from    
to    
search  

 


Symmetry restoration and quantum Mpemba effects in chaotic andlocalization sy...
Quantum Gases 2024
Stories of Fermions in an Optical Box
Contractive Unitary and Classical Shadow Tomography
报告题目:
清华BBNC创新讲座(第5期) Glia make zebrafish ‘give up’ on futile behavior
 报告人:
Dr Misha Ahrens
HHMI / Janelia Research Campus
报告时间:
2019-06-18 13:30
报告地点:
中央主楼511
主办单位:
清华大学自动化系
  简介:

简介

 

Misha Ahrens is a group leader at HHMI / Janelia Research Campus. He joined Janelia in the fall of 2012, researching systems neuroscience in zebrafish. He completed his BA in mathematics and physics at Cambridge University, and his PhD in computational neuroscience at the Gatsby Computational Neuroscience Unit, at University College London. From 2009 to 2012 he was a Sir Henry Wellcome Postdoctoral Fellow, working in the Engert Lab, at Harvard University.

 

His interest is to understand, on the whole-brain but single-cell level, how entire neural circuits generate adaptable behaviors and how plasticity reorganizes the functional properties of these circuits to implement learned changes in behavior.

 

报告摘要:

 

When a behavior repeatedly fails to achieve its goal, animals often give up and become passive, which can be strategic for preserving energy or regrouping between attempts. It is unknown how the brain identifies behavioral failures and mediates this behavioral state switch. In larval zebrafish swimming in virtual reality, visual feedback can be withheld so that swim attempts fail to trigger expected visual flow. After tens of seconds of such motor futility, animals become passive for similar durations. Whole-brain calcium imaging revealed noradrenergic neurons that responded specifically to failed swim attempts, and radial astrocytes whose calcium levels accumulated with increasing numbers of failed attempts. Using cell ablation and optogenetic or chemogenetic activation, we found that noradrenergic neurons progressively activate brainstem radial astrocytes, which then suppress swimming. Thus, radial astrocytes perform a computation critical for behavior: they accumulate evidence that current actions are ineffective and consequently drive changes in behavioral states.

今日相关信息
Seminar Series:Industrial Homogeneou...
Intrinsically stretchable polymer ele...
环境学术沙龙第506期: 诺贝尔经济学奖得...
Hidden Analytic Structure for Two-Loo...
清华大学材料科学与工程研究院《材料科学论...
 
同类别相关信息
第四届清华信息前沿交叉论坛
脑机接口时代,我们还能做什么?——脑科...
Brain-like spiking neural networks:...
【学术论坛报名】首届清华大学-美团数字...
跨文化传播政治经济研究视野中的网络时代...
学术活动