from    
to    
search  

 


活动预告|碳中和与能源智联(CNEST)前沿讲座第1期
”行业前沿讲堂”第2期——全过程咨询新实践:建设职能杠杆体系原理深度解读
Entanglement islands and cutoff branes from path-integral optimization
【图书馆系列讲座】个人文献管理软件EndNote的功能与使用
报告题目:
Quantitative data-driven analysis of resting-state fMRI data
 报告人:
Tie-Qiang Li
Professor, Center for Eye Disease and Development, 
Vision Science Graduate Program and School of Optometry, 
University of California at Berkeley; Adjunct Faculty, 
Proctor Foundation for Research in Ophthalmology, 
University of California at San Francisco
报告时间:
2018-07-17 15:00
报告地点:
医学科学楼B215
主办单位:
医学院生物医学工程系
  简介:
 In recent years there has been a rapidly growing interest in the study of brain functional connectivity based on resting-state fMRI. The USA and EU countries have all started large-scale human brain connectone mapping projects involving thousands of volunteers, e.g., http://www.humanconnectomeproject.org. Besides the development of specific MRI hardware and fast data acquisition techniques, the development of advanced pre-processing pipeline, analysis and visualization tools are also very relevant and important to facilitate the identification of normal and abnormal brain functional connectivity networks. In this presentation, I will focus on the research activities of the medical physicist team from Karolinska University Hospital on exploring the use of data-driven methods to analyse resting-state fMRI data, including independent component analysis (ICA), hierarchical clustering analysis (HCA), and quantitative data-driven analysis (QDA) methods. Particularly, QDA applications in clinical diagnosis and intervention of neurological and psychiatric patients will be discussed.
 
报告人简介:Tie-Qiang Li, Professor, Department of Medical Radiation and Nuclear Medicine, Karolinska University Hospital; Department of Clinical Science, Intervention and Technology (CLINTEC), Karolinska Institute. Tie-Qiang Li's main research interest is the development of imaging and spectroscopic techniques with potentials to improve the clinical diagnostics and the understandings of biological and physiological processes. Particularly, He is active in developing rapid data acquisition methods and novel post-processing techniques for MRI and exploring new imaging contrast mechanisms for neurological applications. In the last a few years, his team has made progress in developing methods and understanding the neurological mechanisms for non-invasive stimulation of the autonomic nervous system.
今日相关信息
External and Internal Heat Transfer ...
Resonant x-ray scattering from quantu...
材料院《材料科学论坛》:Lead-free Pie...
 
同类别相关信息
自由基路径糖基化反应
【叶承耀、叶家祺讲座】现代系统生理学和...
学堂班系列讲座:“基于微流控芯片的肿瘤...
The Dynamics of 3D Genome Folding a...
Publishing in Science: An Inside Look
学术活动