Division of Dysphagia Rehabilitation, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.
Department of Oral Diagnosis, Faculty of Dentistry, Naresuan University, Phitsanulok, Thailand.
J Oral Rehabil. 2023 Nov;50(11):1270-1278. doi: 10.1111/joor.13537. Epub 2023 Jun 25.
Chewing and licking are primarily activated by central pattern generator (CPG) neuronal circuits in the brainstem and when activated trigger repetitive rhythmic orofacial movements such as chewing, licking and swallowing. These CPGs are reported to modulate orofacial reflex responses in functions such as chewing.
This study explored the modulation of reflex responses in the anterior and posterior bellies (ant-Dig and post-Dig, respectively) of the digastric muscle evoked by low-intensity trigeminal stimulation in conscious rats.
The ant-Dig and post-Dig reflexes were evoked by using low-intensity electrical stimulation applied to either the right or left inferior alveolar nerve. Peak-to-peak amplitudes and onset latencies were measured.
No difference was observed between threshold and onset latency for evoking ant-Dig and post-Dig reflexes, suggesting that the latter was also evoked disynaptically. The peak-to-peak amplitude of both reflexes was significantly reduced during chewing, licking and swallowing as compared to resting period and was lowest during the jaw-closing phase of chewing and licking. Onset latency was significantly largest during the jaw-closing phase. Inhibitory level was similar between the ant-Dig and post-Dig reflex responses and between the ipsilateral and contralateral sides.
These results suggest that both the ant-Dig and post-Dig reflex responses were significantly inhibited, probably due to CPG activation during feeding behaviours to maintain coordination of jaw and hyoid movements and hence ensure smooth feeding mechanics.
咀嚼和舔舐主要由脑干中的中枢模式发生器 (CPG) 神经元回路激活,当被激活时,会引发咀嚼、舔舐和吞咽等重复的节律性面运动。据报道,这些 CPG 会调节咀嚼等功能中的面反射反应。
本研究旨在探索在清醒大鼠中,通过低强度三叉神经刺激诱发的二腹肌前腹(ant-Dig)和后腹(post-Dig)反射反应的反射反应的调制。
通过对右侧或左侧下颌下神经施加低强度电刺激来诱发 ant-Dig 和 post-Dig 反射。测量峰值到峰值幅度和起始潜伏期。
引发 ant-Dig 和 post-Dig 反射的阈值和起始潜伏期之间没有差异,表明后者也是双突触诱发的。与休息期相比,咀嚼、舔舐和吞咽期间,两种反射的峰值到峰值幅度均显著降低,在咀嚼和舔舐的下颌闭合阶段最低。起始潜伏期在下颌闭合阶段最大。ant-Dig 和 post-Dig 反射反应之间以及同侧和对侧之间的抑制水平相似。
这些结果表明,ant-Dig 和 post-Dig 反射反应均受到显著抑制,可能是由于进食行为期间 CPG 的激活,以维持下颌和舌骨运动的协调,从而确保顺畅的进食力学。