Vogalis F, Ward S M, Sanders K M
Department of Physiology, University of Nevada, School of Medicine, Reno 89557.
Am J Physiol. 1991 Mar;260(3 Pt 1):G390-8. doi: 10.1152/ajpgi.1991.260.3.G390.
Electrical slow waves decay in amplitude as they conduct from the myenteric to the submucosal regions of the circular muscle layer in the canine pyloric sphincter. We used the partitioned chamber method to study the passive and active properties of pyloric muscles, and we found that length constants of circular muscles of myenteric region were significantly longer than muscles near the submucosal surface. These data suggested differences in either membrane resistance, junctional resistance, or cytoplasmic resistance. The first parameter was evaluated by measuring time constants in intact tissues and single cells isolated from the submucosal and myenteric regions. Membrane time constants were not different in the two regions, nor were differences found in the input resistances of isolated cells. Morphological studies failed to demonstrate differences in cell diameters in the two regions suggesting that cytoplasmic resistances are similar. These findings suggest that the different cable properties in the two regions may be due to differences in electrical coupling. Morphological examination revealed similar numbers of gap junctions between cells in the two regions, but large differences were noted in the size of muscular bundles. Muscles of the myenteric region were arranged into large, tightly packed bundles, whereas muscles of the submucosal region consisted of small bundles with an extensive extracellular space filled with connective tissue. We suggest that the difference in cable properties may be due to differences in electrical coupling between bundles. These data suggest that submucosal muscles function more like a multiunit smooth muscle, whereas myenteric muscles behave as a single unit.
电慢波在从犬幽门括约肌环形肌层的肌间区域传导至黏膜下区域时,其振幅会衰减。我们采用分隔腔室法研究幽门肌的被动和主动特性,发现肌间区域环形肌的长度常数显著长于黏膜下表面附近的肌肉。这些数据表明在膜电阻、连接电阻或细胞质电阻方面存在差异。通过测量完整组织以及从黏膜下和肌间区域分离出的单个细胞的时间常数来评估第一个参数。两个区域的膜时间常数没有差异,分离细胞的输入电阻也未发现差异。形态学研究未能证明两个区域细胞直径存在差异,这表明细胞质电阻相似。这些发现表明两个区域不同的电缆特性可能是由于电耦合的差异。形态学检查显示两个区域细胞间的缝隙连接数量相似,但在肌束大小方面存在很大差异。肌间区域的肌肉排列成大的、紧密排列的肌束,而黏膜下区域的肌肉由小肌束组成,有大量充满结缔组织的细胞外间隙。我们认为电缆特性的差异可能是由于肌束间电耦合的差异。这些数据表明黏膜下肌肉的功能更类似于多单位平滑肌,而肌间肌肉表现为一个单一单位。