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首页> 外文期刊>Cerebral Cortex >A Morphological Analysis of Thalamocortical Axon Fibers of Rat Posterior Thalamic Nuclei: A Single Neuron Tracing Study with Viral Vectors
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A Morphological Analysis of Thalamocortical Axon Fibers of Rat Posterior Thalamic Nuclei: A Single Neuron Tracing Study with Viral Vectors

机译:大鼠丘脑后核的丘脑皮质轴突纤维的形态学分析:病毒载体的单神经元示踪研究。

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摘要

The rostral sector of the posterior thalamic nuclei (POm) is, together with the ventral posterior nuclei (VP), involved in somatosensory information processing in rodents. The POm receives inputs from the spinal cord and trigeminal nuclei and projects to the primary somatosensory (S1) cortex and other cortical areas. Although thalamocortical axons of single VP neurons are well known to innervate layer (L) 4 of the S1 cortex with distinct columnar organization, those of POm neurons have not been elucidated yet. In the present study, we investigated complete axonal and dendritic arborizations of single POm neurons in rats by visualizing the processes with Sindbis viruses expressing membrane-targeted fluorescent protein. When we divided the POm into anterior and posterior parts according to calbindin immunoreactivity, dendrites of posterior POm neurons were wider but less numerous than those of anterior neurons. More interestingly, axon fibers of anterior POm neurons were preferentially distributed in L5 of the S1 cortex, whereas those of posterior neurons were principally spread in L1 with wider and sparser arborization than those of anterior neurons. These results suggest that the POm is functionally segregated into anterior and posterior parts and that the 2 parts may play different roles in somatosensory information processing.
机译:丘脑后核(POm)的鸟嘴状区域与腹侧后核(VP)一起参与啮齿动物的体感信息处理。 POm接收来自脊髓和三叉神经核的输入,并伸到初级体感(S1)皮质和其他皮质区域。尽管众所周知,单个VP神经元的丘脑皮层轴突可支配具有明显柱状组织的S1皮质的第(L)4层,但尚未阐明POm神经元的那些。在本研究中,我们通过观察表达膜靶向荧光蛋白的Sindbis病毒的过程,研究了大鼠单个POm神经元的完整轴突和树突状乔化。当我们根据calbindin免疫反应性将POm分为前后部分时,后POm神经元的树突比前神经元的树突宽,但数量较少。更有趣的是,前POm神经元的轴突纤维优先分布在S1皮层的L5中,而后神经元的轴突纤维主要分布在L1中,比前神经元的树突更宽且稀疏。这些结果表明,POm在功能上分为前部和后部,并且这两个部分在体感信息处理中可能发挥不同的作用。

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