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How neurogenesis finds its place in a hardwired sensory system

机译:神经发生如何在硬连线的感觉系统中找到其位置

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摘要

So far most studies on adult neurogenesis aimed to unravel mechanisms and molecules regulating the integration of newly generated neurons in the mature brain parenchyma. The exceedingly abundant amount of results that followed, rather than being beneficial in the perspective of brain repair, provided a clear evidence that adult neurogenesis constitutes a necessary feature to the correct functioning of the hosting brain regions. In particular, the rodent olfactory system represents a privileged model to study how neuronal plasticity and neurogenesis interact with sensory functions. Until recently, the vomeronasal system (VNS) has been commonly described as being specialized in the detection of innate chemosignals. Accordingly, its circuitry has been considered necessarily stable, if not hard-wired, in order to allow stereotyped behavioral responses. However, both first and second order projections of the rodent VNS continuously change their synaptic connectivity due to ongoing postnatal and adult neurogenesis. How the functional integrity of a neuronal circuit is maintained while newborn neurons are continuously added—or lost—is a fundamental question for both basic and applied neuroscience. The VNS is proposed as an alternative model to answer such question. Hereby the underlying motivations will be reviewed.
机译:迄今为止,大多数关于成人神经发生的研究旨在揭示调节成熟脑实质中新生神经元整合的机制和分子。随之而来的大量结果,而不是在脑修复方面无益,提供了明确的证据,即成年神经发生构成了宿主大脑区域正确运作的必要特征。尤其是,啮齿动物的嗅觉系统代表了一种特权模型,用于研究神经元可塑性和神经发生如何与感觉功能相互作用。直到最近,犁鼻系统(VNS)一直被描述为专门用于检测先天性化学信号。因此,其电路被认为必须是稳定的,即使不是硬接线的,以便允许定型的行为响应。然而,由于正在进行的产后和成年神经发生,啮齿动物VNS的一阶和二阶投影都连续改变其突触连接性。对于基础神经科学和应用神经科学而言,如何在不断增加或丢失新生神经元的同时如何保持神经元回路的功能完整性是一个基本问题。提议将VNS作为回答此问题的替代模型。因此,将对潜在动机进行回顾。

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