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Molecular determinants of the face map development in the trigeminal brainstem

机译:三叉神经干中人脸图发育的分子决定因素

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The perception of external sensory information by the brain requires highly ordered synaptic connectivity between peripheral sensory neurons and their targets in the central nervous system. Since the discovery of the whisker-related barrel patterns in the mouse cortex, the trigeminal system has become a favorite model for study of how its connectivity and somatotopic maps are established during development. The trigeminal brainstem nuclei are the first CNS regions where whisker-specific neural patterns are set up by the trigeminal afferents that innervate the whiskers. In particular, barrelette patterns in the principal sensory nucleus of the trigeminal nerve provide the template for similar patterns in the face representation areas of the thalamus and subsequently in the primary somatosensory cortex. Here, we describe and review studies of neurotrophins, multiple axon guidance molecules, transcription factors, and glutamate receptors during early development of trigeminal connections between the whiskers and the brainstem that lead to emergence of patterned face maps. Studies from our laboratories and others' showed that developing trigeminal ganglion cells and their axons depend on a variety of molecular signals that cooperatively direct them to proper peripheral and central targets and sculpt their synaptic terminal fields into patterns that replicate the organization of the whiskers on the muzzle. Similar mechanisms may also be used by trigeminothalamic and thalamocortical projections in establishing patterned neural modules upstream from the trigeminal brainstem. (c) 2006 Wiley-Liss, Inc.
机译:大脑对外部感觉信息的感知需要外围感觉神经元与其在中枢神经系统中的靶标之间的高度有序的突触连接。自从在小鼠皮层中发现晶须相关的桶状图案以来,三叉戟系统已成为研究其在发育过程中如何建立连通性和体位图的最常用模型。三叉神经脑干核是第一个中枢神经系统区域,其中由晶须神经支配的三叉神经传入建立了晶须特定的神经模式。特别地,三叉神经的主要感觉核中的桶形图案为丘脑的面部代表区域以及随后的初级体感皮层中的类似图案提供了模板。在这里,我们描述和回顾了在晶须和脑干之间的三叉神经连接的早期发展过程中神经营养蛋白,多种轴突指导分子,转录因子和谷氨酸受体的研究,这导致了图案面部图的出现。来自我们实验室和其他实验室的研究表明,发展中的三叉神经节细胞及其轴突依赖于各种分子信号,这些信号协同将它们引导至适当的外周和中央靶标,并将其突触末端区域雕刻成可复制晶须组织的模式。枪口。三叉神经丘脑和丘脑皮质投影也可使用类似的机制来建立三叉神经脑干上游的模式神经模块。 (c)2006年Wiley-Liss,Inc.

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