博彩公司-真人在线博彩公司大全_百家乐园首选去澳_全讯网赢足一世 (中国)·官方网站

網(wǎng)站頁面已加載完成

由于您當(dāng)前的瀏覽器版本過低,存在安全隱患。建議您盡快更新,以便獲取更好的體驗。推薦使用最新版Chrome、Firefox、Opera、Edge

Chrome

Firefox

Opera

Edge

ENG

當(dāng)前位置: 首頁 · 學(xué)術(shù)交流 · 正文

學(xué)術(shù)交流

【學(xué)術(shù)報告】研究生靈犀學(xué)術(shù)殿堂第140期之Zhenpeng Qin報告會通知

發(fā)布時間:2017年04月27日 來源:研工部 點(diǎn)擊數(shù):

全校師生:

我校定于2017年5月2日舉辦研究生靈犀學(xué)術(shù)殿堂——Zhenpeng Qin報告會,現(xiàn)將有關(guān)事項通知如下:

1.報告會簡介

報告人:Zhenpeng Qin 副教授

時 間:2017年5月2日(星期二)下午15:00

地 點(diǎn): 友誼校區(qū) 航天學(xué)院6號樓4樓研究生教室

主 題:Optically-triggered Compound Ultrafast Release to Study Real-time Brain Activity

內(nèi)容簡介:

Understanding how the brain controls behavior requires advanced tools to manipulate brain activity. Inspired by recent progress in optogenetics and caged compounds, the overall objective of our research seeks to develop a new set of tools that will allow localized and ultrafast control of brain activity to influence behavior without genetic modification. Briefly, our new technique involves using light stimulation to rapidly release compounds that are encapsulated in tiny nanometer-sized particles. Specifically, plasmonic gold-coated liposomes, i.e. plasmonic liposomes, consist of a liposomal core and a thin gold nanoparticle shell. Near-infrared laser pulse activates plasmonic liposomes to rapidly release the encapsulated compounds. We observed that near-infrared laser irradiation triggers the release of fluorescent dye from plasmonic liposomes within 0.1 ms and the release is highly dependent on laser pulse number and energy. Furthermore, we have demonstrated this capability using in vitro assays including regulating calcium signaling and neuron inhibition. Compared with other techniques including caged compound, this ultrafast near-infrared light-driven molecular release method is easily adaptable to deliver a wide range of bioactive molecules with an ultrafast optical switch, enabling new possibilities to investigate brain activities within individual neurons and neural networks.

2.歡迎各學(xué)院師生前來聽報告。報告會期間請關(guān)閉手機(jī)或?qū)⑹謾C(jī)調(diào)至靜音模式。

黨委研究生工作部

航天學(xué)院

2017年4月27日

報告人簡介

Zhenpeng Qin is an assistant professor of Mechanical Engineering at The University of Texas at Dallas, with joint appointments in Bioengineering and Surgery (UT Southwestern Medical Center). He received his PhD and post-doctoral training in the Departments of Mechanical Engineering and Chemical Engineering, respectively, both at the University of Minnesota (2009 – 2014). Prior to Minnesota, he obtained a BS in Thermal and Power Engineering from Xi’an Jiaotong University (2007) and a MS in Mechanical Engineering from University of Akron (2009). His research interests center on the fundamental understanding of the nano-thermo-bio interface between nanoparticles and biomolecules (proteins and lipids) and applications of this knowledge to diagnose infectious disease diagnostics and understand the brain. He received external funding from the National Science Foundation (NSF), Cancer Prevention and Research Institute of Texas (CPRIT), UT seed grants, and non-profit organizations. He has published in many leading interdisciplinary journals including Advanced Functional Materials, Angewandte Chemie, Annals of Biomedical Engineering, and Chemical Society Reviews.

真钱的棋牌游戏网站| 足球百家乐官网系统| 昌都县| 至尊百家乐年代| 新宝百家乐官网网址| 百家乐已破解的书籍| 百家乐官网的赚钱原理| 金字塔百家乐的玩法技巧和规则| 澳门百家乐官网实战| 威尼斯人娱乐城官方网址| 百家乐游戏官网| 百家乐官网注册优惠平台| 百家乐桌子定制| 百家乐官网娱乐礼金| 网上百家乐官网如何打水| 皇冠现金网哪个最好| 百家乐伴侣| 百家乐只打一种牌型| 做生意大门方位风水| 皇冠百家乐官网赢钱皇冠| 香港六合彩结果| 哪个百家乐投注好| 百家乐官网赌场代理合作| 钟山县| 六合彩现场开奖| 威尼斯人娱乐场送1688元礼金领取lrm | 赌博游戏网站| 大发888送钱58元| 百家乐投注法| 百家乐怎么赢对子| 澳门百家乐官网网络游戏信誉怎么样| 百家乐官网优博u2bet| 百家乐官网稳赢玩法| 永利线上娱乐| 速博| 瑞丰娱乐城| 巴厘岛百家乐的玩法技巧和规则 | 大渡口区| 必博备用| 四海资迅| 金冠娱乐城怎么样|