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Numerical Modeling of Plasmas in Fluid and Kinetic Regimes
Interpretable Quantum Advantage in Neural Sequence Learning
The Awesome Power of Biochemistry in Neuroscience
清华大学材料科学与工程研究院《材料科学论坛》:基于三维微纳结构的仿生光电与传感器...
报告题目:
清华BBNC创新讲座(第7期) High-speed imaging of brain activity
 报告人:
Dr Kaspar Podgorski
HHMI / Janelia Research Campus
报告时间:
2019-04-12 10:00
报告地点:
中央主楼511室
主办单位:
清华大学自动化系
  简介:

简介

Kaspar Podgorski is a fellow at HHMI / Janelia Research Campus. His goal is to peer into the brain and see how a neuron processes information. As an undergraduate (2004-2008) he studied Artificial Intelligence, Neuroscience, and Cognitive Science at the University of Toronto. In 2009 he joined the lab of Kurt Haas at the University of British Columbia, working on tools for what we would come to call 'comprehensive imaging': imaging synaptic activity throughout the entire dendritic arbor of a neuron at high speed. In winter 2013-2014 he visited Mark Schnitzer's group at Stanford, developing techniques for in vivo imaging in mice. In 2015, he joined Janelia, where his lab is developing methods for comprehensive imaging of neurons in mouse cortex.

 

报告摘要:

I will discuss new methods we are developing for kilohertz frame-rate fluorescence imaging in scattering brain tissue, optimized for recording fast signals associated with neural computation, such as neurotransmitters and voltage spikes. We developed a tomographic two-photon microscope that scans lines of excitation across a focal plane at multiple angles and uses computation to recover high-resolution images at voxel rates of over 1 billion Hz. We have used this microscope to image new sensors for acetylcholine, glutamate, GABA, and voltage in vivo. The method is about 15 times faster than a fundamental limit on the speed of raster scanning two-photon imaging.

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