microscopic imaging 中文意思是什麼

microscopic imaging 解釋
顯微鏡成像
  • microscopic : adj. 1. (像)顯微鏡的。2. 用顯微鏡可見的;微觀的;極微的(opp. macroscopic)。adv. -ically 1. 用顯微鏡。 2. 極微。
  • imaging : 成像
  1. China university of science and technology li yin - mei group, proposed to dark field microscopy observation of light scattering technology and optical tweezers capture the idea of combining the traditional optical microscope optical tweezers system from the side of a bouquet of flake coupling laser irradiation samples, laser incident in a specific location, so that samples of the particles scattered light through the microscope imaging ; overcome the well - optical tweezers and microscopic imaging of laser irradiation, as well as strictly coincidence of the three key technologies to achieve the optical tweezers capture 100 nanometer - styrene ball at the same time also in the entire field of view of microscopic observation of nano - particles, to capture optical tweezers nanoparticles can also observation purposes

    中國科學技術大學李銀妹課題組,提出將暗場顯微術觀察光散射的技術與光鑷捕獲相結合的設想,在傳統光學顯微鏡光鑷系統上從側面耦合一束片狀激光照射樣品,在特定的激光入射位置,使樣品中粒子的散射光可通過顯微鏡成像;克服光鑷的阱位與顯微成像面以及激光照射面三者嚴格重合的技術關鍵,實現了光鑷捕獲100納米聚苯乙烯小球的同時也能在整個顯微視場中觀察納米粒子,達到了光鑷捕獲納米粒子的同時也能觀測的目的。
  2. Some methods such as image cytophotometry, fluorescence microscopic imaging, infrared ( nearinfrared ) and raman microscopic imaging, magnetic resonance imaging and scanning probe microscopic imaging are discussed emphatically, and the conceivable direction in the future has been suggested

    重點討論了圖像細胞光度測量、熒光顯微成像、紅外(近紅外)與拉曼顯微成像、磁共振成像和掃描探針顯微鏡成像等技術,並展望了單細胞成像的發展前景。
  3. Discussed the optical imaging principle of laser confocal scanning microscopic imaging system whose important character is high plane resolution and high depth resolution. analyzed the controlling technique of scanning imaging. according to the different needs for laser confocal scanning microscopy and gene - chip scanner, two kinds of scanning methods, optics scanning and object scanning, are presented

    討論了激光共聚焦掃描顯微成像系統的光學原理及其成像的重要特點,即激光共聚焦掃描顯微成像系統不僅具有高的平面解析度而且具有很高的深度解析度;分析了系統的掃描成像控制技術,根據激光共聚焦掃描顯微鏡系統和基因晶元掃描儀的不同需要提出了兩種掃描方式,即光學掃描方式和物體掃描方式,指出了兩種掃描方式的優缺點,並對各自的成像非線性畸變問題進行了探討,提出了解決方案。
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