首页> 外文期刊>Cell >Fast-Spiking Interneurons Supply Feedforward Control of Bursting, Calcium, and Plasticity for Efficient Learning
【24h】

Fast-Spiking Interneurons Supply Feedforward Control of Bursting, Calcium, and Plasticity for Efficient Learning

机译:快速飙升的型号供应爆破,钙和可塑性的前馈控制,以实现高效学习

获取原文
获取原文并翻译 | 示例
           

摘要

Fast-spiking interneurons (FSIs) are a prominent class of forebrain GABAergic cells implicated in two seemingly independent network functions: gain control and network plasticity. Little is known, however, about how these roles interact. Here, we use a combination of cell-type-specific ablation, optogenetics, electrophysiology, imaging, and behavior to describe a unified mechanism by which striatal FSIs control burst firing, calciuminflux, and synaptic plasticity in neighboring medium spiny projection neurons (MSNs). In vivo silencing of FSIs increased bursting, calcium transients, and AMPA/NMDA ratios in MSNs. In a motor sequence task, FSI silencing increased the frequency of calcium transients but reduced the specificity with which transients aligned to individual task events. Consistent with this, ablation of FSIs disrupted the acquisition of striatum-dependent egocentric learning strategies. Together, our data support a model in which feedforward inhibition from FSIs temporally restricts MSN bursting and calcium-dependent synaptic plasticity to facilitate striatum-dependent sequence learning.
机译:快速飙升的型(FSIS)是一个突出的前脑加入细胞,其两个看似独立的网络功能涉及:增益控制和网络可塑性。然而,众所周知,这些角色如何互动。在这里,我们使用细胞类型特异性消融,邻接,电生理学,成像和行为的组合来描述统一的机制,通过该统一机制,围绕介质多刺突起神经元(MSNS)中的纹纹FSIS控制突发,钙质氟化合物和突触可塑性。在FSIS的体内沉默中增加了MSN中的爆破,钙瞬变和AMPA / NMDA比率。在电机序列任务中,FSI沉默增加了钙瞬变的频率,但减少了与各个任务事件对齐的特异性。符合这一点,FSIS的消融扰乱了依赖纹章的预言学习策略。我们的数据支持一种模型,其中来自FSIS的前馈抑制在时间上限制了MSN爆裂和钙依赖性突触可塑性,以促进纹章依赖性序列学习。

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