细胞类型特定和频率依赖的离心调制 in vivo 嗅觉灯泡输出神经元中的离心调制
Adam C Puche1, Chelsea Hook1, Fu-Wen Zhou1
1Department of Anatomy and Neurobiology, Program in Neurosciences, University of Maryland School of Medicine, Baltimore, Maryland, United States.
Journal of neurophysiology
|May 1, 2024
概括
布罗卡的对角带 (HDB) 的水平肢体通过直接和间接的途径在嗅球中激发了 mitra/tufted 细胞 (M/TCs). 这种激发取决于频率,在更深的M / TC层中更强大,可能会加剧气味调.
科学领域:
- 神经科学是一个神经科学.
- 嗅觉系统研究研究 嗅觉系统研究
- 神经电路分析神经元电路分析
背景情况:
- 嗅球中的中枢/状细胞 (M/TCs) 是通过局部内部神经元和离心器输入来调节的.
- 布罗卡的对角带 (HDB) 的水平肢体是一个关键的抑制离心源,准嗅球神经元.
研究的目的:
- 在M/TCs上研究HDB激活电路的体内疗效.
- 确定HDB对M/TCs的影响的短期可塑性和频率依赖性.
- 了解直接和间接HDB-M/TC路径之间的平衡.
主要方法:
- 在HDBGABAergic神经元中利用通道罗多普辛-2 (ChR2) 表达用于光学激活.
- 在体内记录了M/TC活动,无论是自发的还是由气味引起的.
- 分析了HDB调制中的频率依赖效应和层特异性差异.
主要成果:
- HDB激活增加了自发和气味引起的M/TC发射.
- 在所有M / TC类中,HDB诱导的消毒反弹激发.
- 激发显示频率依赖的短期促进 (≥5 Hz),并且在更深层的M / TC层中更强.
结论:
- HDB通过直接抑制和间接消抑制对M/TCs产生净激发作用.
- 取决于频率的HDB输入差别调节M/TC输出,特别是在更深层.
- 这一规则可以通过平衡嗅灯泡中的激发和抑制来提高气味调节的特异性.
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