JLO: As an academic scientist, I worked in the fields of cell biology, biophysics, and physiology, doing research and teaching at major universities and laboratories in the US and abroad. 作为一名学院科学家,我曾在美国和国际上众多知名学府和实验室从事研究及教学,涉及细胞生物学,生物物理学和生理学领域。
D., research assistant professor in the Center for Single Cell Biophysics, was a major contributor to this research, which is supported by a grant to Sachs from the National Institutes of Health. Suchyna博士是单细胞生物物理学中心的助理研究教授,为本研究作了重大的贡献,研究由美国国家卫生研究院资助Sachs。
This is the web page of Cell Biochemistry and Biophysics. 这是细胞生物化学与生物物理学的网页。
METHODS: The experiment was completed in the Laboratory of Cell Biophysics, Institute of Biophysics, Chinese Academy of Sciences. 方法:实验于2001年在中国科学院生物物理所细胞生物实验室完成。
To obtain an quantitative understanding of cell adhesion requires biophysics and biomechanics. 要对细胞粘附现象及其功能做定量的研究,不能离开生物物理及生物力学。
For example, the application in protein folding in molecular biophysics, protein transport in cell biophysics, electrical neuron systems and ionic channel in neuron biophysics has become one of the important forward subjects hi international theory physics and biophysics. 如在分子生物物理中的蛋白质折叠、细胞生物物理中的蛋白输运、神经生物物理中的电神经系统,离子通道等等方面的应用成为国际理论物理与生物物理学界研究的重要前沿课题之一。
The advance of cell proliferation about Various Physical conditions in the field of the biophysics is presented in this paper. 本文介绍了生物物理领域中不同物理环境对体外培养的动物细胞增殖方面的研究进展。着重介绍了各种电磁场对不同细胞增殖的影响;
The technology support of physics in Molecular Biophysics, Cell Biophysics, Radiation Biophysics and Optics Biophysics is analyzed or introduced in the fifth part. 第五章首先从实验生物物理学的角度重点分析了分子生物物理与细胞生物物理中物理技术的作用与地位,而后对辐射生物物理和光生物物理等分支作简单的物理支撑作了简单介绍。
Acoustic radiation pressure can control particles without damage and contact. This effect can be applied widely in Cell Biology, Biophysics, Biomedical Engineering and other fields. It has been one of the hot research points for the scientific community and engineering. 利用声辐射力可以实现无损、非接触操控微纳米粒子,该效应在细胞生物、生物物理、生物医学工程等领域具有广泛的应用前景,是最近科学界和工程界的研究热点之一。
As a consequence, the detection system is fit for studying the calcium-dependent life function in single cell with high temporal resolution and acts as a key tool in cell biology and membrane biophysics fields. 因而适合于在单细胞水平研究高时间分辨率的钙依赖的生理功能,为细胞生物学和膜生物物理学等领域的研究提供一种重要的工具。
Patch clamping technique which brings us great innovation on physiology research at cell or molecules level is an advanced research method in the field of electrophysiology, and plays a very important role in modern biophysics 'research field. 膜片钳技术是一种先进的电生理研究手段,带来了细胞和分子水平的生理学研究革新,在现代生物物理研究领域扮演着重要角色。