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Changes in input strength and number are driven by distinct mechanisms at the retinogeniculate synapse

机译:输入强度和数量的变化是由成视网膜突触的不同机制驱动的

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摘要

Recent studies have demonstrated that vision influences the functional remodeling of the mouse retinogeniculate synapse, the connection between retinal ganglion cells and thalamic relay neurons in the dorsal lateral geniculate nucleus (LGN). Initially, each relay neuron receives a large number of weak retinal inputs. Over a 2- to 3-wk developmental window, the majority of these inputs are eliminated, and the remaining inputs are strengthened. This period of refinement is followed by a critical period when visual experience changes the strength and connectivity of the retinogeniculate synapse. Visual deprivation of mice by dark rearing from postnatal day (P)20 results in a dramatic weakening of synaptic strength and recruitment of additional inputs. In the present study we asked whether experience-dependent plasticity at the retinogeniculate synapse represents a homeostatic response to changing visual environment. We found that visual experience starting at P20 following visual deprivation from birth results in weakening of existing retinal inputs onto relay neurons without significant changes in input number, consistent with homeostatic synaptic scaling of retinal inputs. On the other hand, the recruitment of new inputs to the retinogeniculate synapse requires previous visual experience prior to the critical period. Taken together, these findings suggest that diverse forms of homeostatic plasticity drive experience-dependent remodeling at the retinogeniculate synapse.
机译:最近的研究表明,视觉会影响小鼠视网膜新生突触的功能重塑,视网膜神经节细胞与背外侧膝状核(LGN)中丘脑中继神经元之间的连接。最初,每个中继神经元接收大量的弱视网膜输入。在2到3周的发展期中,这些投入大部分被淘汰,其余投入得到加强。在此精炼阶段之后是关键时期,此时视觉体验会改变维甲酸突触的强度和连通性。出生后第20天从黑暗中饲养对小鼠的视觉剥夺会导致突触强度显着减弱,并招募额外的投入物。在本研究中,我们询问视黄酸突触中经验依赖的可塑性是否代表对视觉环境变化的稳态反应。我们发现从出生被剥夺视力后的P20开始的视觉体验会导致现有的视网膜输入减弱到中继神经元上,而输入数量没有明显变化,这与视网膜输入的稳态突触缩放相一致。另一方面,将新输入物募集到维甲酸突触需要在关键时期之前的视觉经验。综上所述,这些发现表明,多种形式的稳态可塑性驱动着视塑型突触的经验依赖型重塑。

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