Bolser Donald C, Pitts Teresa E, Davenport Paul W, Morris Kendall F
Department of Physiological Sciences, College of Veterinary Medicine, University of Florida, Gainesville, FL 32610-0144, USA.
Department of Neurological Surgery, Kentucky Spinal Cord Injury Research Center, University of Louisville, Louisville, KY 40202, USA.
Pulm Pharmacol Ther. 2015 Dec;35:105-10. doi: 10.1016/j.pupt.2015.10.012. Epub 2015 Nov 5.
The dorsal medulla encompassing the nucleus of the tractus solitarius (NTS) and surrounding reticular formation (RF) has an important role in processing sensory information from the upper and lower airways for the generation and control of airway protective behaviors. These behaviors, such as cough and swallow, historically have been studied in isolation. However, recent information indicates that these and other airway protective behaviors are coordinated to minimize risk of aspiration. The dorsal medullary neural circuits that include the NTS are responsible for rhythmogenesis for repetitive swallowing, but previous models have assigned a role for this portion of the network for coughing that is restricted to monosynaptic sensory processing. We propose a more complex NTS/RF circuit that controls expression of swallowing and coughing and the coordination of these behaviors. The proposed circuit is supported by recordings of activity patterns of selected neural elements in vivo and simulations of a computational model of the brainstem circuit for breathing, coughing, and swallowing. This circuit includes separate rhythmic sub-circuits for all three behaviors. The revised NTS/RF circuit can account for the mode of action of antitussive drugs on the cough motor pattern, as well as the unique coordination of cough and swallow by a meta-behavioral control system for airway protection.
延髓背侧包含孤束核(NTS)和周围的网状结构(RF),在处理来自上、下呼吸道的感觉信息以产生和控制气道保护行为方面发挥着重要作用。这些行为,如咳嗽和吞咽,以往一直是单独进行研究的。然而,最近的信息表明,这些以及其他气道保护行为是相互协调的,以将误吸风险降至最低。包括NTS在内的延髓背侧神经回路负责重复性吞咽的节律产生,但之前的模型认为该网络部分在咳嗽中的作用仅限于单突触感觉处理。我们提出了一个更复杂的NTS/RF回路,它控制吞咽和咳嗽的表达以及这些行为的协调。所提出的回路得到了体内选定神经元件活动模式记录以及呼吸、咳嗽和吞咽脑干回路计算模型模拟的支持。该回路包括这三种行为各自独立的节律性子回路。修订后的NTS/RF回路可以解释镇咳药物对咳嗽运动模式的作用方式,以及气道保护元行为控制系统对咳嗽和吞咽的独特协调。