Baekey David M, Morris Kendall F, Nuding Sarah C, Segers Lauren S, Lindsey Bruce G, Shannon Roger
Department of Physiology and Biophysics, University of South Florida Health Sciences Center, Tampa 33612-4799, USA.
J Appl Physiol (1985). 2003 Jan;94(1):93-100. doi: 10.1152/japplphysiol.00341.2002.
Chemical lesions in the medullary raphe nuclei region influence cough. This study examined whether firing patterns of caudal medullary midline neurons were altered during cough. Extracellular neuron activity was recorded with microelectrode arrays in decerebrated, neuromuscular-blocked, ventilated cats. Cough-like motor patterns (fictive cough) in phrenic and lumbar nerves were elicited by mechanical stimulation of the intrathoracic trachea. Discharge patterns of respiratory and nonrespiratory-modulated neurons were altered during cough cycles (58/133); 45 increased and 13 decreased activity. Fourteen cells changed firing rate during the inspiratory and/or expiratory phases of cough. Altered patterns in 43 cells were associated with the duration of, or extended beyond, the cough episodes. The different response categories suggest that multiple factors influence the discharge patterns during coughing: e.g., respiratory-modulated and tonic inputs and intrinsic connections. These results suggest involvement of midline neurons (i.e., raphe nuclei) in the cough reflex.
延髓中缝核区域的化学损伤会影响咳嗽。本研究检测了咳嗽过程中延髓尾部中线神经元的放电模式是否发生改变。在去大脑、神经肌肉阻断、通气的猫中,用微电极阵列记录细胞外神经元活动。通过机械刺激胸段气管诱发膈神经和腰神经中的类咳嗽运动模式(模拟咳嗽)。在咳嗽周期中,呼吸和非呼吸调制神经元的放电模式发生改变(133个中有58个);45个活动增加,13个活动减少。14个细胞在咳嗽的吸气和/或呼气阶段放电频率发生变化。43个细胞的放电模式改变与咳嗽发作的持续时间有关,或超出咳嗽发作时间。不同的反应类别表明,多种因素影响咳嗽时的放电模式:例如,呼吸调制和紧张性输入以及内在联系。这些结果表明中线神经元(即中缝核)参与咳嗽反射。