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Splanchnic slowly adapting mechanoreceptors with punctate receptive fields in the mesentery and gastrointestinal tract of the cat

机译:内脏缓慢适应机械感受器与猫的肠系膜和胃肠道中的点状感受野

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摘要

1. A class of slowly adapting mechanoreceptors with A-delta and C fibres running in the splanchnic nerves of cats is described.2. The mechanoreceptors have punctate regions of mechanical sensitivity at macroscopic vascular branching points and have been found in the lesser omentum, the mesentery of the gall-bladder, porta hepatis, portal vein, pancreas, spleen and the duodenum, jejunum, ileum, colon and their mesenteries.3. The receptive fields of these mechanoreceptors vary considerably in size in the different regions. The largest receptive fields were found in the small intestinal mesentery and consisted of up to seven points of mechanical sensitivity at vascular divisions, each separated by distances of a few up to about 40 mm. The smallest receptive fields were single or double points of mechanical sensitivity which were most commonly found in relation to the portal vein in the root of the mesentery.4. Maintained stretch of the receptive field elicited a train of impulses which had phasic and tonic components. The tonic discharge was sometimes maintained for more than 1 min.5. Distension of a neighbouring viscus often caused a discharge which had a phasic component and a variable tonic component. The occurrence of the latter appeared to depend on the relative positions of the bowel and mesentery, and was probably associated with a change in tension on the mesentery.6. Occlusion of the portal vein resulted in some units in a discharge which began soon after the start of the occlusion.7. The receptors do not appear to be affected by acid, hypoxia or hypercapnia.
机译:1.描述了一类在猫的内脏神经中运行的具有A-δ和C纤维的慢适应机械感受器。机械感受器在宏观的血管分支点处具有机械敏感的点状区域,并且在小网膜,胆囊的肠系膜,肝门,肠门静脉,胰腺,脾和十二指肠,空肠,回肠,结肠和它们的十二指肠中发现。肠系膜3。这些机械感受器的感受野在不同区域的大小差异很大。在小肠系膜中发现了最大的接受区域,由最多七个在血管分裂处的机械敏感性点组成,每个点之间的距离最大可达约40 mm。最小的感受野是机械敏感性的单点或双点,最常见于肠系膜根部的门静脉。4。感受野的持续伸展引发了一连串具有相位和张力成分的冲动。进补有时会维持1分钟以上5。相邻内脏的扩张通常会引起放电,该放电具有相位成分和可变的补品成分。后者的出现似乎取决于肠和肠系膜的相对位置,并且可能与肠系膜张力的变化有关。6。门静脉的闭塞导致某些单位的放电开始于闭塞开始后7。受体似乎不受酸,低氧或高碳酸血症的影响。

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