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大鼠十二指肠的迷走神经支配

Vagal innervation of the rat duodenum.

作者信息

Zhang X, Renehan W E, Fogel R

机构信息

Neurogastroenterology Laboratory, Division of Gastroenterology, Henry Ford Hospital, 2799 W. Grand Blvd., Detroit, MI 48202, USA.

出版信息

J Auton Nerv Syst. 2000 Feb 14;79(1):8-18. doi: 10.1016/s0165-1838(99)00093-4.

Abstract

Electrophysiologic and anterograde tract tracing studies have demonstrated that the vagus nerve innervates the duodenum. These studies, however, have provided little information regarding the finer anatomic topography within the vagal complex. In this study, the retrograde neuronal tracers WGA-HRP or DiI, applied to the duodenum, were used to characterize the vagal afferent and efferent innervation of this portion of the gastrointestinal tract. This approach labeled a substantial number of motor neurons in both the medial and lateral columns of the dorsal motor nucleus of the vagus (DMNV). Vagal motor neurons innervating the duodenum were seen across the medial-lateral extent of the DMNV and between 600 microm rostral to obex and 1600 microm caudal to obex. The three branches of the vagus nerve contained efferent fibers to the duodenum. The gastric branch of the vagus nerve was the pathway that connected the majority of DMNV neurons with the duodenum. These neurons were located in the medial and middle thirds of the DMNV. The celiac branch to the duodenum was composed of axons from the majority of lateral column neurons but also contained axons from neurons in the medial column. The hepatic branch of the vagus nerve contained only a small number of cell axons. Some neurons were located medially whereas others were in the lateral third of the duodenum. Although central terminations of vagal primary afferents from the duodenum were not found in previous tract tracing studies, we observed a large number of terminals in the subpostremal/commissural region of the nucleus of the solitary tract. Similar to the motor fibers, most afferent fibers from the duodenum were located in the gastric branch of the vagus nerve, although the hepatic and celiac branches also contained afferent neurons. These results demonstrate that the vagal innervation of the duodenum is unique, being an amalgam of what would be expected following labeling of more proximal and distal portions of the GI tract. The uniqueness of the sensory and motor innervation to the duodenum has implications for hypotheses regarding the organization of vagovagal reflexes controlling gastrointestinal function.

摘要

电生理和顺行束路追踪研究表明,迷走神经支配十二指肠。然而,这些研究几乎没有提供关于迷走神经复合体内部更精细解剖结构的信息。在本研究中,将逆行神经元示踪剂WGA-HRP或DiI应用于十二指肠,以表征胃肠道这一部分的迷走神经传入和传出神经支配。这种方法标记了迷走神经背运动核(DMNV)内侧柱和外侧柱中的大量运动神经元。在内侧-外侧范围内以及从闩部向前600微米至向后1600微米之间,均可看到支配十二指肠的迷走运动神经元。迷走神经的三个分支均含有至十二指肠的传出纤维。迷走神经的胃支是连接大多数DMNV神经元与十二指肠的途径。这些神经元位于DMNV的内侧和中间三分之一处。至十二指肠的腹腔支由大多数外侧柱神经元的轴突组成,但也包含内侧柱神经元的轴突。迷走神经的肝支仅含有少量细胞轴突。一些神经元位于内侧,而另一些位于十二指肠的外侧三分之一处。尽管在先前的束路追踪研究中未发现来自十二指肠的迷走神经初级传入纤维的中枢终末,但我们在孤束核的最后区/连合区观察到大量终末。与运动纤维相似,来自十二指肠的大多数传入纤维位于迷走神经的胃支中,尽管肝支和腹腔支也含有传入神经元。这些结果表明,十二指肠的迷走神经支配是独特的,是胃肠道更近端和更远端部分标记后预期情况的混合体。十二指肠感觉和运动神经支配的独特性对关于控制胃肠功能的迷走-迷走反射组织的假说具有启示意义。

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