磁珠
- magnetic bead
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为了观察此现象,DNA分子在玻片上由一个磁珠拉伸。
To observe this , a DNA molecule is stretched between a magnetic bead and a glass surface .
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在生物医学工程中,磁珠(MagneticBead)可作为生物反应的固相支持物。
Magnetic Bead ( MB ) can be used as solid-phase carrier for biomedical reactions .
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ProteinA磁珠检测朊病毒方法的建立
The foundation of Protein A magnetism to detect Prion assay
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国产磁珠用于法医DNA检验的研究
Research of Legal Medical DNA Detection by the Domestic Magnetism Beads
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免疫磁珠富集母体外周血胎儿DNA方法的研究
Study of Method to Enrich Fatal Dna in Maternal Plasma with Immunology Magnetic Beads
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运用酚-氯仿法结合磁珠法提取蝇蛆体内人类DNA
Extract Human DNA from Maggot Crop Contents by Phenol-chloroform Method Coupled with Paramagnetic Particle Method
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通过磁珠分选的方法分离各组DC。
The DC from different groups were sorted by immunomagnetic beads . 4 .
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本实验利用一款国产磁珠,在DNA回收纯化方面进行了一些探索。
In this study we use a domestic Magnetism bead to explore the callback and purification of DNA .
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国产磁珠结合自动化工作站批量提取生物检材DNA的应用
Application of a new magnetic beads made in China in DNA extraction of forensic biological samples with automation workstation
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免疫磁珠细胞术分选脐血CD(34)~+细胞方法的改良
Improvement of sorting cord blood cd_ ( 34 ) ~ + cells by MACS
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上样量和洗脱液温度影响磁珠法纯化mRNA效果
Influence of Loading Amount and Eluant Temperature to Effect of mRNA Purification by Magnetic Particles
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免疫磁珠法在肾移植HLA快速分型中的应用
Application of Immunomagnetic Beads Technique for Tissue Typing in Renal Transplantation
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应用免疫磁珠法分离脐血CD(34)~+造血细胞
Immunomagnetic positive selection of cd_ ( 34 ) ~ + progenitor cells from human cord blood
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基于MEMS技术的磁珠微芯片的模拟及工艺研究
Study on Simulation and Fabrication of Magnetic Bead Microchip Based on MEMS Technology
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本文首先对纳米TiO2和粉煤灰磁珠的性质进行了研究。
The properties of nano-TiO_2 particles and magnetic fractions were investigated .
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正因为当DNA分子发生修复时磁珠的位置发生了改变,这样研究者就可以详细的观察此修复过程。
As the position of the bead changes when the DNA molecule is repaired , researchers are able to observe the repair process in detail .
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应用单克隆抗体-免疫磁珠分离系统分离纯化再生障碍性贫血骨髓CD(34)~+细胞
Separating and Purification Bone Marrow CD_ ( 34 ) ~ + Cells in Aplastic Anemia with Monoclone Antibody-immunomagnetic Beads System
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利用免疫磁珠技术可以获得高纯度的白血病细胞来源DC,达到了目前DC疫苗的质量控制标准[1]。
High purity DCs which meet the quality criteria for DC vaccines at present [ 1 ] can be obtained by immunomagnetic microbeads .
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本研究通过磁珠富集法构建了鲮鱼微卫星富集文库,采用的生物素探针为(CA)15。
An ( CA ) 15 enriched library has been constructed for mud carp , using the magnetic beads enrichment procedure .
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于是,我们采用了免疫磁珠与RT-PCR联用的方法。
Thus , we used the immunomagnetic bead enrichment combined with single-cell RT-PCR in the detection process .
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基于IgY的免疫磁珠夹心ELISA法检测日本血吸虫循环抗原的研究
Detection of Circulating Antigen of Schistosoma Japonicum by Immunomagnetic Bead Sandwich ELISA Based on IgY
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研究者运用磁场使磁珠产生力,这样就在可控模式下可以对单个DNA分子进行拉伸旋转。
A force is exerted on the magnetic bead using a magnetic field , enabling researchers to pull and rotate a single DNA molecule in a controlled fashion .
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其创新点主要有两方面:其一,采用羧基修饰的纳米级磁珠作为捕获和放大目标DNA的载体。
Its innovations has two aspects : first , using carboxyl modified nanoscale magnetic beads as the carrier of probe DNA in order to capture more target DNA .
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羟基淀粉沉淀对免疫磁珠法分离脐血CD(34)~+细胞及造血祖细胞增殖功能的影响
Colony culture and purification of CD_ ( 34 ) ~ + hematopoietic stem / progenitor cells from cord blood by MACS and HES
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磁珠包裹的人视网膜色素上皮细胞受磁场牵拉后ET-1的表达
The expression of endothelin-1 in magnetic bead coated retinal pigmental epithelial cells dragged by magnetic field
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免疫磁珠法分选小鼠肝脏Kupffer细胞及其特性观察
Isolation and purification of mouse liver Kupffer cells by immunomagnetic bead separation
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分离骨髓单个核细胞,用免疫磁珠法富集CD34+细胞、CD4+(Th)细胞。
Bone marrow mononuclear cells ( BMMNC ) were isolated and CD34 + and CD4 + cells were enriched by magnetic beads respectively .
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应用尼龙毛柱分离T淋巴细胞,再经CD8磁珠分选出CD8+T淋巴细胞;
T cells were harvested by using nylon column and CD8 + T cells were sorted by magnetic beads ;
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方法:利用小鼠CD8α+T细胞磁珠负性分选试剂盒制备高纯度CD8+T细胞,并通过体外抗CD3单克隆抗体(mAb)刺激活化CD8+T细胞。
METHODS : highly purified CD8 + T cells were separated and stimulated by CD3 antibody .
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分别从RAPD,锚定PCR和磁珠捕获3种富集方法构建的基因组文库中获得6,23,19个微卫星位点。
After sequencing positive colonies , 6,23,19 microsatellite loci are obtained from libraries enriched by RAPD , anchored PCR and magnetic capture , respectively .