• 探索了探针长度、探针位置杂交信号影响

    The effects of the length and location of probes on hybridization signal were studied.

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  • 结果同一细胞内可见桔黄色蓝紫色颗粒杂交信号

    Results: the double signals in orange yellow mixed with bluish violet colors were found in the same cells.

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  • 结果发现人原发性肝癌组织中间细胞肿瘤细胞均杂交信号

    It was confirmed that both mesenchymal cells and tumor cells had hybridized signals. in PLC tissue.

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  • 获得一些杂交信号的噬菌斑,并目的片断进行克隆序列分析

    Some Positive clones were obtained. Meanwhile, the insert fragments were cloned and sequences were analyzed.

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  • 回肠隐中、上部上皮细胞中强的杂交信号在隐窝的底部上皮细胞中无杂交信号

    The columnar epithelium of intestinal crypts have hybridize signal, but basal epithelium of intestinal crypts have not hybridization signals.

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  • 通过研究不同溶剂来溶解pcr产物点样对杂交信号影响使基因芯片技术环节得到优化。

    By researching how spotting affect the hybridizing signal after dissolving PCR products with different impregnant, we hope to optimize the technology of microarray.

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  • 目的观察标记随机渗入标记法、末端转移标记法三种荧光标记法寡核苷酸芯片杂交信号影响

    Objective to observe the impact of three fluorescence marker methods of primer marker, random inleakage marker and terminal transfer marker to Oligonucleotide microarray hybridize signal.

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  • 神经损伤第3,714,感觉、运动和副交感神经元内杂交信号明显增强第7天的变化最为显著。

    Clearly enhanced hybridization signals were observed at the 3rd, 7th and 14th day after injury, especially at the 7th day.

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  • 同时,验证选择重复序列含量较少玉米BAC作为FISH杂交探针也是获得特异性杂交信号重要条件。

    The results demonstrated a important factor of receiving specific signals of BAC-FISH by select maize BAC-probes for lesser content repeat sequences.

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  • 结果SARS阳性样品核苷酸芯片杂交后出现阳性杂交信号,具有不同二级结构寡核苷酸探针杂交信号强度不一。

    Results: Positive SARS samples were detected by oligonucleotide array and fluorescence signal intensity was highly related to the probe's second structure.

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  • 材料固定蓝光激发,均产生细胞内源的叶绿素甲藻素等色素荧光干扰杂交信号的现象,说明固定材料的方法正确

    After being fixed and excited by blue light, there was no autofluorescence from algal cell chlorophyll and phycopyrrin observed under epifluorescent microscopy, which show that the fixation is valid.

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  • heurippa不会祖先进行杂交因为那种内特异性的翅膀图案会作为信号表明它属于它们

    H. heurippa does not crossbreed with its ancestors because species-specific wing markings signal that it does not belong to them.

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  • 免疫组化原位杂交阳性信号位于单核巨噬细胞系统胞浆内。

    The positive signals of immunohistochemistry and in situ hybridization were mostly located in cytoplasm of monocyte-macrophage system.

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  • 模板扩增杂交以及信号放大相结合的有pcr- ELISA技术、实时荧光pcr技术、生物芯片技术。

    PCR-ELISA and real fluorescence PCR associate the template Amplication and hybridization with the signal magnification.

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  • 线期染色体荧光原位杂交结果表明大多数染色体末端都串联重复信号强度不同染色体不同的。

    Pachytene FISH results showed that most of chromosome ends possess the telomere tandem repeats, but the signals on different chromosomes were not the same in intensity.

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  • 通过构建适应度函数,根据信号适应度函数进行遗传选择,舍弃不稳定信号,对有用信号进行杂交,从而获得较高的定向精度

    The instable signal is abnegated and the steady signal is intercrossed for improving the precision through constructing adaptive function and the process of genetic selection.

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  • 杂交阳性信号主要分布集合管上皮细胞

    The positive signal of ISH was mainly distributed in the epithelium of renal tubule and collecting duct.

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  • 进一步研究基因功能下游信号传导机制,本试验对两个基因作了酵母杂交分析

    In order to study the functions and downstream signal transduction mechanisms of these two genes, yeast two-hybrid analysis of the two genes was made in this paper.

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  • 本论文中主要研究基因芯片图像分析数据处理,从而提取出基因芯片杂交反应信号点的亮度信息获得有用生物信息。

    In this paper, we study mainly the methods of Gene image analysis and data processing. It can extract the hybridizing intensity and obtain the useful biological information.

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  • 酵母杂交结果显示CK1A蛋白蓝光CRY2蛋白发生相互作用, 暗示CK1A基因可能参与拟南蓝光信号传导途径。

    The yeast two-hybrid analysis demonstrated that CK1A and CRY2 can interact in vivo under blue light, which indicates that CK1A may play an important role in blue light signal induction of Arabidopsis.

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  • 描述基于ISP器件下设计通灯信号控制器电路图、ABEL—HDL描述语言编程

    We described the circuit diagram of Complex Traffic Controller Basing on ISP device and the programming of ABEL HDL language.

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  • 描述基于ISP器件下设计通灯信号控制器电路图、ABEL—HDL描述语言编程

    We described the circuit diagram of Complex Traffic Controller Basing on ISP device and the programming of ABEL HDL language.

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