1) COSM
计算光学切片
1.
An improved nearest neighbor subtraction algorithm was presented and applied in the Computational Optical Section Microscopy (COSM).
本文针对计算光学切片中的最近邻算法提出了一种改进算法。
2) computational optical sectioning microscopy(COSM)
计算光学切片显微术(COSM)
3) Computational Optical Sectioning Microscopy (COSM)
计算光学切片显微成像
4) computational optical sectioning microscopy
计算光学切片显微术
1.
In order to recover image, the laser scanning confocal microscopy (LSCM) or computational optical sectioning microscopy (COSM) can be used.
为了消除离焦模糊,可以采取激光扫描共焦显微术(LSCM)或者计算光学切片显微术(COSM)两种方式。
5) computation slicing
计算切片
1.
Especially,slicing technique is gaining increasing importance in engineering and academic research filed with the emergence of non-classical slicing techniques:computation slicing and proof slicing which are inspired by classical program slicing.
特别是从本世纪初,随着非经典切片:计算切片和证明切片两个新兴研究方向的出现,其学术研究和工程价值越发突出。
2.
timing diagrams and predication detection method with non-classical computation slicing optimization technique for synchronization.
该文提出一种改进的抽象时序图与基于计算切片优化技术的谓词检测方法相结合的同步验证技术。
6) optical sections
光学切片
1.
Study of F-actin in Liver Carcinoma Cells with Optical Sections of Confocal Laser Scaning Microscope;
肝癌细胞纤维肌动蛋白的共聚焦激光扫描显微镜光学切片观察
2.
F-actin marked by FITC-phalloidin and nucleic acid marked by PI in bladder cancer cells were observed by confocal laser scanning microscope to generate the optical sections,then analyzed by image-analysis procedure of confocal laser scanning microscope.
采用共聚焦激光扫描显微镜光学切片技术结合异硫酸氢荧光素 -鬼笔环肽 (FITC- phalloidin)标记纤维肌动蛋白和碘化丙啶 (PI)标记核酸的荧光探针双重标记技术对膀胱癌细胞纤维肌动蛋白进行形态学观察 ,结果可见膀胱癌细胞内纤维肌动蛋白微丝形态完整 ,成细束或细丝状 ,平行排列贯穿于整个细胞或细胞突起 ,在胞质边缘处较密集。
补充资料:光学磁盘将被电子计算机广泛应用
光学磁盘将被电子计算机广泛应用
光学磁盘将被电子计算机广泛应用
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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