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人工智能拓展火灾安全研究的进展
From The Sky To The Sea
清华大学材料科学与工程研究院《材料科学论坛》:基于拓扑缺陷理论的轻合金组织设计新...
Quantum information processing based on bosonic modes
报告题目:
清华信息大讲堂第127讲:Hierarchical Bayesian networks in the visual cortex
 报告人:
Tai Sing Lee
报告时间:
2014-06-17 15:00
报告地点:
信息楼(FIT)1-312
主办单位:
信息学院
  简介:
讲演摘要
In this talk, we will entertain the proposal that the visual cortex can be conceptualized as a hierarchical Bayesian network. Such a hierarchical network can provide the needed flexibility and power to model  with the complexity of the natural world and to generate  predictions during learning and inference. I will discuss neurophysiological evidence and constraints that we have learned about the visual cortex from this perspective and, in particular, the functional role of recurrent feedback in visual computation.  I will present  findings that provide insight as to how the brain is shaped by the statistical structures of the natural environments and how the real neural networks perform computation using such priors  to solve 3D perception problem. These findings argue that a class of graphical models provides a viable theoretical framework for us to conceptualize the computation in the visual cortex. 
 
讲演者简介
Dr. Tai Sing Lee is on the faculty of the Computer Science Department and the Center for the Neural Basis of Cognition at Carnegie Mellon University, Pittsburgh, U.S.A. He was born in Guangzhou and grew up in Hong Kong. He obtained his S.B., M.S., and  Ph.D. all from Harvard University. He was also trained in medical sciences, medical physics and medical engineering in the Harvard-MIT Division of Health Sciences and Technology during his doctoral training. He did his postdoctoral training in primate neurophysiology in MIT’s Brain and Cognitive Science before being recruited to CMU to start an interdisciplinary research laboratory to study the computational and neural basis of visual perception. He is well known for his works with David Mumford on the role of recurrent feedback in the hierarchical visual system, and has received the ICCV Helmholtz award for his work with Song Chun Zhu and Alan Yuille, and the CAREER award from the National Science Foundation (USA).
 
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