显微技术
- microtechnique;microtechnic
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菌根装片显微技术的改进
The improvement of the mycorrhiza slice fixation microtechnique
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采用扫描电子显微技术和热分析对木塑复合机理进行研究。
By using scan electron microtechnique and thermal analysis , wood plastic composite mechanism is studied .
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激光软X射线高速显微技术的现状与发展
The present situation and development of laser soft X-ray microscopy
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CO2激光显微技术治疗蝶鞍区肿瘤
CO_2 laser-microscopy technique in treating tumors near the sella turcica
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STM和AFM的研制针尖上的世界&显微技术大观
Developing Work of STM and AFM The World of Needle Tip
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扫描探针显微技术在TiO2表面研究中的应用
Surface Study of TiO_2 by Scanning Probe Microscopy
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PCR及相差摄像显微技术用于宫颈柱状上皮中UU的研究
Study on Ureaplasma Urealyticum in Cervical Columnar Epithelial Cell by Polymerase Chain Reaction and Phase Contrast Photography Microscope
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共聚焦显微技术研究SA对蚕豆气孔保卫细胞的影响
Effect of Salicylic Acid on Stomatal Movement in Guard Cell of Vicia faba by Laser Scanning Confocal Microscopy
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采用差热分析(DTA)、X射线衍射(XRD)和透射电子显微技术(TEM)分析了产物的组织形态。
The microstructure and morphology of products were examined by differential thermal analysis , X-ray diffraction , and transmission electron microscopy .
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FTIR显微技术在阻燃木材炭化过程及阻燃剂渗透研究中的应用
Application of FTIR Microscopy in the Research of Charring of Fire Retardant Wood and Penetration of Fire Retardant into Wood
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在生物组织结构再现的研究中,对于目前常用的生物组织切削照相、Xray、超声这些方法,OCT作为一种无损高分辨率的3D光学显微技术是一种很好的补充。
OCT as a tool for 3D optical microscopy will be an important alternative approach of biological tissues imaging studies such as X-ray , ultrasound .
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利用透射电子显微技术观察了不同条件下生长的KDP晶体中包裹物,并对晶体中的包裹体在热退火前后进行了比较。
The inclusions were compared after thermal annealing .
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目的:利用原子力显微技术(AFM)观察原代培养的海马神经元超微结构及其相互间的连接结构。
Objective To investigate the ultrastructure and the connection structures between primarily cultured hippocampal neurons with atomic force microscopy AFM .
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结合相位衬度成像和纳米CT等新技术,分析了X射线显微技术应用于细胞成像的优势、现状和前景。
The new techniques in X-ray microscopy such as Zernike phase contrast and nano-CT were introduced . The advantages , current situation and potential of X-ray microscopy in cellular imaging were analyzed .
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原子力显微技术(AFM)作为一门新发展起来的技术,提供了人们认识酶的结构与功能的又一新的窗口。
The newly developed atomic force microscopy ( AFM ) has opened a new window to the microworld of cells , subcellular structures and biomolecules .
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扫描电化学显微技术(SECM)是一种具有高空间分辨度的现场电化学新技术。
Scanning electrochemical microscopy ( SECM ) is a new electrochemical technology with high resolution .
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原子力显微技术(AFM)可直接测定生物大分子之间的作用力,为人们理解生命原理提供了一个新的手段。
The intermolecular forces of the biological samples may be measured by atomic force microscopy , which has provided a powerful means for us to understand the principles of living phenomena .
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如何将STM等显微技术与ECL技术结合以促进人们对生物大分子二级结构的认识、开发新的ECL试剂以及解决电极污染和毒化是ECL分析法当前发展中面临的问题。
How to linkup ECL with microscope techniques such as STM , develop new ECL reagents , overcome electrode pollution are main directions of ECL research .
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使用激光冲击对Al2O3陶瓷进行了冲击试验,并通过扫描电子显微技术,对陶瓷材料在强激光冲击下的断口形貌进行了分析。
Ceramic of Al_2O_3 was processed by laser shock processing ( LSP ) under different energies . The fracture morphology formed by strong LSP was studied with scanning electron microscopy ( SEM ) .
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从结晶角度出发对柴油低温性能方面的研究进展进行了综述,包括X射线衍射法、光学显微技术、热力学研究、热分析技术和分子模拟技术等测试技术的应用。
The advances in the research of cold flow properties of diesel fuel based on the crystallization of wax in diesel fuel were reviewed , including the application of the technology of XRD , DSC , photomicrography , thermodynamics and molecular simulation .
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应用冰冻切片、酶解分离、荧光显微技术和傅里叶红外光谱分析FTIR等手段,对华山松初生根和针叶内皮层凯氏带进行了分离、显微结构特征和化学成分的比较。
Casparian strips were isolated from primary roots and needles by enzymatic isolation , the cellular structure was observed under the fluorescence microscope and chemical characterization was analyzed by Fourier transform infrared ( FTIR ) spectroscopy .
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采用扫描电子显微技术(SEM)、透射电子显微技术(TEM)、背反射电子衍射技术(EBSD)等分析手段对AA2195铝锂合金过时效对析出相粒子组态、细晶组织的影响进行了研究。
The influence of over-aging treatment of AA2195 on the distribution of second phase particles was investigated by SEM , TEM , and electron back scatter diffraction ( EBSD ) .
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基于扫描探针显微技术(SPM)的数据存储技术由于能够实现纳米尺度的信息存储,因此有望成为新一代的超高密度存储技术。
The data storage with the aid of scanning probe microscopy ( SPM ) can record the nano scale information , so it is expected to be a next generation ultra-high-density storage technology .
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本文以实验为主要手段,以PMMA为研究对象,采用显微技术对高聚物蠕变条件下的银纹损伤引发和扩展进行了实时在线观测。
In this paper , we will make the experiment as a mostly measure , take the PMMA as a research object , an optical technique to observe the solicitation and spread of high polymer under creep in real time on line .
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新的设计思想带来新的技术革命,STM巧妙地利用探针近场(近距离)探测方法、隧道电流理论、压电陶瓷扫描方法等现代科学技术,大大扩展了显微技术的深度。
New design idea brings new technology revolution . Scanning Probe Microscope ( STM ) uses the methods of close probe detection , the theory of tunnel current and the technology of piezoelectricity chinaware to improve the pro ˉ fundity of electro-microscope .
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用晶体材料作试件,利用高空间分辨电子显微技术(HREM)记录晶格的变化,把它作为试件光栅,与一标准参考栅叠合形成云纹条纹。
High-resolution electron microscopy ( HREM ) is used to record the changes in the crystals . The lattice image , which acts as a specimen grating , is superposed onto a standard grating to produce moire fringes .
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目的探讨过氧化氢(H2O2)对三氧化二砷(As2O3)诱导人类伯基特氏淋巴瘤细胞凋亡的影响及双染法荧光显微技术在检测细胞凋亡中的作用。
Objective To examine the effects of hydrogen peroxide ( H 2 O 2 ) on arsenic trioxide ( As 2 O 3 ) - induced apoptosis of human Burkitt lymphoma cells and evaluate the value of fluorescence microscope in analyzing cellular apoptosis .
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它是传统PIV测量与光学显微技术相结合的一种整场、瞬态、定量测量方法,其基本测速原理与传统PIV相同,但在示踪粒子选择、图像获取和处理等方面两者存在较大差别。
It is a kind of full field , instantaneous and quantitative measurement method that combines traditional PIV with microscopic technology . Comparing with the traditional PIV , the basic principle is the same , but it is remarkably different in seeding selection , image acquisition and processing .
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方法1995年3月至2002年1月应用美国Medi-Therm公司生产的激光治疗系统(SLT)接触式激光器配合显微技术共完成各类脊髓髓内肿瘤手术25例,包括室管膜瘤8例;
Method Twenty five cases of intramedullary tumors had been operated on with the aid of SLT contact laser ( produced by Medi Therm Company of USA ) combined with microsurgery from March , 1995 to January , 2001 , including 8 ependymomas ;
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高空间分辨率的热测试技术&扫描热显微技术
The Thermal Measurement with High Spatial Resolution : Scanning Thermal Microscopy