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大鼠中缝脊髓和网状脊髓轴突至舌下神经核的侧支。

Raphespinal and reticulospinal axon collaterals to the hypoglossal nucleus in the rat.

作者信息

Manaker S, Tischler L J, Morrison A R

机构信息

Pulmonary and Critical Care Division, School of Veterinary Medicine, University of Pennsylvania, Philadelphia 19104.

出版信息

J Comp Neurol. 1992 Aug 1;322(1):68-78. doi: 10.1002/cne.903220106.

Abstract

Neurons in the medial tegmental field project directly to spinal somatic motoneurons and to cranial motoneuron pools such as the hypoglossal nucleus. The axons of these neurons may be highly collateralized, projecting to multiple levels of the spinal cord and to many diverse regions at different levels of the neuraxis. We employed a double fluorescent retrograde tracer technique to examine whether medial tegmental neurons that project to the spinal cord also project to the hypoglossal nucleus. Injections of Diamidino Yellow into the hypoglossal nucleus and Fast Blue into the spinal cord produced large numbers of double labeled neurons in the medial tegmental field, particularly in the caudal raphe nuclei and adjacent ventromedial reticular formation. In these structures the number of neurons projecting to both the hypoglossal nucleus and the spinal cord was equivalent to the number of neurons projecting to multiple levels of the spinal cord observed in control animals. Fewer neurons projecting to both the hypoglossal nucleus and the spinal cord were observed in several other nuclei and subregions of the medial tegmental field, while almost no such neurons were observed in the lateral tegmental field or other pontomedullary structures. These results demonstrate that neurons of the caudal raphe nuclei and adjacent ventromedial reticular formation project to both the spinal cord and the hypoglossal nucleus, and support the concept that the diffuse projections to motoneuron pools from the medial tegmental field globally modulate both spinal and cranial somatic motoneuron excitability.

摘要

内侧被盖区的神经元直接投射至脊髓躯体运动神经元以及诸如舌下神经核等脑神经运动神经元池。这些神经元的轴突可能具有高度的分支,投射至脊髓的多个节段以及神经轴不同水平的许多不同区域。我们采用双荧光逆行示踪技术来研究投射至脊髓的内侧被盖神经元是否也投射至舌下神经核。向舌下神经核注射双脒基黄,向脊髓注射快蓝,在内侧被盖区产生了大量双标记神经元,尤其是在尾侧中缝核和相邻的腹内侧网状结构。在这些结构中,投射至舌下神经核和脊髓的神经元数量与在对照动物中观察到的投射至脊髓多个节段的神经元数量相当。在内侧被盖区的其他几个核团和亚区域中,观察到投射至舌下神经核和脊髓的神经元较少,而在外侧被盖区或其他脑桥延髓结构中几乎未观察到此类神经元。这些结果表明,尾侧中缝核和相邻的腹内侧网状结构的神经元投射至脊髓和舌下神经核,并支持这样一种观点,即内侧被盖区向运动神经元池的弥散投射全局调节脊髓和脑神经躯体运动神经元的兴奋性。

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