芯片技术
- 名chip technology
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DNA芯片技术研究进展及其在分子营养上的应用
Advance and Application of DNA Chip Technology in Molecular Nutrition
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DNA芯片技术与新药的设计和开发
DNA Chip Technology in New Drug Design and Development
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利用组织芯片技术检测硒蛋白P在胃癌组织中的表达
Expression of selenoprotein P in multiple carcinoma tissues with tissue microarray
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DNA芯片技术中利用内标对数据归一化后检测基因的表达变化
Normalization of cDNA Microarray Data Using Exogenous Nucleic Acid Control in Gene Differential Expression Determination
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应用DNA芯片技术结合核技术对辐射致癌分子机制的研究
Application of DNA chip and nuclear technology to study on molecular mechanism of radiation carcinogenesis
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DNA芯片技术及其应用
DNA Chip Technology and its Application
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基因芯片技术是近年来出现的分子生物学与微电子技术相结合的最新DNA分析检测技术。
Gene chip technology is the latest DNA analysis and examining technology which combined molecular biology with microelectronics .
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基因芯片技术检测拉美夫定相关的HBV变异
Detection of HBV Mutation Associated with Lamivudine By Gene Chips
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建立了基因表达谱研究的cDNA芯片技术平台。
Established the platform for gene expression profile study with cDNA microarray .
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用基因芯片技术比较两组之间的基因表达差异,并用RT-PCR技术验证芯片结果。
RT-PCR was employed to validate the results of gene chip .
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应用DNA芯片技术研究细胞松弛素B诱导K562细胞脱核的分子机制
Applying the DNA Microarray to Study the Mechanism of Denucleation of K562 Cells Induced by Cytochalasin B
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结果基因芯片技术监测能有效分辨野生型和突变型HBV。
Results This microarray could clearly differentiate the wide-type from mutated-type HBV with lamivudine-resistance mutations .
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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
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随着半导体技术、芯片技术的发展,嵌入式PLC芯片组应运而生。
With the development of the technology of semiconductor and chip , embedded PLC emerges as the time requires .
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cDNA芯片技术的应用
The Using of the cDNA Microarrays Technology
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目的:研究基因芯片技术检测HBVdna及拉米夫定耐药株在临床应用中的特异性、实用性。
Objective : To study the specificity and practicability of genechip detecting HBV DNA and lamivudine resistant mutants in clinic .
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随着DNA芯片技术的广泛应用,基因表达数据分析已成为生命科学的研究热点。
Along with the research and extensive applications of DNA biochip technology , gene expression data analysis have become a hotspot in life science field .
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背景与目的:近年来兴起的DNA芯片技术能在一次杂交中同时监测数以千计的基因表达,能大大加速肿瘤药物作用机制的研究和药物治疗靶点的发现。
BACKGROUND & OBJECTIVE : The advanced technique of DNA microarray makes it possible to monitor the expression of thousands of genes simultaneously in one hybridization experiment .
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目的运用芯片技术研究内源性一氧化碳(CO)刺激下血管平滑肌细胞内增殖相关基因表达谱的变化。
Objectives To identify the gene expression profiles associated with the proliferation of vascular smooth muscle cells stimulated by carbon monoxide ( CO ) .
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一种新的基于单碱基延伸的SNP芯片技术
A new SNP microarray technology based on single base extension
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目的用基因芯片技术研究阿尔茨海默病(Alzheimer'SDisease,AD)患者与健康老人之间基因表达谱差异,筛选与AD病理过程相关联的基因。
Objective To study the gene expression difference between patients with Alzheimer 's disease and healthy elders , and to further search for the associated genes .
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蛋白质芯片技术在过敏原特异性IgE检测中的初步应用
Diagnosis of Serum Allergen-Specific IgE on Protein Chip
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它极大地推动了DNA芯片技术、生物信息技术、生命科学工业的兴起与发展;开辟了后基因组时代的新纪元。
It not only cause a prominent initiation and development of DNA chips technology , bioinformatics technique and bioscience industry , but also initiate the new era of post-genome .
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基因芯片技术即DNA微列阵技术是近年来在生命科学技术领域中,迅速发展起来的一项探索基因组功能的高新技术。
Gene chip technology , that is DNA microarray technology , is also a kind of high technology developed rapidly in the field of life science and technology presently .
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目前的分子生态学技术主要有核酸杂交分析技术、特异性PCR扩增技术、DNA序列分析、基因芯片技术等。
At present , molecular ecology technology mainly is nucleic acid hybridizing detection , PCR amplification , DNA sequence analysis , gene chip , and other technology .
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讨论与此种LED封装性能密切相关的议题:基础的芯片技术、合适的的封装设计和初级光学元件。
Discussed are the crucial components for the performance of this LED package as the underlying chip technology , the suitable package design and the fitting primary optics .
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组织芯片技术研究胆囊癌MMP-2和TIMP-2的表达及意义
Expression and significance Of MMP-2 and TIMP-2 in human gallbladder carcinoma by tissue microarray
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目的探讨基因芯片技术检测乙型肝炎病毒(HBV)6位点变异的临床意义。
Objective To study the clinical significance of the detection of hepatitis B virus ( HBV ) gene mutations by gene chip technique .
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模板扩增和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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以基因芯片技术研究黄芪多糖对NOD小鼠胰岛基因表达的影响
Effects of Astragalus polysaccharide on gene expression profiles in islets of NOD mice with microarray technique