A novel laser confocal biochip scanner was given in this paper.
本文提出了一种新颖的激光共焦生物芯片扫描仪.
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Confocal double - track electrified railway runs through the North and the South Pacific.
双轨 电气化太焦铁路贯穿南北.
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The color change is observable using a confocal microscope.
可使用共聚焦显微镜观察.
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Confocal microscopy is an important measurement technique for micro structure.
共焦显微术是一种重要的微小物体测量技术.
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Statistically significant correlations were found between clinical data and confocal microscopy data.
临床资料和共聚焦显微镜资料中发现有显著的统计学关联.
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This fluorescent image was captured using a confocal microscope.
这种荧光图像是利用共聚焦显微镜捕获的.
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Thrombi were imaged via high - resolution confocal microscopy.
血栓的影像通过 高分辨率 显微镜.
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Results were recorded by confocal Ca 2 + imaging with a Zeiss LSM - 510 confocal microscopic system.
实验结果均由ZeissLSM -510激光共聚焦显微镜系统记录.
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Discussed the optical imaging principle the digital microscope system and the laser scanning confocal microscope system.
本文的主要内容分为:1.讨论了数码显微镜系统及激光扫描共聚焦显微镜系统的光学原理.
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Moreover , the induced bacteria could emit bright green fluorescence by confocal laser scanning microscope.
诱导表达的菌体在激光共聚焦显微镜下可发射明亮的绿色荧光.
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Methods: Laser scanning confocal microscope combined with immunohistochemical double labeling Methods: Were used.
方法应用激光共聚焦显微镜结合免疫组织化学双标技术.
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As a new noninvasive microscopy , confocal microscopy has been used to investigate corneal dystropies.
共焦显微镜作为一种新型的、无创伤的光学显微镜, 已应用于角膜营养不良的研究.
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CONCLUSION: It was feasible to study the architecture of plaque biofilm by using confocal laser microscope.
结论: 应用激光共聚焦显微镜技术研究菌斑生物膜结构是一种可行的方法.
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Confocal laser scanning microscopy is an advanced technology for molecular and cellular biology.
激光扫描共聚焦显微术是先进的分子和细胞生物学研究技术.
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Consequence: we saw that the CD 42 a , TSP and CD 9 expression adqulis on cell surface by confocal microscopy.
结果: 利用激光扫描可见CD9、CD42a、TSP均匀的表达了细胞表面.
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