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喉的外周本体感受器装置综述。

A review of the peripheral proprioceptive apparatus in the larynx.

作者信息

Hernández-Morato Ignacio, Yu Victoria X, Pitman Michael J

机构信息

Department of Otolaryngology-Head and Neck Surgery, Columbia University Irving Medical Center / New York Presbyterian, New York, NY, United States.

The Center for Voice and Swallowing, Department of Otolaryngology-Head and Neck Surgery, Columbia University Irving Medical Center / New York Presbyterian, New York, NY, United States.

出版信息

Front Neuroanat. 2023 Feb 24;17:1114817. doi: 10.3389/fnana.2023.1114817. eCollection 2023.

Abstract

The larynx is an organ of the upper airway that participates in breathing, glutition, voice production, and airway protection. These complex functions depend on vocal fold (VF) movement, facilitated in turn by the action of the intrinsic laryngeal muscles (ILM). The necessary precise and near-instantaneous modulation of each ILM contraction relies on proprioceptive innervation of the larynx. Dysfunctional laryngeal proprioception likely contributes to disorders such as laryngeal dystonia, dysphagia, vocal fold paresis, and paralysis. While the proprioceptive system in skeletal muscle derived from somites is well described, the proprioceptive circuitry that governs head and neck structures such as VF has not been so well characterized. For over two centuries, researchers have investigated the question of whether canonical proprioceptive organs, muscle spindles, and Golgi tendon organs, exist in the ILM, with variable findings. The present work is a state-of-the-art review of the peripheral component of laryngeal proprioception, including current knowledge of canonical and possible alternative proprioceptive circuitry elements in the larynx.

摘要

喉是上呼吸道的一个器官,参与呼吸、吞咽、发声和气道保护。这些复杂的功能依赖于声带(VF)的运动,而声带运动又反过来由喉内肌(ILM)的作用来促进。每个喉内肌收缩所需的精确且近乎即时的调节依赖于喉的本体感觉神经支配。喉本体感觉功能失调可能导致诸如喉肌张力障碍、吞咽困难、声带轻瘫和麻痹等疾病。虽然源自体节的骨骼肌中的本体感觉系统已得到充分描述,但支配诸如声带等头颈部结构的本体感觉神经回路尚未得到很好的表征。两个多世纪以来,研究人员一直在研究喉内肌中是否存在典型的本体感觉器官、肌梭和高尔基腱器官这一问题,结果不一。本研究是对喉本体感觉外周成分的最新综述,包括目前对喉中典型和可能的替代本体感觉神经回路元件的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5c0/9998684/579070bc97a8/fnana-17-1114817-g0001.jpg

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