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Modulation of synaptic plasticity by the coactivation of spatially distinct synaptic inputs in rat hippocampal CA1 apical dendrites

机译:通过在大鼠海马CA1根尖树突中空间上不同的突触输入的共激活来调节突触可塑性

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The phenomenon whereby the relative timing between presynaptic and postsynaptic spiking determines the direction and extent of synaptic changes in a critical temporal window is known as spike timing-dependent synaptic plasticity (STDP). We have previously reported that STDP profiles can be classified into two types depending on their layer-specific location along CA1 pyramidal neuron dendrites in the rat hippocampus, suggesting that there are differences in information processing between the proximal dendrite (PD) and distal dendrite (DD). However, how the different types of information processing interact at different dendritic locations remains unclear. To investigate how the temporal information of inputs to PD influences information processing at DD, PD stimulation was applied while the STDP protocol was simultaneously applied at DDs of CA1 pyramidal neurons. Synaptic plasticity induced by the STDP protocol at DDs was enhanced or depressed depending on the timing of the back-propagating action potentials (bAPs) and the excitatory and inhibitory postsynaptic potentials elicited by PD stimulation. These results suggested that bAPs function as carriers of temporal information of PD inputs to DD. Next, the influence of DD on PD was investigated using the same protocol. Synaptic plasticity at PD was modulated only if the pairing stimuli were applied to elicit coincidental timing of bAP and the excitatory postsynaptic potential. Such coding modulations could provide the basis for a novel learning rule and may be important factors in the integration of spatiotemporal input information in neural networks in the brain.
机译:突触前和突触后尖峰之间的相对时间决定了关键时间窗口中突触变化的方向和程度的现象称为尖峰时间依赖性突触可塑性(STDP)。我们先前曾报道,STDP轮廓可根据其在大鼠海马中沿CA1锥体神经元树突的层特定位置而分为两种类型,这表明近端树突(PD)和远端树突(DD)之间的信息处理有所不同)。但是,尚不清楚不同类型的信息处理如何在不同的树突位置相互作用。为了研究PD输入的时间信息如何影响DD处的信息处理,在CA1锥体神经元的DD处同时应用STDP协议而同时应用PD刺激。 STDP协议在DDs诱导的突触可塑性被增强或抑制,这取决于反向传播动作电位(bAP)的时间以及PD刺激引起的兴奋性和抑制性突触后电位。这些结果表明,bAP充当PD输入DD的时间信息的载体。接下来,使用相同的协议研究DD对PD的影响。仅当应用配对刺激来激发bAP的巧合时机和兴奋性突触后电位时,PD的突触可塑性才被调节。这样的编码调制可以为新的学习规则提供基础,并且可能是时空输入信息在大脑神经网络中整合的重要因素。

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