This paper reviews the principle and application of CGH and CGHa.
本文综述了CGH和CGHa技术的原理及应用.
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Objective To evaluate the effect of comparative genomic hybridization ( CGH ) in lymphoma.
目的评价比较基因组杂交 ( CGH ) 技术在淋巴瘤研究中的应用价值.
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Conclusion FISH technique is effective and useful in the identification of BAC clones for array CGH.
结论:BAC克隆作为探针点样制备CGH微阵列时,FISH法鉴定是必要的.
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Conclusion The CGH technique is an useful tool in the genetic study of lymphoma.
结论 CGH技术是淋巴瘤遗传学研究中的有用工具.
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Methods: We investigated chromosomal DNA copy number changes in 3 ESCC cell lines by comparative genomic hybridization ( CGH ).
方法: 采用比较基因组杂交法 ( CGH ) 分析3种ESCC细胞系的染色体DNA拷贝数改变情况.
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Primary results of Lohmann - type CGH ( computer - generated holog - rams ) and differential filters are presented.
并得到了制作 Lohmann 型 计算全息 图和计算全息微分滤波器的初步实验结果.
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Methods Comparative genomic hybridization ( CGH ) analysis was performed in 10 central neurocytomas.
方法应用比较基因组杂交技术,研究10例中枢神经细胞瘤的遗传学改变.
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An anti - counterfeiting approach combining CGH and holographic interference is presented in this paper.
提出了一种将计算全息和全息干涉相结合的防伪方法.
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The problem of combining CGH with optical holography, an image hologram is recorded.
最后将计算全息和光学全息相结合,以菲涅耳计算全息图的光学再现像为对象, 记录光学像全息.
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The in - line and off - line optical reconstructions of CGH are introduced , also some algorithms of digital reconstruction.
重点介绍了 计算全息 的再现方法,比较了同轴再现和离轴再现的优缺点以及数字再现的几种算法.
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A anti counterfeiting method using CGH phase coding is presented in this paper.
提出一种计算全息位相编码防伪方法.
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CGH analysis indicated copy number gains of 1 p 1, 1 q 2 - 4,2 p 1,2 q 1,5 p, 7 p 14,7 q 21,11 q 1,15 q 2,20 q and losses of 2 p 2,2 q 2,3 p , 4,9 p, 14,18, Xq.
比较基因组杂交结果得出染色体1p1、1q2-4 、 2p1、2q1、5p 、 7p14、7q21、11q1、15q2 、 20q扩增, 其中5p表现出高水平的扩增.
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