...
首页> 外文期刊>Cell Reports >Cholinergic Signals in Mouse Barrel Cortex during Active Whisker Sensing
【24h】

Cholinergic Signals in Mouse Barrel Cortex during Active Whisker Sensing

机译:主动晶须感测期间小鼠桶状皮质的胆碱能信号

获取原文
           

摘要

Internal brain states affect sensory perception, cognition, and learning. Many neocortical areas exhibit changes in the pattern and synchrony of neuronal activity during quiet versus active behaviors. Active behaviors are typically associated with desynchronized cortical dynamics. Increased thalamic firing contributes importantly to desynchronize mouse barrel cortex during active whisker sensing. However, a whisking-related cortical state change persists after thalamic inactivation, which is mediated at least in part by acetylcholine, as we show here by using whole-cell recordings, local pharmacology, axonal calcium imaging, and optogenetic stimulation. During whisking, we find prominent cholinergic signals in the barrel cortex, which suppress spontaneous cortical activity. The desynchronized state of barrel cortex during whisking is therefore driven by at least two distinct signals with opposing functions: increased thalamic activity driving glutamatergic excitation of the cortex and increased cholinergic input suppressing spontaneous cortical activity.
机译:内部大脑状态影响感觉知觉,认知和学习。在安静与活跃行为期间,许多新皮质区域表现出神经元活动的模式和同步变化。活动行为通常与不同步的皮质动力学相关。主动晶须感测期间,丘脑射击的增加对使小鼠桶状皮质失去同步至关重要。但是,丘脑失活后,与须相关的皮质状态变化仍然存在,这至少部分地由乙酰胆碱介导,正如我们在此处通过使用全细胞记录,局部药理学,轴突钙成像和光遗传学刺激所显示的。在搅拌期间,我们在桶状皮层中发现明显的胆碱能信号,从而抑制了自发性皮层活动。因此,在搅拌期间,桶状皮质的失步状态是由至少两个具有相反功能的不同信号驱动的:丘脑活动性增加,驱动皮质的谷氨酸能兴奋,胆碱能输入增加,抑制自发性皮质活动。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号