Shiba Keisuke, Nakazawa Ken, Ono Kenichi, Umezaki Toshiro
Department of Otolaryngology, Graduate School of Medicine, Chiba University, Chiba City, Chiba 260-8670, Japan.
J Neurosci. 2007 May 9;27(19):5156-62. doi: 10.1523/JNEUROSCI.0001-07.2007.
To examine whether motor commands of two or more distinct laryngeal motor patterns converge onto a common premotor network, we conducted dual recordings from the laryngeal adductor motoneuron and its premotor neuron within the brainstem respiratory circuitry during fictive breathing, coughing, sneezing, and swallowing in decerebrate paralyzed cats. Expiratory neurons with an augmenting firing pattern (EAUG), whose action potentials evoked monosynaptic IPSPs in the adductor motoneurons, sharply fired during the expulsive phases of fictive coughing and sneezing, during which the adductor motoneurons transiently repolarized. In contrast, these premotor neurons were silent during the swallow-related hyperpolarization in adductor motoneurons. These results show that one class of medullary respiratory neuron, EAUG, is multifunctional and shared among the central pattern generators (CPGs) for breathing, coughing, and sneezing. In addition, although the CPGs underlying these three behaviors and the swallowing CPG do overlap, EAUG neurons are not part of the swallowing CPG and, in contrast to the other three behaviors, are not a source of inhibitory input to adductor motoneurons during swallowing.
为了研究两种或更多不同喉运动模式的运动指令是否汇聚到一个共同的运动前网络,我们在去大脑瘫痪猫的假呼吸、咳嗽、打喷嚏和吞咽过程中,对脑干呼吸回路中的喉内收运动神经元及其运动前神经元进行了双记录。具有增强放电模式(EAUG)的呼气神经元,其动作电位在运动神经元中诱发单突触抑制性突触后电位(IPSPs),在假咳嗽和打喷嚏的呼气阶段急剧放电,在此期间内收运动神经元短暂复极化。相比之下,这些运动前神经元在内收运动神经元与吞咽相关的超极化期间保持沉默。这些结果表明,一类延髓呼吸神经元EAUG具有多功能性,并且在呼吸、咳嗽和打喷嚏的中枢模式发生器(CPG)中共享。此外,尽管这三种行为的CPG与吞咽CPG确实重叠,但EAUG神经元不是吞咽CPG的一部分,与其他三种行为相反,在吞咽过程中不是内收运动神经元抑制性输入的来源。