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Brainstem circuits regulating gastric function.

机译:脑干回路调节胃功能。

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Brainstem parasympathetic circuits that modulate digestive functions of the stomach are comprised of afferent vagal fibers, neurons of the nucleus tractus solitarius (NTS), and the efferent fibers originating in the dorsal motor nucleus of the vagus (DMV). A large body of evidence has shown that neuronal communications between the NTS and the DMV are plastic and are regulated by the presence of a variety of neurotransmitters and circulating hormones as well as the presence, or absence, of afferent input to the NTS. These data suggest that descending central nervous system inputs as well as hormonal and afferent feedback resulting from the digestive process can powerfully regulate vago-vagal reflex sensitivity. This paper first reviews the essential "static" organization and function of vago-vagal gastric control neurocircuitry. We then present data on the opioidergic modulation of NTS connections with the DMV as an example of the "gating" of these reflexes, i.e., how neurotransmitters, hormones, and vagal afferent traffic can make an otherwise static autonomic reflex highly plastic.
机译:调节胃消化功能的脑干副交感神经回路由迷走神经传入纤维,孤束核神经元(NTS)和起源于迷走神经背运动核(DMV)的传入纤维组成。大量证据表明,NTS和DMV之间的神经元通讯是可塑性的,并受多种神经递质和循环激素的存在以及是否存在NTS传入输入的调节。这些数据表明,中枢神经系统的输入下降以及消化过程产生的激素和传入反馈可以有效调节迷走神经反射敏感性。本文首先回顾了迷走神经-迷走神经胃控制神经回路的基本“静态”组织和功能。然后,我们以DMV的“门控”为例,介绍NTS与DMV连接的眼皮调制的数据,即神经递质,激素和迷走神经传入交通如何使原本静态的自主反射具有很高的可塑性。

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