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胃区刺激决定大鼠十二指肠运动的影响。

Stomach region stimulated determines effects on duodenal motility in rats.

机构信息

Department of Psychological Sciences, Purdue University, West Lafayette, Indiana.

Department of Biomedical Engineering, Purdue University, West Lafayette, Indiana.

出版信息

Am J Physiol Regul Integr Comp Physiol. 2021 Mar 1;320(3):R331-R341. doi: 10.1152/ajpregu.00111.2020. Epub 2021 Jan 20.

Abstract

Gastric electrical stimulation (GES) is used clinically to promote proximal GI emptying and motility. In acute experiments, we measured duodenal motor responses elicited by GES applied at 141 randomly chosen electrode sites on the stomach serosal surface. Overnight-fasted (HO available) anesthetized male rats ( = 81) received intermittent biphasic GES for 5 min (20-s-on/40-s-off cycles; I = 0.3 mA; pw = 0.2 ms; 10 Hz). A strain gauge on the serosal surface of the proximal duodenum of each animal was used to evaluate baseline motor activity and the effect of GES. Using ratios of time blocks compared with a 15-min prestimulation baseline, we evaluated the effects of the 5-min stimulation on concurrent activity, on the 10 min immediately after the stimulation, and on the 15-min period beginning with the onset of stimulation. We mapped the magnitude of the duodenal response (three different motility indices) elicited from the 141 stomach sites. Post hoc electrode site maps associated with duodenal responses suggested three zones similar to the classic regions of forestomach, corpus, and antrum. Maximal excitatory duodenal motor responses were elicited from forestomach sites, whereas inhibitory responses occurred with stimulation of the corpus. Moderate excitatory duodenal responses occurred with stimulation of the antrum. Complex, weak inhibitory/excitatory responses were produced by stimulation at boundaries between stomach regions. Patterns of GES efficacies coincided with distributions of previously mapped vagal afferents, suggesting that excitation of the duodenum is strongest when GES electrodes are situated over stomach concentrations of vagal intramuscular arrays, putative stretch receptors in the muscle wall.

摘要

胃电刺激(GES)临床上用于促进近端胃肠道排空和运动。在急性实验中,我们测量了胃浆膜表面 141 个随机选择的电极部位施加 GES 时引起的十二指肠运动反应。经过一夜禁食(HO 可用)的麻醉雄性大鼠(=81 只)接受间歇性双相 GES 刺激 5 分钟(20 秒 ON/40 秒 OFF 周期;I=0.3 mA;pw=0.2 ms;10 Hz)。每个动物浆膜表面的近端十二指肠上的应变计用于评估基线运动活动和 GES 的影响。使用与 15 分钟预刺激基线相比的时间块比值,我们评估了 5 分钟刺激对同期活动的影响、刺激后立即的 10 分钟影响以及刺激开始时的 15 分钟影响。我们绘制了从 141 个胃部位引起的十二指肠反应(三个不同的运动指数)的幅度图。与十二指肠反应相关的事后电极部位图表明存在三个类似于前胃、胃体和胃窦的经典区域的区域。最大兴奋性十二指肠运动反应是从前胃部位刺激引起的,而胃体刺激则产生抑制性反应。刺激胃窦时会产生中度兴奋性十二指肠反应。在胃区域之间的边界处刺激会产生复杂、微弱的抑制/兴奋反应。GES 功效的模式与先前映射的迷走传入神经的分布一致,表明当 GES 电极位于迷走神经肌内丛的胃浓度上时,对十二指肠的兴奋最强,迷走神经肌内丛是肌肉壁中的推定牵张感受器。

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