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首页> 外文期刊>The Journal of Physiology >Loss of sensory input increases the intrinsic excitability of layer 5 pyramidal neurons in rat barrel cortex
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Loss of sensory input increases the intrinsic excitability of layer 5 pyramidal neurons in rat barrel cortex

机译:感觉输入的损失增加了大鼠桶状皮质中第5层锥体神经元的固有兴奋性

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摘要

Development of the cortical map is experience dependent, with different critical periods in different cortical layers. Previous work in rodent barrel cortex indicates that sensory deprivation leads to changes in synaptic transmission and plasticity in layer 2/3 and 4. Here, we studied the impact of sensory deprivation on the intrinsic properties of layer 5 pyramidal neurons located in rat barrel cortex using simultaneous somatic and dendritic recording. Sensory deprivation was achieved by clipping all the whiskers on one side of the snout. Loss of sensory input did not change somatic active and resting membrane properties, and did not influence dendritic action potential (AP) backpropagation.
机译:皮质图谱的发展取决于经验,在不同的皮质层中具有不同的临界期。以前在啮齿动物的桶状皮质中进行的工作表明,感觉剥夺导致2/3和4层的突触传递和可塑性改变。在这里,我们使用同时进行体细胞和树突状记录。感官剥夺是通过将所有晶须修剪在口鼻的一侧来实现的。感觉输入的损失不会改变体细胞的活动和休息膜的性质,并不会影响树突状动作电位(AP)的反向传播。

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