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1)  Fluorescence resonance energy transfer(FRET)
荧光共振能量转移(FRET)
2)  fluorescence resonance energy transfer (FRET)
荧光共振能量转移(FRET)
3)  fluorescence resonance energy tramsfer(FRET)
荧光共振能量转移技术(FRET)
1.
It was studied the interaction domain of TLR4 and MD-2 in living cells based on gene mutation,gene transfection and fluorescence resonance energy tramsfer(FRET) which is considered as one of the best methods used for intracellular protein-protein interaction study.
运用基于强度的三通道荧光共振能量转移技术(FRET)及基因突变和转染技术,研究了活细胞TLR4与MD-2作用的结构域。
4)  fluorescence resonance energy transfer
荧光共振能量转移
1.
Interaction between ITGB4BP and P311 measured by fluorescence resonance energy transfer;
荧光共振能量转移技术检测ITGB4BP与P311间的相互作用
2.
Construction of a biosensor for detecting biologically active prostate-specific antigen based on fluorescence resonance energy transfer technology;
构建以荧光共振能量转移技术为基础的生物学活性前列腺特异抗原检测器
3.
Influence of experimental conditions on probe melting curves based on fluorescence resonance energy transfer;
实验条件对荧光共振能量转移的探针熔解曲线影响
5)  Fluorescence resonance energy transfer(FRET)
荧光共振能量转移
1.
The three ways contain the escence substitution for the traditional photosensitizer,the fluorescence resonance energy transfer(FRET) of QDs and the sensitizer of semiconductor ma.
并重点讨论量子点在光动力疗法中,量子点直接代替传统光敏剂、量子点的荧光共振能量转移、量子点作为宽禁带半导体材料TiO2的敏化剂等三种不同应用中,对量子点的要求,通过讨论指出由于其特性,量子点将在光动力疗法中得到更广泛的应用,也对在光动力疗法中应用的量子点的毒性及其他可能产生的问题提出了展望。
6)  fluorescence resonance energy transfer (FRET)
荧光共振能量转移
1.
Fluorescence resonance energy transfer (FRET) system was constructed between gentamycin (acceptor) and water-soluble CdTe QDs (donor).
庆大霉素(Gentamycin,GT)作为能量受体,建立了荧光共振能量转移(fluorescence resonance energy transfer,FRET)体系。
补充资料:非共振荧光
分子式:
CAS号:

性质:原子荧光分为共振荧)七与非共振荧光。它的激发波长与所发射的荧光波长不等,可以比激发波长长,也可比激发波长短。直跃线荧光、热助直跃线荧光、阶跃线荧光、热助阶跃线荧光等均属非共振荧光。

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