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Distinct responses of Purkinje neurons and roles of simple spikes during associative motor learning in larval zebrafish

机译:幼虫斑马鱼在关联运动学习中浦肯野神经元的不同反应和简单尖峰的作用

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摘要

To study cerebellar activity during learning, we made whole-cell recordings from larval zebrafish Purkinje cells while monitoring fictive swimming during associative conditioning. Fish learned to swim in response to visual stimulation preceding tactile stimulation of the tail. Learning was abolished by cerebellar ablation. All Purkinje cells showed task-related activity. Based on how many complex spikes emerged during learned swimming, they were classified as multiple, single, or zero complex spike (MCS, SCS, ZCS) cells. With learning, MCS and ZCS cells developed increased climbing fiber (MCS) or parallel fiber (ZCS) input during visual stimulation; SCS cells fired complex spikes associated with learned swimming episodes. The categories correlated with location. Optogenetically suppressing simple spikes only during visual stimulation demonstrated that simple spikes are required for acquisition and early stages of expression of learned responses, but not their maintenance, consistent with a transient, instructive role for simple spikes during cerebellar learning in larval zebrafish.>DOI:
机译:为了研究学习过程中的小脑活动,我们从幼虫斑马鱼浦肯野细胞中记录了全细胞,同时在相关条件下监测了假泳。鱼学会了对尾巴的触觉刺激之前对视觉刺激的游泳。小脑消融取消了学习。所有浦肯野细胞均显示出与任务相关的活性。根据在学习的游泳过程中出现了多少个复杂峰值,将它们分为多个,单个或零个复杂峰值(MCS,SCS,ZCS)单元。通过学习,MCS和ZCS细胞在视觉刺激期间产生了增加的攀爬纤维(MCS)或平行纤维(ZCS)输入。 SCS细胞发射与学习的游泳发作相关的复杂峰值。类别与位置相关。光遗传学仅在视觉刺激期间抑制简单尖峰表明,简单尖峰是习得的反应的获得和表达的早期阶段所必需的,而不是维持它们的过程,这与幼虫斑马鱼小脑学习过程中简单尖峰的瞬时,指导作用相一致。> DOI:

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