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A neurogenic microenvironment defined by excitatory-inhibitory neuronal circuits in adult dentate gyrus

机译:成人齿状回蚀兴奋性抑制神经元电路定义的神经源性微环境

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Adult neurogenesis in the dentate gyrus plays a role in adaptive brain functions such as memory formation. Adding new neurons to a specific locus of a neural circuit with functional needs is an efficient way to achieve such an adaptive function. However, it is unknown whether neurogenesis is linked to local functional demands potentially specified by the activity of neuronal circuits. By examining the distribution of neurogenesis and different types of neuronal activity in the dentate gyrus of freely moving adult rats, we find that neurogenesis is positionally associated with active excitatory neurons, some of which show place-cell activity, but is positionally dissociated from a type of interneuron with high-burst tendency. Our finding suggests that the behaviorally relevant activity of excitatory-inhibitory neuronal circuits can define a microenvironment stimulating/inhibiting neurogenesis. Such local regulation of neurogenesis may contribute to strategic recruitment of new neurons to modify functionally relevant neural circuits.
机译:牙齿上的成年神经发生在自适应脑功能中起作用,例如记忆形成。将新神经元添加到具有功能需求的神经电路的特定轨迹是实现这种自适应功能的有效方法。然而,目前未知神经发生是与神经电路的活动潜在地指定的局部功能要求相关联。通过检查自由移动成年大鼠的牙齿发生的神经发生和不同类型的神经元活动的分布,我们发现神经发生与活性兴奋性神经元有关,其中一些显示局部细胞活性,但是从一种类型中解离具有高突发倾向的中间核。我们的发现表明,兴奋性抑制神经元电路的行为相关活动可以定义微环境刺激/抑制神经发生。这种神经发生的这种局部调节可能导致新神经元的战略招募来修改功能相关的神经电路。

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