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1)  magnetic beads
磁珠
1.
Establishment of magnetic beads-flow cytometry SELEX;
磁珠-流式细胞术SELEX技术的建立
2.
· METHODS: The hRPE cells attached to collagen-coated magnetic beads were tractioned under a fixed magnetic field and detected ET-1 expression in RPE cells in situ hybridization and immuno- histochemistry, and ET-1 content in the cell-conditioned medium by radio-immunoassay.
方法:用磁珠与RPE细胞粘和后,受磁场受力牵拉细胞的原理,用原位杂交、免疫组化和放射免疫测定法,检测牵拉对ET-1表达的影响。
2)  magnetic bead
磁珠
1.
Selection of magnetic bead for identification serum biomarkers in endometriosis with Clinprot:a preliminary study;
Clinprot系统筛选子宫内膜异位症标志物磁珠选择
2.
Methods β2m-/Thy-1+ BDLSCs were isolated by magnetic bead cell sorting(MACS) method from cholestatic rats in vitro,and cell purity was detected using flow cytometry.
方法利用免疫磁珠细胞分选(MACS)方法体外分选淤胆型大鼠模型的β2m-/Thy-1+BDLSC,流式细胞仪检测其纯度,RT-PCR法和免疫荧光染色法鉴定其肝相关性表型的表达。
3.
The ferrite magnetic bead and its principle of work are introduced in this paper.
铁氧体磁珠,作为电磁干扰抑制元件得到了广泛应用。
3)  magnetic microbeads
磁珠
4)  Immunomagnetic beads
免疫磁珠
1.
Detection of peritoneal micrometastasis from patients with gastric cancer using immunomagnetic beads technique;
免疫磁珠技术检测胃癌患者腹腔微小转移的研究
2.
Method evaluation and preliminary application of antibody-coating immunomagnetic beads to isolate CD4+ T lymphocyte subpopulation;
抗体包被免疫磁珠分离CD4+T淋巴细胞亚群的方法学研究和初步应用
3.
Comparative research of isolating T lymphocycte population with immunomagnetic beads and nylon wool cells;
免疫磁珠及尼龙毛分离纯化T淋巴细胞的比较研究
5)  immunomagnetic bead
免疫磁珠
1.
Methods The immunomagnetic beads were prepared by coating Toxoplasma antigen onto the surfaces of magnetic microspheres.
结论基于量子点标记及免疫磁珠技术检测TOXOIgG,操作简便、快速,具有较高的特异性、敏感性和有较好的临床应用价值。
6)  IMB
磁性微珠
1.
STRUCTURE AND PROPERTIES OF IMB;
磁性微珠的结构及其特性
补充资料:磁铅石型旋磁铁氧体
分子式:
CAS号:

性质:晶体结构和天然磁铅石Pb(Fe7.5Mn3.5A10.5Ti0.5)19类似的铁氧体称为磁铅石型铁氧体。其结构对称性较尖晶石型的为低。其中晶体具有各向异性大、矫顽力高的六角晶系铁氧体,称为磁铅石型微波铁氧体。主要有M型(BaFe12O19)和W型(BaM2+2Fel6O27),M为锰、钴、镍、锌、镁等二价金属离子。通过离子代换部分Ba2+,可获得BaO-MO-Fe2O3三元系的磁铅石型复合铁氧体,并可使各向异性场在一定范围内变化。制造方法可用一般磁性瓷生产工艺,热压烧结或气氛烧结制成。用于微波频段,可制成隔离器、相移器、调制器、环行器等线性器件和倍频器、限幅器、振荡器、混频器、参量放大器等非线性器件。是发展现代微波技术的重要材料。

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