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猕猴(食蟹猴)角膜传入神经元的中枢投射和三叉神经节位置

Central projections and trigeminal ganglion location of corneal afferent neurons in the monkey, Macaca fascicularis.

作者信息

Marfurt C F, Echtenkamp S F

机构信息

Department of Anatomy, Northwest Center for Medical Education, Indiana University School of Medicine, Gary 46408.

出版信息

J Comp Neurol. 1988 Jun 15;272(3):370-82. doi: 10.1002/cne.902720307.

Abstract

The method of transganglionic transport of horseradish peroxidase-wheat germ agglutinin conjugate (HRP-WGA) was used to determine the location within the monkey trigeminal ganglion of the primary afferent neurons that innervate the cornea, and the brainstem and spinal cord termination sites of these cells. In each of four animals. Gelfoam pledgets were saturated with 2% HRP-WGA in saline and applied to the scratched surface of the central cornea for 30 minutes. Postmortem examination of the corneal whole mounts revealed that the tracer solution remained confined to approximately the central one-fourth of the cornea with no spread into the peripheral cornea or limbus. Seventy-two to 96 hours after tracer application, 126-242 labeled cell bodies were observed in the medial region of the ipsilateral trigeminal ganglion. The majority of neurons were concentrated in an area of the ganglion that lay directly caudal to the entering fibers of the ophthalmic nerve, but smaller numbers of cells lay somewhat more laterally, near the region where the ophthalmic and maxillary nerves come together. A very small number of neurons in one animal innervated the cornea by sending their fibers into the maxillary nerve. HRP-WGA-labeled terminal fields were present to some extent in all four major rostrocaudal subdivisions of the ipsilateral trigeminal brainstem nuclear complex (TBNC), but the size of the terminal fields and the intensity of labeling differed markedly from one level of the TBNC to the next. Labeled fibers projected heavily to the transitional zone between caudal pars interpolaris and rostral pars caudalis (i.e., the "periobex" region of the TBNC) and moderately to the trigeminal main sensory nucleus, pars oralis, and caudal pars caudalis at the level of the pyramidal decussation. Remaining areas of the TBNC, including rostral pars interpolaris and the midlevel of pars caudalis, received few, if any, corneal afferent projections. Occasional labeled fibers were observed in the dorsal horn of C1 and in the rostral half of C2. It is hoped that data generated in the current investigation of nonhuman primates will contribute to a better understanding of the neural substrates that subserve corneal sensation and the blink reflex in humans.

摘要

采用辣根过氧化物酶-小麦胚凝集素复合物(HRP-WGA)跨神经节运输法,来确定支配角膜的初级传入神经元在猴三叉神经节内的位置,以及这些细胞在脑干和脊髓的终末部位。在四只动物中,将明胶海绵小块用含2% HRP-WGA的生理盐水浸湿,敷于中央角膜的划痕表面30分钟。对角膜全层标本进行尸检发现,示踪剂溶液局限于角膜中央约四分之一区域,未扩散至周边角膜或角膜缘。施加示踪剂72至96小时后,在同侧三叉神经节内侧区域观察到126 - 242个标记的细胞体。大多数神经元集中在神经节内直接位于眼神经传入纤维尾侧的区域,但也有少量细胞位于更外侧,靠近眼神经与上颌神经交汇的区域。在一只动物中,极少数神经元通过将其纤维送入上颌神经来支配角膜。HRP-WGA标记的终末场所在同侧三叉神经脑干核复合体(TBNC)的所有四个主要的头端到尾端亚区均有一定程度的存在,但终末场的大小和标记强度在TBNC的不同水平之间存在显著差异。标记纤维大量投射到极间部尾侧与尾侧部头端之间的过渡区(即TBNC的“围口部”区域),并适度投射到三叉神经主感觉核、口部亚核以及锥体交叉水平的尾侧部尾侧亚核。TBNC的其余区域,包括极间部头端和尾侧部中部,即使有也很少接受角膜传入投射。在C1背角和C2头半部分偶尔观察到标记纤维。希望当前对非人灵长类动物的研究数据将有助于更好地理解人类中服务于角膜感觉和眨眼反射的神经基质。

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