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同步电刺激增强胃窦收缩和迷走神经传入信号。

Enhancement of antral contractions and vagal afferent signaling with synchronized electrical stimulation.

作者信息

Peles Shachar, Petersen Jaime, Aviv Ricardo, Policker Shai, Abu-Hatoum Ossama, Ben-Haim Shlomo A, Gutterman David D, Sengupta Jyoti N

机构信息

Cardiovascular Research Center, Medical College of Wisconsin, Milwaukee, WI 53226, USA.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2003 Sep;285(3):G577-85. doi: 10.1152/ajpgi.00109.2003. Epub 2003 Jun 11.

Abstract

Gastric filling activates vagal afferents involved in peripheral signaling to the central nervous system (CNS) for food intake. It is not known whether these afferents linearly encode increasing contractions of the antrum during antral distension (AD). The aim of this study was to investigate effects of AD and electrically enhanced antral contractions on responses of vagal afferents innervating the antrum. Single-fiber recordings were made from the vagal afferents in anesthetized male Long-Evans rats. Antral contractions were measured with a solid-state probe placed in the antrum. A nonexcitatory electrical stimulation (NES) inducing no smooth muscle contractions was applied during the ascending phase of antral contractions to enhance subsequent antral contractions. Fifty-six fibers identified during AD (1 ml for 30 s) were studied through different types of mechanical stimuli. Under normal conditions, one group of fibers exhibited rhythmic firing in phase with antral contractions. Another group of fibers had nonrhythmic spontaneous firing. Responses of 15 fibers were tested with NES during multiple-step distension (MSD). NES produced a mean increase in antral contraction amplitude (177.1 +/- 35.3%) and vagal afferent firing (21.6 +/- 2.6%). Results show that both passive distension and enhanced antral contractions activate distension-sensitive vagal afferents. Responses of these fibers increase linearly to enhanced antral contraction induced by NES or MSD up to a distending volume of 0.6 ml. However, responses reached a plateau at a distending volume >0.8 ml. We concluded that enhanced contraction of the antrum can activate vagal afferents signaling to the CNS.

摘要

胃充盈会激活迷走传入神经,这些神经参与向中枢神经系统(CNS)传递有关食物摄入的外周信号。目前尚不清楚这些传入神经在胃窦扩张(AD)期间是否会线性编码胃窦收缩的增强。本研究的目的是探讨胃窦扩张和电增强胃窦收缩对支配胃窦的迷走传入神经反应的影响。在麻醉的雄性Long-Evans大鼠身上对迷走传入神经进行单纤维记录。用置于胃窦的固态探头测量胃窦收缩。在胃窦收缩的上升期施加不引起平滑肌收缩的非兴奋性电刺激(NES),以增强随后的胃窦收缩。通过不同类型的机械刺激研究了在胃窦扩张(1ml,持续30秒)期间识别出的56根纤维。在正常情况下,一组纤维与胃窦收缩同步呈现节律性放电。另一组纤维有非节律性自发放电。在多次阶梯式扩张(MSD)期间,用NES测试了15根纤维的反应。NES使胃窦收缩幅度平均增加(177.1±35.3%),迷走传入神经放电增加(21.6±2.6%)。结果表明,被动扩张和增强的胃窦收缩均可激活对扩张敏感的迷走传入神经。这些纤维的反应随着NES或MSD诱导的胃窦收缩增强而线性增加,直至扩张体积达到0.6ml。然而,当扩张体积>0.8ml时,反应达到平台期。我们得出结论,胃窦收缩增强可激活向CNS发出信号的迷走传入神经。

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