Jia Fan, Wei Haiyang, Li Xiangrui, Xie Xiaoqiao, Zhou Yifeng
Hefei National Laboratory for Physical Sciences at Microscale and School of Life Science, University of Science and Technology of China, Hefei, Anhui 230027, PR China.
Neurosci Lett. 2006 May 1;398(1-2):73-7. doi: 10.1016/j.neulet.2005.12.054. Epub 2006 Jan 9.
The critical period for visual system development in rats normally peaks at postnatal three weeks and ends at postnatal five weeks. However, the change of short-term synaptic plasticity during this period has rarely been investigated. In the present study, we compared the short-term plasticity of visual cortical responses to lateral geniculate nucleus stimulation in rats at different development stages (P20, P30 and adult) in vivo. The results show that paired-pulse depression (PPD) and frequency-dependent depression of evoked field potentials (FP) are present in P20 rats and increase in magnitude with development. The time course of this maturation of synaptic depression parallels that of the visual critical period. The weak synaptic depression observed in juvenile rats may be important in enhancing excitatory neurotransmission at a time when synapses are immature; this could endow immature synapses with wide integrative capabilities. In contrast, suppressive temporal interactions could provide an important substrate for neuronal processing of visual information in the mature cortex.
大鼠视觉系统发育的关键期通常在出生后三周达到峰值,并在出生后五周结束。然而,在此期间短期突触可塑性的变化很少被研究。在本研究中,我们在体内比较了不同发育阶段(P20、P30和成年)大鼠视觉皮层对外侧膝状体核刺激反应的短期可塑性。结果表明,P20大鼠存在配对脉冲抑制(PPD)和诱发电场电位(FP)的频率依赖性抑制,且随着发育其幅度增加。这种突触抑制成熟的时间进程与视觉关键期的时间进程相似。在幼鼠中观察到的微弱突触抑制在突触未成熟时增强兴奋性神经传递可能很重要;这可以赋予未成熟突触广泛的整合能力。相比之下,抑制性时间相互作用可以为成熟皮层中视觉信息的神经元处理提供重要基础。