systemic inflammation impairs respiratory chemoreflexes and plasticity.全身炎症会损害呼吸化学感受反射和可塑性。
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Influence of tongue muscle contraction and transmural pressure on nasopharyngeal geometry in the rat.舌肌收缩和跨壁压对大鼠咽腔几何形状的影响。
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Biomechanics of the upper airway: Changing concepts in the pathogenesis of obstructive sleep apnea.上气道生物力学:阻塞性睡眠呼吸暂停发病机制中的变化概念。
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Increased upper airway cytokines and oxidative stress in severe obstructive sleep apnoea.严重阻塞性睡眠呼吸暂停患者上呼吸道细胞因子和氧化应激增加。
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10
Influence of vagal afferents on supraspinal and spinal respiratory activity following cervical spinal cord injury in rats.迷走神经传入纤维对大鼠颈脊髓损伤后脊髓上和脊髓呼吸活动的影响。
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肺 C 纤维激活可减弱与呼吸相关的舌运动。

Pulmonary C-fiber activation attenuates respiratory-related tongue movements.

机构信息

Department of Biological Sciences, College of Science, National Sun Yat-sen University, Kaohsiung, Taiwan.

出版信息

J Appl Physiol (1985). 2012 Nov;113(9):1369-76. doi: 10.1152/japplphysiol.00031.2012. Epub 2012 Aug 30.

DOI:10.1152/japplphysiol.00031.2012
PMID:22936725
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3524667/
Abstract

The functional impact of pulmonary C-fiber activation on upper airway biomechanics has not been evaluated. Here, we tested the hypothesis that pulmonary C-fiber activation alters the respiratory-related control of tongue movements. The force produced by tongue movements was quantified in spontaneously breathing, anesthetized adult rats before and after stimulation of pulmonary C fibers via intrajugular delivery of capsaicin (0.625 and 1.25 μg/kg). Brief occlusion of the trachea was used to increase the respiratory drive to the tongue muscles, and hypoglossal (XII) nerve branches were selectively sectioned to denervate the protrusive and retrusive tongue musculature. Tracheal occlusion triggered inspiratory-related tongue retrusion in rats with XII nerves intact or following section of the medial XII nerve branch, which innervates the genioglossus muscle. Inspiratory-related tongue protrusion was only observed after section of the lateral XII branch, which innervates the primary tongue retrusor muscles. The tension produced by inspiratory-related tongue movement was significantly attenuated by capsaicin, but tongue movements remained retrusive, unless the medial XII branch was sectioned. Capsaicin also significantly delayed the onset of tongue movements such that tongue forces could not be detected until after onset of the inspiratory diaphragm activity. We conclude that altered neural drive to the tongue muscles following pulmonary C-fiber activation has a functionally significant effect on tongue movements. The diminished tongue force and delay in the onset of tongue movements following pulmonary C-fiber activation are potentially unfavorable for upper airway patency.

摘要

尚未评估肺 C 纤维激活对上气道生物力学的功能影响。在这里,我们检验了这样一个假设,即肺 C 纤维激活改变了与呼吸相关的舌运动控制。在麻醉的成年大鼠中,通过颈内静脉给予辣椒素(0.625 和 1.25μg/kg)刺激肺 C 纤维之前和之后,定量测量了舌运动产生的力。短暂地阻塞气管以增加对舌肌的呼吸驱动,并且选择性地切断舌下神经(XII)神经分支以去神经支配突出和缩回的舌肌。在 XII 神经完整或切断支配颏舌肌的 XII 神经内侧分支的情况下,气管阻塞会触发吸气相关的舌回缩。仅在切断支配主要舌回缩肌的 XII 神经外侧分支后,才会观察到吸气相关的舌突出。吸气相关的舌运动产生的张力明显被辣椒素减弱,但舌运动仍然是回缩的,除非切断了 XII 神经内侧分支。辣椒素还显著延迟了舌运动的开始,以至于直到吸气膈肌活动开始后才能检测到舌力。我们得出结论,肺 C 纤维激活后对舌肌的神经驱动改变对上气道通畅具有功能显著影响。肺 C 纤维激活后舌运动的力减小和开始延迟可能对上气道通畅不利。