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博士生江新兵参加国际会议回国报告

发布时间:2016-11-07 点击数:

博士生江新兵参加国际会议回国报告

一、汇报安排

题目:参加IEEE-NANOMED 2016

时间:2016年11月8号 10:00-12:00

地点:交大曲江校区西五楼A428

报告人:博1115江新兵

二、参加国际会议信息

会议名称:IEEE-NANOMED 2016 (THE 10TH IEEE INTERNATIONAL CONFERENCE ON NANO/MOLECULAR MEDICINE AND ENGINEERING)

会议地点:China,Macau

会议时间:Oct 30-Nov 2 2016

会议简介:IEEE-NANOMED is one of the premier annual events organized by the IEEE Nanotechnology Council to bring together physicians, scientists and engineers alike from all over the world and every sector of academy and industry, working at advancement of basic and clinical research in medical and biological sciences using nano/molecular and engineering methods. IEEE-NANOMED is the conference where practitioners will see nano/molecular medicine and engineering at work in both their own and related fields, from essential and advanced scientific and engineering research and theory to translational and clinical research.

Conference Theme:

Nano and molecular technologies in medical theranostics

Nanotechnology in drug delivery

Biomedical imaging

Bio/nano sensing

Biochips and Bio-MEMS

Biomechatronics

Biological interface

Cells at the nanoscale

Frontiers in nanobiotechnology

Translational medicine

会议交流工作:Thermal Mapping with Quantum Dots in a Living Cell.

三、参加论文信息

Title:Thermal Mapping with Quantum Dots in a Living Cell.

Author: Xinbing Jiang, Xiaoli Qu and Ben Q Li

Abstract: A photothermal experimental system for intracellular thermal mapping is presented, which makes the use of aqueous CdTe/CdS/ZnS quantum dots as the thermal sensors and allows the measurement of temperatures in living cells embedded with the QDs via temperature-dependent photoluminescence (PL). Measured data show that the QDs synthesized in our laboratory have a thermal-PL sensitivity of 0.16nm/℃. An uptake of QDs into living cells is made accomplished by the liposome transfection method. The intracellular temperature measuring capabilities of the system is demonstrated by the use ofionomycin calcium ions as a cellular thermogenesis accelerator to autonomously induce temperature changes in living cells. By adjusting the optical components in the measurement system, the QDs can be located and their PL emission variation as a function of temperature in a living cell was measured.

欢迎各位感兴趣的同学前来交流。

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