首页> 美国卫生研究院文献>Frontiers in Cellular Neuroscience >Bidirectional Hebbian Plasticity Induced by Low-Frequency Stimulation in Basal Dendrites of Rat Barrel Cortex Layer 5 Pyramidal Neurons
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Bidirectional Hebbian Plasticity Induced by Low-Frequency Stimulation in Basal Dendrites of Rat Barrel Cortex Layer 5 Pyramidal Neurons

机译:低频刺激在大鼠桶状皮质第5层锥体神经元的基底树突中诱导的双向Hebbian可塑性

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摘要

According to Hebb's original hypothesis (Hebb, ), synapses are reinforced when presynaptic activity triggers postsynaptic firing, resulting in long-term potentiation (LTP) of synaptic efficacy. Long-term depression (LTD) is a use-dependent decrease in synaptic strength that is thought to be due to synaptic input causing a weak postsynaptic effect. Although the mechanisms that mediate long-term synaptic plasticity have been investigated for at least three decades not all question have as yet been answered. Therefore, we aimed at determining the mechanisms that generate LTP or LTD with the simplest possible protocol. Low-frequency stimulation of basal dendrite inputs in Layer 5 pyramidal neurons of the rat barrel cortex induces LTP. This stimulation triggered an EPSP, an action potential (AP) burst, and a Ca2+ spike. The same stimulation induced LTD following manipulations that reduced the Ca2+ spike and Ca2+ signal or the AP burst. Low-frequency whisker deflections induced similar bidirectional plasticity of action potential evoked responses in anesthetized rats. These results suggest that both in vitro and in vivo similar mechanisms regulate the balance between LTP and LTD. This simple induction form of bidirectional hebbian plasticity could be present in the natural conditions to regulate the detection, flow, and storage of sensorimotor information.
机译:根据Hebb的原始假设(Hebb,),当突触前​​活动触发突触后放电时,突触会增强,从而导致突触效力的长期增强(LTP)。长期抑郁症(LTD)是一种与使用有关的突触强度下降,被认为是由于突触输入导致了较弱的突触后作用。尽管已经研究了介导长期突触可塑性的机制至少三十年,但尚未回答所有问题。因此,我们旨在确定使用最简单的协议生成LTP或LTD的机制。低频刺激大鼠桶状皮层的第5层锥体神经元的基底树突状细胞输入可诱导LTP。这种刺激触发了EPSP,动作电位(AP)爆发和Ca 2 + 尖峰。在减少Ca 2 + 尖峰和Ca 2 + 信号或AP爆发的操作后,相同的刺激诱导LTD。低频晶须偏转在麻醉大鼠中诱发动作电位诱发反应的相似双向可塑性。这些结果表明,体外和体内相似的机制均调节LTP和LTD之间的平衡。这种简单的双向hebbian可塑性诱导形式可以存在于自然条件下,以调节感觉运动信息的检测,流动和存储。

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