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首页> 外文期刊>Neuron >Inhibitory and Excitatory Spike-Timing-Dependent Plasticity in the Auditory Cortex
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Inhibitory and Excitatory Spike-Timing-Dependent Plasticity in the Auditory Cortex

机译:听性皮层的抑制性和兴奋性穗时间依赖性。

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摘要

Synapses are plastic and can be modified by changes in spike timing. Whereas most studies of long-term synaptic plasticity focus on excitation, inhibitory plasticity may be critical for controlling information processing, memory storage, and overall excitability in neural circuits. Here we examine spike-timing-dependent plasticity (STDP) of inhibitory synapses onto layer 5 neurons in slices of mouse auditory cortex, together with concomitant STDP of excitatory synapses. Pairing pre-and postsynaptic spikes potentiated inhibitory inputs irrespective of precise temporal order within similar to 10 ms. This was in contrast to excitatory inputs, which displayed an asymmetrical STDP time window. These combined synaptic modifications both required NMDA receptor activation and adjusted the excitatory-inhibitory ratio of events paired with postsynaptic spiking. Finally, subthreshold events became suprathreshold, and the time window between excitation and inhibition became more precise. These findings demonstrate that cortical inhibitory plasticity requires interactions with co-activated excitatory synapses to properly regulate excitatory-inhibitory balance.
机译:突触是可塑性的,可以通过改变尖峰时间来改变。尽管大多数长期突触可塑性的研究都集中在兴奋上,但抑制性可塑性对于控制信息处理,记忆存储以及神经回路中的整体兴奋性可能至关重要。在这里,我们检查了抑制性突触的尖峰时序依赖性可塑性(STDP)到小鼠听觉皮层切片中的第5层神经元,以及伴随的兴奋性突触的STDP。配对突触前和突触后峰值可增强抑制性输入,而与精确的时间顺序无关,大约在10毫秒内。这与兴奋性输入相反,后者显示了不对称的STDP时间窗口。这些组合的突触修饰既需要NMDA受体激活,又调节了与突触后尖峰配对的事件的兴奋抑制比。最终,阈下事件变为阈上事件,激发和抑制之间的时间窗口变得更加精确。这些发现表明,皮质抑制性可塑性需要与共激活的兴奋性突触相互作用才能适当调节兴奋性-抑制性平衡。

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