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Refinement of Spatial Receptive Fields in the Developing Mouse Lateral Geniculate Nucleus Is Coordinated with Excitatory and Inhibitory Remodeling

机译:在发展中的小鼠横向细核的空间接受领域的细化与兴奋性和抑制性重塑协调。

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摘要

Receptive field properties of individual visual neurons are dictated by the precise patterns of synaptic connections they receive, including the arrangement of inputs in visual space and features such as polarity (On vs Off). The inputs from the retina to the lateral geniculate nucleus (LGN) in the mouse undergo significant refinement during development. However, it is unknown how this refinement corresponds to the establishment of functional visual response properties. Here we conducted in vivo and in vitro recordings in the mouse LGN, beginning just after natural eye opening, to determine how receptive fields develop as excitatory and feedforward inhibitory retinal afferents refine. Experiments used both male and female subjects. For in vivo assessment of receptive fields, we performed multisite extracellular recordings in awake mice. Spatial receptive fields at eye-opening were >2 times larger than in adulthood, and decreased in size over the subsequent week. This topographic refinement was accompanied by other spatial changes, such as a decrease in spot size preference and an increase in surround suppression. Notably, the degree of specificity in terms of On/Off and sustained/transient responses appeared to be established already at eye opening and did not change. We performed in vitro recordings of the synaptic responses evoked by optic tract stimulation across the same time period. These recordings revealed a pairing of decreased excitatory and increased feedforward inhibitory convergence, providing a potential mechanism to explain the spatial receptive field refinement.>SIGNIFICANCE STATEMENT The development of precise patterns of retinogeniculate connectivity has been a powerful model system for understanding the mechanisms underlying the activity-dependent refinement of sensory systems. Here we link the maturation of spatial receptive field properties in the lateral geniculate nucleus (LGN) to the remodeling of retinal and inhibitory feedforward convergence onto LGN neurons. These findings should thus provide a starting point for testing the cell type-specific plasticity mechanisms that lead to refinement of different excitatory and inhibitory inputs, and for determining the effect of these mechanisms on the establishment of mature receptive fields in the LGN.
机译:单个视觉神经元的感受野特性取决于它们所接收的突触连接的精确模式,包括视觉空间中输入的排列以及极性(开或关)等特征。在发育过程中,鼠标从视网膜到外侧膝状核(LGN)的输入进行了显着细化。然而,尚不清楚这种改进如何与功能性视觉响应特性的建立相对应。在这里,我们从自然睁开眼后开始,在小鼠LGN中进行了体内和体外记录,以确定随着兴奋性和前馈抑制性视网膜传入神经的细化,感受野如何发展。实验同时使用了男性和女性受试者。为了对接受野进行体内评估,我们在清醒的小鼠中进行了多位细胞外录音。睁大眼睛的空间感受野比成人时期大2倍,并且在随后的一周中大小减小。这种拓扑结构的完善还伴随着其他空间变化,例如光斑尺寸偏好的减小和环绕声抑制的增加。值得注意的是,就开/关和持续/短暂反应而言,特异性程度似乎已经在睁眼时就确定了,并且没有改变。我们在同一时间段进行了视力刺激引起的突触反应的体外记录。这些记录揭示了成对的减少的兴奋性和增加的前馈抑制收敛性,为解释空间感受野的细化提供了潜在的机制。>意义声明了解感觉系统依赖于活动的细化的机制。在这里,我们将外侧膝状核(LGN)中的空间感受野特性的成熟与视网膜的重构和抑制性前馈会聚到LGN神经元上联系起来。因此,这些发现应提供一个起点,以测试可导致不同兴奋性和抑制性输入细化的细胞类型特异性可塑性机制,并确定这些机制对LGN中成熟受体场建立的影响。

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