Department of Otolaryngology-Head and Neck Surgery, Kyoto Prefectural University of Medicine, Kyoto, 602-8566, Japan; Department of Otolaryngology, Graduate School of Medical Sciences, Kyushu University, Fukuoka, 812-5852, Japan.
Department of Otolaryngology-Head and Neck Surgery, Kyoto Prefectural University of Medicine, Kyoto, 602-8566, Japan.
Neurosci Res. 2022 Apr;177:64-77. doi: 10.1016/j.neures.2021.11.006. Epub 2021 Nov 19.
Oropharyngeal swallowing is centrally mediated by a swallowing central pattern generator (Sw-CPG) in the medulla oblongata. The activity of the Sw-CPG depends on the sensory inputs determined by physical and chemical bolus properties. Here we investigate the sensory-motor integration during swallowing arising from different sensory sources. To do so we electrically stimulated the superior laryngeal nerve and we triggered swallowing with oral injections of distilled water or capsaicin solution and extracellularly recorded from swallowing interneurons in arterially perfused brainstem preparations of rats. We recorded the activities of 40 neurons, while monitoring the motor activities of the phrenic, vagal and hypoglossal nerves. Eighteen neurons responded to electrical stimulation of the ipsilateral superior laryngeal nerve, and 6 neurons were excited by oral fluid injection, while 16 non-respiratory neurons did not receive afferent inputs to either electrical or physiological stimuli. The cellular activities displayed by swallowing interneurons during electrical and physiological stimulation of pharyngeal and laryngeal afferent input reveal complex adaptations of the timing of firing patterns and frequencies. The modulation of neuronal activity is likely to contribute to the coordination of efficient bolus transfer during the pharyngeal stage of swallowing.
口咽吞咽是由延髓中的吞咽中枢模式发生器(Sw-CPG)介导的。Sw-CPG 的活动取决于由物理和化学食团特性决定的感觉输入。在这里,我们研究了来自不同感觉源的吞咽时的感觉-运动整合。为此,我们电刺激了喉上神经,并通过口腔注射蒸馏水或辣椒素溶液来引发吞咽,同时从动脉灌注的大鼠脑干制备物中记录吞咽中间神经元的细胞外活动。我们记录了 40 个神经元的活动,同时监测膈神经、迷走神经和舌下神经的运动活动。18 个神经元对同侧喉上神经的电刺激有反应,6 个神经元对口腔液体注射有兴奋反应,而 16 个非呼吸神经元对电或生理刺激均无传入输入。在对咽和喉传入输入进行电刺激和生理刺激时,吞咽中间神经元的细胞活动显示出对发射模式和频率的时间的复杂适应。神经元活动的调制可能有助于协调吞咽咽期的有效食团转移。