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通过改善通道分离实现多个荧光标记的同步共聚焦记录。

Simultaneous confocal recording of multiple fluorescent labels with improved channel separation.

作者信息

Carlsson K, Aslund N, Mossberg K, Philip J

机构信息

Department of Mathematics, Royal Institute of Technology, Stockholm, Sweden.

出版信息

J Microsc. 1994 Dec;176(Pt 3):287-99. doi: 10.1111/j.1365-2818.1994.tb03527.x.

Abstract

Confocal microscopes are often used to study specimens labelled with fluorophores. A commonly used method for simultaneous recording of the distribution of multiple fluorophores is to divide the fluorescent light emitted by the specimen into different wavelength regions using dichroic and bandpass filters. These different wavelength regions are then distributed to multiple detectors. However, the broad and overlapping spectra of commonly used fluorophores often result in considerable crosstalk between channels. A new technique, intensity-modulated multiple-beam scanning (IMS) microfluorometry, can be used to reduce this cross-talk substantially. The IMS technique is implemented with two laser beams of different wavelengths, intensity-modulated at different frequencies, which illuminate the specimen simultaneously. The two laser wavelengths predominantly excite one fluorophore each. Fluorescent light from the specimen is divided into two wavelength regions (red and green) which are detected by two photomultiplier tubes. The output signals from the photomultiplier tubes are connected to lock-in amplifiers. The effect of using modulated laser beams, in combination with lock-in amplifiers, is strongly to reduce cross-talk between the channels. The performance of the IMS technique using various types of specimen is compared with the results obtained using the conventional multi-detector method.

摘要

共聚焦显微镜常用于研究标记有荧光团的标本。一种常用的同时记录多种荧光团分布的方法是使用二向色镜和带通滤波器将标本发出的荧光分成不同的波长区域。然后将这些不同的波长区域分配给多个探测器。然而,常用荧光团的宽光谱和重叠光谱常常导致通道之间出现相当大的串扰。一种新技术,强度调制多光束扫描(IMS)显微荧光测定法,可用于大幅减少这种串扰。IMS技术通过两个不同波长的激光束实现,这两个激光束以不同频率进行强度调制,并同时照射标本。这两个激光波长主要分别激发一种荧光团。标本发出的荧光被分成两个波长区域(红色和绿色),由两个光电倍增管进行检测。光电倍增管的输出信号连接到锁定放大器。使用调制激光束并结合锁定放大器的效果是极大地减少通道之间的串扰。将使用IMS技术对各种类型标本的性能与使用传统多探测器方法获得的结果进行比较。

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