Miolan J P, Roman C
J Physiol (Paris). 1978;74(8):709-23.
Our experiments were performed on dogs in which the central end of the left thoracic vagus had been sutured to the peripheral end of the left phrenic nerve. In such preparations, the activity of motor units of the re-innervated left hemidiaphragm indicated the activity of the vagal efferent fibres. After the left hemidiaphragm had been transformed into subcutaneous muscle, we studied, (using electromyography in the unanesthetized dog), the discharge of vagal fibres which originally supplied the lower oesophageal sphincter (cardia). The present paper only deals with fibres showing low frequency tonic discharge. 1. For some fibres (VIC type ; N = 42), the spontaneous firing rate (1.5 less than f less than 4.5 spikes/s) is suddenly enhanced just after the buccopharyngeal stage of swallowing (12 less than f less than 16 spikes/s). The this discharge stops abruptly just before the end of oesophageal peristalsis and starts again 2 to 3 seconds later at a low frequency (15 less than f less than 4.5 spikes/s). 2. Other fibres (VEC ; N = 18), which also have a slow discharge frequency (1 less than f less than 3 spikes/s) stop firing soon after the onset of swallowing and remain silent until the end of oesophageal peristalsis. At this time, i.e. when the bolus enters the stomach, the discharge starts again with an increased frequency (5 less than mean frequency less than 9 spikes/s). 3. The behaviour of the tonic vagal fibres during swallowing, as well as their low discharge frequency, strongly suggest that these fibres originally controlled the smooth muscle of the lower oesophageal sphincter and excited either an inhibitory (VIC = vagal inhibitory fibres of cardia) or an excitatory control (VEC = vagal excitatory fibres of cardia) upon this area.
我们的实验是在狗身上进行的,这些狗的左胸迷走神经中枢端已与左膈神经外周端缝合。在这样的制备中,重新支配的左半膈肌运动单位的活动表明迷走传出纤维的活动。在左半膈肌转变为皮下肌肉后,我们(在未麻醉的狗身上使用肌电图)研究了原本支配食管下括约肌(贲门)的迷走纤维的放电情况。本文仅涉及呈现低频紧张性放电的纤维。1. 对于一些纤维(VIC型;N = 42),自发放电频率(1.5<f<4.5次/秒)在吞咽的口咽期刚结束后突然增强(12<f<16次/秒)。这种放电在食管蠕动结束前突然停止,并在2至3秒后以低频(1.5<f<4.5次/秒)再次开始。2. 其他纤维(VEC;N = 18),其放电频率也较慢(1<f<3次/秒),在吞咽开始后不久停止放电,并在食管蠕动结束前一直保持沉默。此时,即当食团进入胃时,放电以增加的频率(5<平均频率<9次/秒)再次开始。3. 紧张性迷走纤维在吞咽过程中的行为及其低放电频率强烈表明,这些纤维原本控制食管下括约肌的平滑肌,并对该区域施加抑制性(VIC = 贲门迷走抑制性纤维)或兴奋性控制(VEC = 贲门迷走兴奋性纤维)。