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Multiple neural circuits mediating airway sensations: Recent advances in the neurobiology of the urge-to-cough

机译:多种神经回路介导气道感觉:急咳的神经生物学研究进展

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The respiratory system is densely innervated by sensory neurons arising from the jugular (superior) and nodose (inferior) vagal ganglia. However, a distinction exists between jugular and nodose neurons as these ganglia developmentally originate from the neural crest and the epibranchial placodes, respectively. This different embryological origin underpins an important source of heterogeneity in vagal afferent biology, and may extend to include fundamentally different central neural circuits that are in receipt of jugular versus nodose afferent inputs. Indeed, recent studies using viral tract tracing and human brain imaging support the notion that airway sensors contribute inputs to multiple central circuits. Understanding the neural pathways arising from the airways and lungs may provide novel insights into aberrant sensations, such as the urge-to-cough, characteristic of respiratory disease. (C) 2015 Elsevier B.V. All rights reserved.
机译:呼吸系统由迷走神经节的颈(上)和结节(下)的感觉神经元密集支配。但是,颈神经和结节神经元之间存在区别,因为这些神经节分别分别起源于神经the和支气管上膜。这种不同的胚胎学起源是迷走神经传入生物学中异质性的重要来源,并且可能扩展到包括根本不同的中枢神经回路,这些神经回路接受颈静脉和结节传入输入。确实,最近使用病毒束追踪和人脑成像的研究支持以下观点:气道传感器为多个中央回路贡献了输入。了解由气道和肺部引起的神经通路可能为异常感觉提供新颖的见解,例如呼吸道疾病的急咳感。 (C)2015 Elsevier B.V.保留所有权利。

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