Optical micro-manipulation is a new type of technology for micro-control, micro-fabrication and micro-measurement, which combines the capabilities of optical tweezers, femtosecond laser scissors and micro-spectrometer.
本论文建立了一套多功能光学微操纵系统,它集成了激光光镊、飞秒激光光刀、显微光谱仪、暗场显微等多种功能,可广泛应用于生物医学、材料化学、纳米科技等领域。
Using addit ive material to clear beer substrate as the mimic deposit oc-curring in beer,w e carried out systematic research on microscope-dye stain method for beer dep osit identification w.
通过对酒基外添加可能成为啤酒沉淀的物质,进行系统的模拟悬浮物的染色显微成像技术的研究,为真正的啤酒悬浮物的快速鉴定奠定了理论依据和基础。
In this paper, the research has been given on the double weldable ceramic cutting tool by means of the acoustic microscope.
利用声学显微镜对双层可焊接陶瓷刀具材料进行研究,对双层材料界面及影响材料品质一致性的因素进行了分析,发现了两种材料在界面结合处分布不均匀及成块状分布等现象,并提出了改进材料设计的思路。
A laser scanning confocal microscope that utilizes a single-mode optical fiber as both the source and the datection aperture is described.
本文探讨一种使用单模光纤同时作为点源与点探测器的激光共焦扫描显微系统。
In the experiment,we studied the characteristicsof anaerobic granular sludge by microscope.
厌氧颗粒污泥是EGSB反应器高效稳定运行的关键,通过显微观察研究了EGSB反应器初期启动过程中颗粒污泥的特征。
Oil-in-water concentrated emulsion systems containing soy proteinconcentrate(SPC), functional soy protein concentrate (FSPC), soy protein isolate(SPI) and commercial soy protein isolate (CSPI) were characterised by looking atrheological properties and microstructure.
本课题以不同工艺制得的醇法大豆浓缩蛋白(SPC),功能性大豆浓缩蛋白(FSPC),大豆分离蛋白(SPI),商业大豆分离蛋白(CSPI)为主要原料,并以乳化性能优良的酪蛋白钠(sodium casein )作为对照,在低速搅拌的条件下,制备不同比例的高浓度大豆蛋白乳化体系,主要以流变和显微观察的方法来表征不同乳化体系的性状,并通过不同溶剂条件下的溶解性能、表面疏水性指数、分子量分布、特性粘度、紫外差示和DSC等手段,从分子间作用力,分子量分布及形态和构象稳定性三个方面研究各大豆蛋白样品间的差异及其和高浓度乳化体系间的联系,并进行机理方面的探讨。
Optimizing the optical field distribution of solid immersion lens microscopy systems using the three-zone amplitude-only and phase-only filters;
用三区振幅和相位滤波器优化固体浸没透镜显微系统的光场分布
METHODS TLC and microscopy have been used in the qualitative study of Yushangling Capsules, and TLCS method was used to determine the Ginsenoside R gl content of Ginseng.
方法 采用薄层色谱法和显微鉴别对愈伤灵胶囊进行定性研究 ;并用薄层扫描法测定制剂人参中主要有效成分———人参皂苷Rgl的含量。
According to optical imaging theory and the point spread function of digital holographic system,the imaging resolution of the digital holographic microscopy was investigated.
根据成像理论和全息系统的点扩散函数,研究了数字全息显微系统的成像分辨率,给出了无预放大和有预放大情况下成像分辨率的表达式,指出了只有当CCD的成像分辨率等于或高于显微物镜(MO)的成像分辨率时,预放大数字全息系统的成像分辨率才取决于显微物镜的数值孔径(NA);反之,系统的成像分辨率则取决于CCD的数值孔径。