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比率成像仪器。

Ratio imaging instrumentation.

作者信息

Dunn Kenneth, Maxfield Frederick R

机构信息

Department of Medicine, Indiana University Medical Center, Indianapolis, Indiana 46202-5116, USA.

出版信息

Methods Cell Biol. 2003;72:389-413. doi: 10.1016/s0091-679x(03)72019-6.

Abstract

Using ratio imaging to obtain quantitative information from microscope images is a powerful tool that has been used successfully in numerous studies. Although ratio imaging reduces the effects of many parameters that can interfere with accurate measurements, it is not a panacea. In designing a ratio imaging experiment, all of the potential problems discussed in this chapter must be considered. Undoubtedly, other problems that were not discussed can also interfere with accurate and meaningful measurements. Many of the problems discussed here were observed in the authors' laboratories. In our experience there are no standard routines or methods that can foresee every problem before it has been encountered. Good experimental design can minimize problems, but the investigator must continue to be alert. Progress in instrumentation continues to overcome some of the difficulties encountered in ratio imaging. CCD cameras with 12- to 14-bit pixel depth are being used more frequently, and several confocal microscope manufacturers are now also using 12-bit digitization. The dramatic increase in the use of confocal microscopes over the past decade is now causing microscope manufacturers to more critically evaluate the effect of axial chromatic aberration in objectives, and recent designs to minimize this problem are being implemented. Other developments such as the use of AOTFs to attenuate laser lines extend the applicability of ratio imaging. Ratio imaging is clearly applicable to a wide range of cell biological problems beyond its widespread use for measuring ion concentrations. Imaginative but careful use of this technique should continue to provide novel insights into the properties of cells.

摘要

使用比率成像从显微镜图像中获取定量信息是一种强大的工具,已在众多研究中成功应用。尽管比率成像减少了许多可能干扰精确测量的参数的影响,但它并非万灵药。在设计比率成像实验时,必须考虑本章讨论的所有潜在问题。毫无疑问,未讨论的其他问题也可能干扰精确且有意义的测量。这里讨论的许多问题是作者在实验室中观察到的。根据我们的经验,没有标准的常规方法或手段能够在问题出现之前就预见到每一个问题。良好的实验设计可以将问题最小化,但研究者必须持续保持警觉。仪器设备的进步不断克服比率成像中遇到的一些困难。像素深度为12至14位的电荷耦合器件(CCD)相机正被更频繁地使用,并且几家共聚焦显微镜制造商现在也采用12位数字化。在过去十年中,共聚焦显微镜使用的急剧增加现在促使显微镜制造商更严格地评估物镜中轴向色差的影响,并且正在实施最近旨在最小化此问题的设计。诸如使用声光可调谐滤波器(AOTF)来衰减激光谱线等其他进展扩展了比率成像的适用性。比率成像显然适用于广泛的细胞生物学问题,而不仅仅是其在测量离子浓度方面的广泛应用。富有想象力但谨慎地使用这项技术应该会继续为细胞特性提供新颖的见解。

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