微阵列芯片

  • 网络Microarray;microarray chip
微阵列芯片微阵列芯片
  1. 应用cDNA微阵列芯片技术筛选猪蛔虫性别差异表达基因的研究

    Profiling and Identification of Gender-specific Expressed Genes in Ascaris suum by cDNA Microarray Analysis

  2. 用cDNA微阵列芯片检测苯中毒细胞色素P450基因表达差异

    Analysis on differential expression profile of cytochrome P450 genes in benzene poisoning cells using cDNA microarray

  3. 应用cDNA微阵列芯片筛选胃癌相关基因

    Screening differentially expressed genes of gastric adenocarcinoma by cDNA microarray

  4. 图像SPR分析仪及其微阵列芯片的研制

    Development of Imaging SPR Analyzer and Its Micro-array Sensing Chips

  5. 一种检测microRNA表达的微阵列芯片的研制及应用

    Construction and Application of a Microarray for Profiling MicroRNA Expression

  6. 实验结论:1.微阵列芯片是有效的高通量分析SLE及肾移植急性排斥反应TF差异表达的研究手段。

    Microarray chip is the effective approach for the high-throughput analysis of TFs expression profile in SLE and acute rejection of renal transplantation . 2 .

  7. 表面等离子共振成像非标记微阵列芯片检测

    Label-free detection of microarray chips based on surface plasmon resonance imaging

  8. 微阵列芯片图像扫描与自动分析技术研究

    Study on Microarray Scanner and Automatic Analysis Algorithms ; automatic scanning microdensitometer

  9. 一种检测小鼠转录因子活性的微阵列芯片的构建及应用

    Construction and Application of a Microarray for Profiling Mouse Transcription Factor Activities

  10. 蛋白质微阵列芯片技术及其在抗体筛选中的应用

    Protein Microarray Technology and Its Application in Antibody Screening

  11. 传统的微阵列芯片对微量生物样品及低丰度基因的表达的检测,需要对样品进行扩增。

    Toward minute sample and low abundant gene expression , traditional microarray requires sample amplification .

  12. 微阵列芯片的荧光光漂白特性

    Fluorescence Photobleaching Properties for Microarray Chips

  13. 用磁珠回收特异性杂交的探针,经生物素标记的通用引物扩增后,与相应的寡核苷酸微阵列芯片杂交。

    The selective probes after MAPH were collected with streptavidin coated magnetic beads and amplified by a biotin labeled universal primers .

  14. 实验表明,多孔硅为基底的单糖微阵列芯片能够有效的应用于糖与凝集素相互作用的研究。

    The experiment shows that monosaccharide microarray with porous silicon as substrate could be used in investigating the interaction between monosaccharide and lectin .

  15. 照相地图根据航空照片上附加的导向数据和标记而绘制成的地图表面等离子共振成像非标记微阵列芯片检测

    A map made by superimposing orienting data and markings on an aerial photograph . Label-free detection of microarray chips based on surface plasmon resonance imaging

  16. 作为一种新型的化学生物微分析技术平台,一维微流控微珠阵列芯片(简称一维芯片)结合了微流控芯片技术、微阵列芯片技术和微珠非均相识别技术的优点。

    As a novel chemical / biological microanalysis platform , One-dimensional microfluidic beads array chip ( 1-D chip ) combines the merits of microfluidics , microarray and beads heterogeneous binding technologies .

  17. 本文主要针对单个量子点在水中与空气中荧光特性的差异及单分子水平上的微阵列芯片的定量开展研究。

    This thesis studied the properties difference of QDs in water / air and quantitative method on microarray chip at single molecules level . The main work were as follows : 1 .

  18. 随着蛋白质组学的兴起,蛋白质芯片即蛋白微阵列芯片凭借其高通量、高特异性和高灵敏度等特点也在蛋白质组学的研究中起到了重要的作用。

    With the rise of proteomics , protein microarray has also played an important role in the research of proteomics by virtue of its high-throughout , high-specificity as well as high sensitivity .

  19. 对比商业化的荧光信号值,结果表明单分子定量方法用于微阵列芯片的定量研究可行。

    The compared results of molecule density and fluorescence signal of commercial platform indicated our single molecules quantitative method was feasible for microarray chip and a better limit of detection can be obtained .

  20. 目前针对基因表达型芯片的图像处理和数据分析的研究尚处于起步发展阶段,特别是作为微阵列芯片数据分析早期阶段进行的标准化(或称为归一化)问题,还需要有更多的完善和创新。

    Now there have been quite a few methods including sophisticated mathematical models that are used to analyze image and data of gene chip , especially normalization of data analysis earlier , which will be perfected and innovated further .

  21. 应用DNA微阵列(芯片)技术系统分析宿主基因表达,是一种从宿主细胞中发现潜在抗病毒靶标的有效方法。

    A systematic approach to find these potential cellular antiviral targets is host gene expression analysis using DNA microarrays .

  22. 综上所述,本论文研制成一种新型图像SPR分析仪,可对微阵列敏感芯片进行动态检测,实现高通量、多参数、多组份快速检测。

    In conclusion , this paper develops a new imaging SPR analyzer and micro-array sensing chips which can be used for real-time label-free detection of biomolecules .

  23. 高密度微阵列基因芯片技术在微生物分子生态学研究中的运用

    Using High-density Universal 16S rRNA Microarray in Microbial Molecular Ecology Research

  24. 基于图像的微阵列生物芯片分析

    A Survey on Image-based Microarray Analysis

  25. 新近发展的组织微阵列/芯片技术是将多个细小组织片整齐排列于同一载体而成的缩微组织切片,具有体积小、信息含量高的特点。

    Tissue microarray / chip is a newly developed array-based high throughput technique with a conspicuous characteristic of small volume rich in information that facilitates gene expression investigation of very large numbers of tumors simultaneously .

  26. 实验结果初步表明,该扫描仪可用于微阵列PCR基因芯片的检测。

    Preliminary experiments have shown that the scanner can detect Micro-array PCR chip .

  27. 微阵列PCR基因芯片扫描仪的研制

    Research and Design of Micro-array PCR Chip Scanner

  28. cDNA微阵列和寡核苷酸芯片等高通量检测技术的成熟应用,产生了大量的基因表达数据,其中包括静态数据和时序数据。

    The mature application of high-throughput detection technology , such as cDNA microarray and oligonucleotide microarray , produced a large amount of gene expression data , including static data and time series data .

  29. 植物功能基因组学的研究方法主要包括:表达序列标签(EST)、基因表达序列分析(SAGE)c、DNA微阵列和DNA芯片、反求遗传学、蛋白质组学和生物信息学;

    The research metheds of functional genomics , mainly include Expressed Sequence Tag ( EST ), Serial Analysis of Gene Expression ( SAGE ), cDNA microarrays and DNA chips , Reverse genetics , Proteomics and Bioinformatics .

  30. 基于图像分析技术和自动进样技术,该仪器可对微阵列SPR敏感芯片进行动态检测,实现高通量、多参数、多组分快速检测和定量分析。

    Based on SPR biosensor principle , combined with image processing technology and auto sampler robotic arms , the instrument can monitor the biochemical reaction kinetics occurred at the surface of micro-array SPR biosensor , enabling high-throughput , multi-analyte fast detection .