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鬃狮蜥脊髓投射的脑干起源

Brain stem origins of spinal projections in the lizard Tupinambis nigropunctatus.

作者信息

Cruce W L, Newman D B

出版信息

J Comp Neurol. 1981 May 10;198(2):185-207. doi: 10.1002/cne.901980202.

Abstract

In order to study brainstem origins of spinal projections, ten Tegu lizards (Tupinambis nigropunctatus) received complete or partial hemisections of the spinal cord at the first or second cervical segment. Their brains were processed for conventional Nissl staining. The sections were surveyed for the presence or absence of retrograde chromatolysis. Based on analysis and comparison of results from lesions in the various spinal cord funiculi, the following conclusions were reached: The interstitial nucleus projects ipsilaterally to the spinal cord via the medial longitudinal fasciculus, as does the middle reticular field of the metencephalon. The red nucleus and dorsal vagal motor nucleus both project contralaterally to the spinal cord via the dorsal part of the lateral funiculus. The superior reticular field in the rostral metencephalon and the ventrolateral vestibular nucleus project ipsilaterally to the spinal cord via the ventral funiculus. The dorsolateral metencephalic nucleus and the ventral part of the inferior reticular nucleus of the myelencephalon both project ipsilaterally to the spinal cord via the dorsal part of the lateral funiculus. Several brainstem nuclei in Tupinambis project bilaterally to the spinal cord. The ventrolateral metencephalic nucleus, for example, projects ipsilaterally to the cord via the medial longitudinal fasciculus and contralaterally via the dorsal part of the lateral funiculus. The dorsal part of the inferior reticular nucleus projects bilaterally to the spinal cord via the dorsal part of the lateral funiculus. The nucleus solitarius complex projects contralaterally via the dorsal part of the lateral funiculus but ipsilaterally via the middle of the lateral funiculus. The inferior raphe nucleus projects bilaterally to the spinal cord via the middle part of the lateral funiculus. These data suggest that supraspinal projections in reptiles, especially reticulospinal systems, are more highly differentiated than previously thought. On the other hand, recent findings in cat, opossum, and monkey reveal that the organization of supraspinal pathways in the Tegu lizard bears a striking resemblance to that observed in mammals.

摘要

为了研究脊髓投射的脑干起源,对10只泰加蜥蜴(黑斑泰加蜥)在第一或第二颈椎节段进行了脊髓全横切或部分横切。对它们的大脑进行常规尼氏染色处理。检查切片中是否存在逆行性染色质溶解。基于对不同脊髓索损伤结果的分析和比较,得出以下结论:间质核通过内侧纵束同侧投射到脊髓,后脑的中间网状区也是如此。红核和迷走神经背运动核都通过外侧索的背侧部分对侧投射到脊髓。延髓前部的上网状区和腹外侧前庭核通过腹侧索同侧投射到脊髓。延髓背外侧核和延髓下部网状核的腹侧部分都通过外侧索的背侧部分同侧投射到脊髓。泰加蜥的几个脑干核双向投射到脊髓。例如,延髓腹外侧核通过内侧纵束同侧投射到脊髓,通过外侧索的背侧部分对侧投射。延髓下部网状核的背侧部分通过外侧索的背侧部分双向投射到脊髓。孤束核复合体通过外侧索的背侧部分对侧投射,但通过外侧索的中部同侧投射。中缝核下部通过外侧索的中部双向投射到脊髓。这些数据表明,爬行动物的脊髓上投射,尤其是网状脊髓系统,比以前认为的分化程度更高。另一方面,最近在猫、负鼠和猴子身上的发现表明,泰加蜥蜴的脊髓上通路组织与在哺乳动物中观察到的惊人相似。

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