这是一篇有关荧光显微镜的综述,是根据116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荧光显微镜。
默克密理博中国
为了研究T细胞分化的调控机制,Amnis的Imagestream X被用于进行流式细胞实验。至该文献
为了研究人中缺失ISG15损害IFN-gamma免疫并导致分支杆菌易感,采用了Amnis的ImageStreamX进行流式细胞筛选实验。至该文献
为了研究磷酸酶活性对于生发中心B细胞选择的重要性,Amnis的Imagestream X被用于免疫细胞化学实验。至该文献
为了研究沙门氏菌的生长被自噬受体optineurin的磷酸化限制,采用Amnis的ImageStreamX imaging system进行显微成像实验。至该文献
徕卡显微系统(上海)贸易有限公司
为了研究DMX12在小鼠GnRH神经元缺失引起的不育症中的作用,采用了Leica公司的DM IRB显微镜,进行影像实验。至该文献
为了研究神经递质所介导的胞外体转移在神经元和少突胶质细胞间相互作用中的作用,Leica的荧光显微镜被用于进行细胞成像。至该文献
为了研究VAL-和TMT-视蛋白在??鱼和斑马鱼的神经元光感受过程中的作用,Leica的MZ16 FA荧光体视显微镜被用于进行原位杂交实验。至该文献
为了研究髓鞘膜组装的机制,Leica的DMI 6000荧光显微镜被用于进行免疫细胞化学实验。至该文献
为了研究二氢硫辛酰胺乙酰基转移酶在基因表达和碳代谢中的双重作用,采用Leica Microsystems公司的Leica DMI6000B显微镜进行拍照。至该文献
为了研究生物钟基因表达能够被CIRP进行转录后调控,采用了Leica的AF6000LX microscope进行RNA-FISH实验。至该文献
为了研究针对共生菌的免疫反应会被急性胃肠炎诱导,采用了Leica的DM IRBE fluorescent microscope进行FISH实验。至该文献
为了研究皮肤微生物能够提供保护性免疫,采用了Leica的DM IRBE fluorescent microscope进行免疫组织化学实验。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Leica Microsystems的epifluorescence compound microscope进行线虫成像实验至该文献
为了研究MORC家族ATP酶的功能特性,Leica的MZ16F荧光立体显微镜被用于荧光成像。至该文献
为了研究昆虫体节发生受分子震荡基因调控,采用了Leica的MZ16F epifluorescence stereoscope进行原位杂交实验。至该文献
为了研究朗格汉斯细胞介导的PAH代谢能导致DNA损伤和肿瘤发生,采用Leica的AF6000 deconvolution microscope进行免疫细胞化学实验。至该文献
为了研究韧皮运输需要SWEET蛋白介导的糖外流,采用Leica的inverted fluorescence microscope DM IRE2进行FRET分析实验。至该文献
为了研究在线虫中来自父亲的线粒体在受精后能够通过自我吞噬而降解,采用Leica的dissecting fluorescent microscope进行精子分离实验。至该文献
为了研究淋巴细胞从血液回到淋巴器官依赖于GRK2参与的S1PR1脱敏过程,采用了Leica DMLB的upright fluorescence microscope进行活体成像实验。至该文献
为了研究小鼠血糖能够通过人工合成的光遗传学转录元件进行调控,采用Leica Microsystems的inverted fluorescent microscope进行钙成像实验。至该文献
为了研究酵母中心体功能受磷酸化调控,采用Leica的fluorescence microscope进行荧光成像实验。至该文献
为了研究躯干-肢体细分化依赖于扩散性信号因子,采用Leica的MZFLIII stereofluorescence microscope进行图像分析实验。至该文献
为了研究具有分解代谢功能的细胞器和具有合成代谢功能的细胞器二者在空间上的结合在促进分泌蛋白合成中的作用,采用Leica的DMI6000B落射荧光显微镜进行电子显微检测。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Leica的MZ FLIII荧光立体显微镜观测线虫。至该文献
为了研究真核生物中II型拓扑异构酶在正超螺旋DNA影响下发挥DNA解链接的功能,采用Leica的IRB microscope进行荧光成像实验。至该文献
为了研究出生后的短暂时间内哺乳动物可能有心脏再生能力,采用Leica的fluorescence microscopy进行免疫组织化学实验。至该文献
为了研究棘鱼骨盆缩小这一适应性进化现象的分子机制,使用了Leica公司的MZFLIII 荧光显微镜来进行图像分析。至该文献
为证实β1整合素蛋白介导的粘附信号对于初始表皮细胞的扩展是必要的,使用了Leica公司的荧光显微镜DMRA2来进行图像分析。至该文献
为研究小鼠小肠中Cd1d依赖性的细菌定植调节机制,使用了Leica公司的DM5500 荧光显微镜来进行切片观察。至该文献
为研究单核细胞家族谱以及CX3CR1在对抗炎症时所起的作用,使用了Leica公司的光学显微镜DNRB2来进行镜检。至该文献
为了说明Smad2/3的激活能够促进靶标基因的表达,使用了英杰公司的Leitz DMIRB显微镜来观察细胞群。至该文献
Carl Zeiss显示:30; 总数:38
为了研究果蝇中CK2激酶的功能属性,Zeiss的AxioImager Z1显微镜被用于进行免疫组化实验。至该文献
为了研究混合型Th1/2细胞在针对寄生虫的天然免疫反应中的作用,Zeiss的Axio Imager Z1显微镜被用于进行组织学分析。至该文献
为了研究芽殖酵母中基因表达的表观遗传调控,Carl Zeiss的Axio Observer Z1显微镜被用于进行细胞成像。至该文献
为了研究钙调神经磷酸酶和CAMKII对秀丽隐杆线虫寿命的调节作用,Zeiss的Axio Imager M1显微镜被用于进行细胞成像。至该文献
为了研究记忆巩固的分子机制,Zeiss的Axiovert 200M落射荧光显微镜被用于进行免疫细胞化学实验。至该文献
为了研究中枢神经系统中糖苷神经酰胺合成酶对体重和能量稳态的调控作用,采用了Zeiss公司的fluorescence microscopy(荧光显微镜),进行细胞影像实验。至该文献
为了研究神经元调控秀丽线虫身体以轴定向方式发育的机制,采用了Zeiss公司的Axio Imager Z1 microscope(Axio Imager Z1显微镜),进行影像实验。至该文献
为了分析成人功能性血管的细胞起源,采用了Carl Zeiss的Axiovert 200倒置落射荧光显微镜,进行细胞成像实验。至该文献
为了研究黄瓜卷须卷曲的机制,采用了Zeiss的AxioImager Z2进行卷须成像实验至该文献
为了研究氨基酸平衡可以被LAAT-1维持,采用了Zeiss的Axioimager A1进行免疫组化实验至该文献
为了研究母婴免疫耐受被蜕膜基质细胞中的趋化因子基因失活调控,采用了Carl Zeiss MicroImaging的AxioImager M1 microscope进行免疫组化实验。至该文献
为了研究结肠炎能够被共生真菌与Dectin-1的相互作用调节,采用了Zeiss的Axio Observer Fluorescence microscope进行免疫组化实验。至该文献
为了研究病原菌肠道定植和细菌毒力间的相互关系,Zeiss的AxioImager显微镜被用于进行免疫组化实验。至该文献
为了研究海洋浮游细菌对浮游植物大量繁殖的响应,Carl Zeiss的Axioplan II Imaging落射荧光显微镜被用于进行荧光原位杂交。至该文献
为了研究MORC家族ATP酶的功能特性,Zeiss的Axio Imager Z1显微镜被用于免疫组化实验。至该文献
为了研究PD-1对IgA选择及肠道菌群组成的调控作用,Zeiss的Axioplan 2荧光显微镜被用于免疫组化实验。至该文献
为了Nodal和Lefty有不同的扩散率以实现各自的功能,采用了Zeiss的Axio Imager.Z1 microscope进行原位杂交实验。至该文献
为了研究RNA长度能够被hnRNP C四聚物识别,采用了Zeiss的Axio Observer Z1进行原位杂交实验。至该文献
为了研究斑马鱼中miR430能够抑制蛋白翻译,采用了Zeiss的Axioimager M1进行原位杂交实验。至该文献
为了研究朊病毒在神经以外的组织中进行跨物种传播更快,采用了Zeiss的Axiovert inverted fluorescence microscope进行免疫组织化学实验。至该文献
为了研究一种新的能生成四硫化三铁的磁性细菌被成功的分离和培养,采用Zeiss的AxioImager M1 light microscope进行细胞成像实验。至该文献
为了研究小肠淋巴滤泡的形成需要食物中的配体来激活AhR,采用Zeiss的Axioplan 2 fluorescence microscope进行小肠淋巴群计数实验。至该文献
为了研究小肠中宿主与细菌的共生关系受凝集素RegIIIgamma保护免受免疫系统攻击,采用了Zeiss的AxioImager M1 Microscope进行荧光原位杂交实验。至该文献
为了研究肠病毒感染能够被小肠微生物加强,采用了Zeiss的Axio Imager.M1 microscope进行H&E染色实验。至该文献
为了研究生化信号通路能够在嘈杂的分子环境下传递信息,采用Zeiss的Axiovert 200M inverted epifluorescence microscope进行免疫细胞化学实验。至该文献
为了研究迷走神经环路通过调控分泌乙酰胆碱的T细胞来抑制脾脏中细胞因子的分泌,采用Zeiss的Axiovert 20倒置荧光显微镜进行免疫组织化学实验。至该文献
为了研究透明带上的sialyl-Lewis(x)寡糖介导精子与卵子的结合过程,采用Zeiss的fluorescence microscope进行荧光成像实验。至该文献
为了研究酵母中衰老引起的细胞损伤能够在配子形成过程中被清除,采用Zeiss的Axio Observer-Z1进行荧光成像实验。至该文献
为了研究克隆副胚层能够用于涡虫再生,采用Zeiss的Axio Imager Z1进行图像实验。至该文献
为了揭示细胞为了应对渗透胁迫从而启动转录的分子机制,采用Zeiss的Axiovert 200M倒置落射荧光显微镜进行显微检测。至该文献
KEYENCE Corporation
为了阐明人冠状病毒229E的入侵机制,在研究中使用了基恩士公司的荧光显微镜来为带有绿色荧光蛋白的细胞进行显微摄影。至该文献
Olympus显示:30; 总数:32
为了研究哺乳动物嗅觉系统,采用了Olympus公司的BX50WI显微镜,进行影像实验。至该文献
为了研究一种保守的EMC蛋白复合物对磷酯转移的影响,采用了Olympus公司的BX61显微镜,进行细胞成像实验。至该文献
为了研究热激反应中eEF1A1在转录过程中的作用,采用了Olympus公司BX61 epifluorescence microscope(BX61落射荧光显微镜),进行影像实验。至该文献
为了研究分泌的Vax1同源结构域蛋白对视网膜轴突生长的调控,采用了Olympus公司的BX-71显微镜,进行影像实验。至该文献
为了研究Vav2和Vav3蛋白在皮肤癌中的作用,Olympus的BX51显微镜被用于进行免疫组化实验。至该文献
为了研究VAL-和TMT-视蛋白在??鱼和斑马鱼的神经元光感受过程中的作用,Olympus的BX51W1直立显微镜被用于进行细胞成像实验。至该文献
为了研究绿叶挥发物对飞蛾产卵的影响,Olympus的BX51WI正置显微镜被用于进行细胞成像。至该文献
为了研究结肠炎能够改变肠道微生物群落以诱发肿瘤,采用了Olympus的IX70 fluorescent microscope进行免疫组化实验。至该文献
为了研究减数分裂中非交叉染色体重组受FANCM同源体调控,采用了Olympus的BX50 epifluorescence microscope进行免疫荧光实验。至该文献
为了研究肌球蛋白马达活性受肌动蛋白细胞骨架动态变换的调控,采用了Olympus的straight BX61 microscope进行成像实验。至该文献
为了在酵母中开发配对分泌型蛋白及其载体蛋白的新方法,采用了Olympus公司的IX71显微镜,进行荧光检测实验。至该文献
为了研究Cdc42振荡及其空间分布在裂殖酵母极性生长中的重要性,Olympus的BX61显微镜被用于进行荧光显微术的操作。至该文献
为了研究MORC家族ATP酶的功能特性,Olympus的BX61落射荧光复式显微镜被用于成像。至该文献
为了研究海马内嗅皮层之间的抑制性连接可被GABA能神经元调控,采用了Olympus的BX 51 microscope进行免疫组化实验。至该文献
为了研究特定的骨髓细胞源自卵黄囊,采用了Olympus的fluorescence microscope进行免疫组化实验。至该文献
为了研究背景记忆的形成依赖海马CA3区npas4依赖的转录程序,采用Olympus的BX51 fluorescent microscope进行免疫组织化学实验。至该文献
为了研究昆虫的内共生体可以被抗菌肽段ColA保护,采用Olympus的epifluorescence microscope进行免疫组织化学实验。至该文献
为了研究心肌细胞中的机械力-化学传导过程依赖于X-ROS信号通路,采用Olympus的IX-70 inverted fluorescence microscope进行免疫细胞化学实验。至该文献
为了研究以荧光蛋白为基础的钙信号指示剂种类增加对钙成像便捷性的改善,采用OLYMPUS的BX53 upright compound microscope进行细胞成像实验。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Olympus的BX51 fluorescence microscope进行免疫细胞化学实验。至该文献
为了研究受体调控的离子通道被改造出来用于人为操纵神经电活动,采用Olympus的inverted fluorescence microscope IX-51进行细胞电生理实验。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Olympus的IX71 epifluorescent microscope进行荧光成像实验。至该文献
为了研究鸟苷酰环化酶C对中脑多巴胺神经元的功能至关重要,采用Olympus的BX51WI upright fluorescent microscope进行脑片制备实验。至该文献
为了研究液晶液滴内毒素的影响下会发生结构转变,采用Olympus的BX60 microscope进行液滴观测实验。至该文献
为了研究RNA合成动力学的测定方法,采用Olympus的IX71落射荧光显微镜进行显微镜检。至该文献
为了研究神经电活动能够被蓝光感受器CRY调控,采用Olympus的BX51 WI microscope进行光刺激实验。至该文献
为证实血管紧张肽和G蛋白偶联的受体Mas是肾脏炎症的两个关键因素,使用了Olympus公司的BX-50显微镜来进行图像分析。至该文献
为了构建HIF-1α的稳定存在以及降解的实时构图,使用了Olympus公司的Olympus BX40荧光显微镜来进行观察。至该文献
为了阐明内质网膜弯曲蛋白在新生核孔和核孔复合体发生的作用,使用了Olympus公司的BX50显微镜采集落射荧光和微分干涉对比图像。至该文献
为了说明Parp1基因和ADP核糖多聚体位于Dnmt1启动子上和说明Parp1能够保护自己的非甲基化状态,使用了奥林巴斯公司的传统的落射荧光显微镜来观察样本。至该文献
Nikon
为了研究细胞因子表达对辅助性T细胞分化的影响,Nikon的Ti-E倒置荧光显微镜被用于进行细胞成像。至该文献
为了研究线虫中机体死亡的分子机制,Nikon的Eclipse TE2000-U倒置荧光显微镜被用于进行成像实验。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Nikon的Eclipse E800i epifluorescence microscope进行免疫染色实验。至该文献
为了研究细胞命运受p53动态变化的调控,采用了Nikon的80i Upright Microscope进行复苏衰老实验。至该文献
为了在酵母中开发配对分泌型蛋白及其载体蛋白的新方法,采用了Nikon公司的Eclipse TE2000 epifluorescent microscope(Eclipse TE2000荧光显微镜),进行荧光检测实验。至该文献
为了研究p53依赖的细胞增殖和存活能够被atg7调控,采用了Nikon的fluorescence microscope进行细胞周期分析实验。至该文献
为了研究海洋广古菌门的一种不能培养的细菌基因组能够从宏基因组中抽提出来,采用了Nikon的80i microscope进行细胞成像实验。至该文献
为了研究阿米巴虫的多细胞性需要细胞之间的高亲缘性来维持,采用Nikon的E1000 fluorescent microscope进行细胞成像实验。至该文献
为了研究胞质中的dynein蛋白运动不需要两个催化头结构域的协作,采用Nikon的Ti-E Eclipse inverted fluorescence microscope进行成像实验。至该文献
为了研究db/db小鼠的肥胖能够通过下丘脑神经元移植进行治疗,采用Nikon的fluorescence dissecting microscope进行荧光检测实验。至该文献
为了研究缅甸巨蟒中提取的脂肪酸能够促进心肌的生长,采用Nikon的荧光显微镜进行免疫细胞化学实验。至该文献
为了研究以荧光蛋白为基础的钙信号指示剂种类增加对钙成像便捷性的改善,采用Nikon的inverted Eclipse Ti-E进行细胞成像实验。至该文献
为了研究线粒体裂变受内质网小管的调控,采用Nikon的inverted fluorescence microscope进行细胞成像实验。至该文献
为了研究肿瘤病人中端粒改变与ATRX和DAXX功能异常有关,采用Nikon的50i epifluorescence microscope进行FISH实验。至该文献
为了研究酵母中衰老引起的细胞损伤能够在配子形成过程中被清除,采用Nikon的fluorescent dissecting microscope进行酵母寿命分析实验。至该文献
为了揭示细胞为了应对渗透胁迫从而启动转录的分子机制,采用Nikon的Ti-Eclipse倒置落射荧光显微镜进行显微检测。至该文献
为了研究秀丽隐杆线虫(C. elegans)融合蛋白家族成员AFF-1蛋白的结构和功能,采用Nikon的Eclipse E800立式荧光显微镜用于免疫细胞化学试验。至该文献
为了证实PEDF有抗炎效应,使用了尼康公司的荧光显微镜来进行图像分析。至该文献
为了说明天冬氨酸受体的激活能够促进NADPH氧化酶在突触后的神经元内产生活性氧,使用了Nikon公司的荧光显微镜来观察切片。至该文献
为了研究孕激素受体A和c-Met对子宫内膜的作用,采用了尼康的荧光显微镜观察着色细胞。至该文献
为研究db/db小鼠在接受db/m小鼠的同源骨髓衍生细胞后的效应,使用了尼康公司的倒置显微镜Eclipse TE2000-U来进行图像分析。至该文献
为了研究Merlin对神经胶质细胞生长的影响,采用了Nikon公司的倒置荧光显微镜获取免疫细胞化学实验图像。至该文献
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