Clerc N, Condamin M
Laboratoire de Neurobiologie-C.N.R.S. E1 Neurobiologie de l'Intéroception, Marseille, France.
Brain Res. 1987 Oct 27;424(2):216-24. doi: 10.1016/0006-8993(87)91464-8.
Wheat germ agglutinin-horseradish peroxidase conjugate (WGA-HRP) injected into the nodose ganglion was anterogradely transported into the vagal sensory terminal fibers that were further visualized in the lower esophageal sphincter (LES) of the cat. The distribution pattern of the labeled fibers in the LES wall was investigated. All the labeled fibers came from the serosa and penetrated between the bundles of longitudinal muscle fibers. Then the labeled fibers took two different pathways: they either ran, and probably ended, between the longitudinal and circular muscle layers, or they ran directly from the longitudinal to the circular muscle layer. Between the longitudinal and circular muscle layers, they followed a sinuous pathway. In contrast, when they crossed the circular muscle layer toward the mucosa, they ran perpendicular to the orientation of the muscle fibers. After having entered the mucosa, they became twisted and penetrated deeply into the epithelium. These two populations of vagal sensory labeled fibers might correspond respectively to the muscular and mucosal receptors classically described in previous electrophysiological studies.
将小麦胚凝集素-辣根过氧化物酶复合物(WGA-HRP)注入结状神经节,可被顺行运输至迷走感觉终末纤维,这些纤维在猫的食管下括约肌(LES)中可进一步显影。研究了LES壁中标记纤维的分布模式。所有标记纤维均来自浆膜,并穿入纵行肌纤维束之间。然后,标记纤维采取两种不同的途径:它们要么在纵行肌层和环行肌层之间走行,并可能终止于此,要么直接从纵行肌层走向环行肌层。在纵行肌层和环行肌层之间,它们呈蜿蜒路径走行。相反,当它们穿过环行肌层朝向黏膜时,它们垂直于肌纤维的方向走行。进入黏膜后,它们变得扭曲并深深穿透上皮。这两类迷走感觉标记纤维可能分别对应于先前电生理研究中经典描述的肌肉和黏膜感受器。