这是一篇有关microplate, microarray analysis software的综述,是根据45篇发表使用实验的文章归纳的。这综述旨在帮助来邦网的访客找到最适合microplate, microarray analysis software。
Partek
为了研究特定转录因子在西红柿果实中的表达及其对果实质量的影响,采用了Partek Inc.的Partek Genomic Suite software v6.6进行基因微芯片实验。至该文献
为了研究线粒体UPR活化受ATFS-1输入效率调控,采用了Partek的Genomics Suite (v6.5)进行芯片分析实验。至该文献
为了研究许多子宫肌瘤病人的疾病是因MED12突变引起,采用Partek Incorporated的Partek Genomic Suite v. 6.5进行基因表达分析实验。至该文献
为了通过外显子测序研究NOTCH1突变与头颈部鳞状细胞癌相关,采用Partek的Genomics SuiteTM进行SNP检测实验。至该文献
为了研究p300调控的AML1-ETO融合蛋白乙酰化对白血病发生至关重要,采用Partek的Genomic Suites进行芯片数据分析实验。至该文献
为了研究肝脂代谢受HDAC3的调节主要依赖于HDAC3与基因组结合的昼夜节律式的变化,采用Partek Inc.的Partek Genomics Suite software进行microarray实验。至该文献
Bio-Rad
为了研究TACE运输和激活被iRhom2促进,采用了Bio-Rad的Bio-Plex Manager 3 software进行细胞因子测定实验。至该文献
为证实鞭毛蛋白可以在不激活先天性免疫的条件下诱导获得性免疫,使用了伯乐公司的Bioplex Manager version 4.0软件来进行细胞因子分析。至该文献
BioTek
为了在小鼠模型中研究sFlt-1对于维持无血管感光层的作用,BioTek的Gene5软件被用于进行酶联免疫吸附实验。至该文献
Affymetrix
为了研究膳食扰动对一个人类肠道菌群模型的影响,Affymetrix的Microarray Suite v5.0被用于进行微阵列分析。至该文献
为了研究Myrf对中枢神经系统髓鞘形成的调节作用,Affymetrix的Integrated Genome Browser被用于进行测序数据分析。至该文献
为了研究由植物表皮内特长链脂肪酸合成通过抑制细胞增殖控制的植物器官生长,采用了Affymetrix的基因芯片操作软件(版本1.4)进行微阵列分析实验。至该文献
为了研究特定转录因子在西红柿果实中的表达及其对果实质量的影响,采用了Affymetrix的GeneChip Command Console software进行基因微芯片实验。至该文献
为了研究线粒体UPR活化受ATFS-1输入效率调控,采用了Affymetrix的GeneChip Operating Software进行芯片分析实验。至该文献
为了结肠癌中增强子异常,采用了Affymetrix的Expression Console software进行基因表达分析实验。至该文献
为了研究卵细胞产生过程受MARF1调控,采用了Affymetrix的Gene Chip Operating Software version 1.2进行芯片分析实验。至该文献
为了研究许多子宫肌瘤病人的疾病是因MED12突变引起,采用Affymetrix的MAS 5 algorithm进行基因表达分析实验。至该文献
为了研究人肿瘤细胞中染色体的异倍性与STAG2的失活相关,采用Affymetrix的GeneChip Command Console Software进行基因表达芯片实验。至该文献
为了研究内含子剪接在发育障碍症MOPD I中的重要作用,采用Affymetrix的Genechip基因分型分析软件4.0进行基因分型。至该文献
使用Affymetrix基因芯片操作系统软件1.4版本来检验芯片原始数据,来研究细胞水通道的功能。至该文献
为了说明Smad2/3的激活能够促进靶标基因的表达,使用了Rosetta Biosoftware公司的Rosetta Resolver®基因表达分析软件来分析样本的筛选。至该文献
使用Affymetrix基因芯片处理软件来计算每个芯片上的探针信号强度,来证明IL-6 通过增加IL-21产物来促进抗体生成。至该文献
Molecular Devices
为了研究荚膜组织胞浆菌温度响应性毒力变化的机制,Molecular Devices的GENEPIX PRO版本6.0被用于进行微阵列分析。至该文献
为了研究U6atac snRNA的功能属性,Molecular Devices的GenePix Pro 6.0软件被用于进行微阵列分析。至该文献
为了研究BAP1突变能导致骨髓转化,采用了Molecular Devices的GenePixPro Software进行基因芯片实验。至该文献
为了研究发光杆菌科通过单启动子倒置实现致病与共生两种状态的转换,采用了Molecular Devices的SoftMax Pro进行生长速度测定实验至该文献
为了研究拟南芥中DNA去甲基化可被IDM1调控,采用了Molecular Devices的GenePix Pro6.0进行肽芯片实验。至该文献
为了研究K2P1的晶体结构,采用了Molecular Devices的Softmax Pro 5 software package进行离子通量实验。至该文献
为了研究减毒活疫苗能够激活恶性疟原虫孢子特特异的CD8+免疫细胞而激活免疫反应,采用Molecular Devices的Softmax Pro software进行ELISA实验。至该文献
为了表明在少突神经胶质瘤中染色体的易位t(1;19)没有使NOTCH2基因发生重排或者突变,采用了Axon公司的Genepix 5.1软件,用来进行图像分析。至该文献
BioDiscovery
为了研究拟南芥中乙烯介导的生长控制的分子机制,BioDiscovery的ImaGene软件被用于进行微阵列分析。至该文献
为了研究HIV的糖基化外膜能够被PGT抗体识别从而中和HIV病毒,采用BioDiscovery的Imagene进行数据分析实验。至该文献
为了通过分析吸烟老鼠的毒物基因组变化以揭示心脏中纤溶酶原激活物抑制剂基因表达的抑制,采用了BioDiscovery公司的软件ImaGene5.5,用来获得芯片的数据结果。至该文献
Agilent Technologies
为了研究小鼠乳腺上皮细胞在发育过程中的干细胞属性调控机制,Agilent的Feature Extraction 11.0.1.1软件被用于进行微阵列分析。至该文献
为了研究不同酵母菌株中基因调控的进化,Agilent的Feature Extraction 10.5.1软件被用于进行微阵列分析。至该文献
为了研究小鼠肠癌中存在Lgr5+干细胞,采用了Agilent的Feature Extraction进行转录分析实验。至该文献
为了研究发光杆菌科通过单启动子倒置实现致病与共生两种状态的转换,采用了Agilent Technologies的GeneSpring 11.0 software进行基因芯片实验至该文献
为了研究宿主对A型流感病毒的应答受新蛋白PA-X调控,采用了Agilent Technologies的Feature Extractor software进行芯片分析实验。至该文献
为了研究特定的骨髓细胞源自卵黄囊,采用了Agilent的Feature Extraction Software进行基因表达分析实验。至该文献
为了研究蜜蜂猎奇行为的分子机制,采用了Agilent的GENEPIX software进行基因芯片实验。至该文献
为了研究myc依赖的癌症需要SUMO化修饰来促进肿瘤发生,采用Agilent的Genomic Workbench feature extraction software进行shRNA筛选实验。至该文献
为了研究小鼠中器官的正常发育需要B型的核纤层蛋白的功能,采用Agilent的Feature Extraction software进行基因表达分析实验。至该文献
为了研究eIF4A的解旋酶活性能够被类鼻疽伯克氏菌毒素抑制,采用Agilent的Genespring GX11 software进行基因表达分析实验。至该文献
为了研究Isw1和Chd1两种酶对核小体的定位至关重要,采用Agilent的Feature Extraction software进行ChIP-chip实验。至该文献
为了研究出芽酵母中染色体非整倍性会引起基因组不稳定性,采用Agilent的Feature extraction software进行DNA芯片实验。至该文献
为了研究内含子剪接在发育障碍症MOPD I中的重要作用,采用Agilent Technologies的GeneSpring GT软件2.0进行纯合子定位。至该文献
为了揭示神经系统感应炎症应答的分子机制,采用Agilent Technologies的GeneSpring GX软件用于芯片分析。至该文献
为了研究Lmo2致癌基因诱发小鼠白血病的机制,使用了Agilent公司的GeneSpring GX 7软件来进行数据分析。至该文献
为了研究葡萄糖的缺少对KRAS信号途径发生突变所起的作用,使用了Agilent Technologies公司的特征抽取软件来提取微阵列数据。至该文献
为了研究Dicer对胰脏的调控作用,使用了Agilent公司的Feature Extractin Ver.9.5.3 来进行芯片分析。至该文献
为了表明在少突神经胶质瘤中染色体的易位t(1;19)没有使NOTCH2基因发生重排或者突变,采用了安捷伦公司的Agilent Feature Extraction软件,用来对芯片结果进行标准化处理。至该文献
文章列表
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