from    
to    
search  

 


第447期“工物学术论坛”: 在纯水中首次观测到反应堆反电子中微子迹象
环境学术沙龙第628期:Economics-informed optimisation model for future equitab...
世纪物理情系列讲座 第15讲:笼目超导体中电荷条纹序的核磁共振研究进展
高效率大面积钙钛矿太阳能电池制备及应用探索
报告题目:
Application of Laser Cell Micropatterning Techniques in Biomedical Research
 报告人:
Dr. Bruce Zhi Gao
Department of Bioengineering, Clemson University
报告时间:
2005-12-01 10:30
报告地点:
西主楼3区420室
主办单位:
机械工程系
  简介:

报告题目:Application of Laser Cell Micropatterning Techniques in Biomedical Research

报告人:Dr. Bruce Zhi Gao, Department of Bioengineering, Clemson University

报告时间:2005121(星期四),上午10:30

报告地点:西主楼3420

主办单位:机械工程系

内容及摘要:

 

Animals (including human beings) have a hierarchal structure: from organ systems to organs, organs to tissues, and tissues to cells. Multiple cell types, which serve as the fundamental units of life, are involved in the development of these complex structures. The characteristics and interactions of these cell types result in the formation of a specific temporal order and spatial pattern that play a primary role in determining an animal’s physiology and pathology. Since nearly all diseases result from failed cell mechanisms, advancing knowledge on cell function paves the way for a greater comprehension of human pathology. The increase in such knowledge has led to the development of effective therapies at the cellular level.

 

Our current approach to help achieve greater understanding of cell function is to use a novel laser cell micropatterning technique based on the optical force generated by a weakly focused laser beam. In the beam’s focal region, the optical field generates two force components: a radial trapping force that draws microparticles, such as cells, into the center of the beam, and an axial pushing force that propels the trapped microparticles along the beam axis and deposits them onto a target surface, a process called laser guidance. Specific patterns can be created by moving the target surface relative to the beam axis.

 

Using this laser cell micropatterning technique, we will investigate cell-cell interactions in an “engineered” cell coculture that has a controlled micro-environment closely mimicking in vivo cell spatial arrangement. Our current research concentrates on 1) the electrical and mechanical coupling of cardiac cells at cellular level 2) the formation of a neuronal circuit on microelectrode arrays and 3) the adult stem cell differentiation under a controlled microenvironment.

 

 

 

 

 

 

今日相关信息
What's New and Exciting in 3-D Atom P...
PCS2006 征稿通知
高温超导体中的电子态
都市再生与环境再生
 
同类别相关信息
化学工程学科发展前沿研讨会
Metrology: A Catalyst for Change -...
纳米通道单分子电化学分析
材料院《材料科学论坛》:Modulating ...
Electronic Structure Theories for O...
学术活动