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基于共聚焦显微镜载玻片系统的质量评估:性能

Quality assessment of confocal microscopy slide based systems: performance.

作者信息

Zucker Robert M

机构信息

Reproductive Toxicology Division, National Health and Environmental Effects Research Laboratory, Office of Researchand Development US Environmental Protection Agency, Research Triangle Park, NC 27711, USA. zucker.robert@.epa.gov

出版信息

Cytometry A. 2006 Jul;69(7):659-76. doi: 10.1002/cyto.a.20314.

Abstract

BACKGROUND

All fluorescence slide-based cytometry detections systems basically include the following components: (1) an excitation light source, (2) intermediate optics, and (3) a detection device consisting of a CCD camera or a PMT. The optical principles employed is slide-based systems are similar to those of confocal microscopes (CLSM).

METHODS

The following tests evaluated confocal equipment performance: dichroic reflectivity, field illumination, lens performance, laser power output, spectral registration, axial resolution, PMT reliability, and system noise.

RESULTS

Quality assurance tests provide a basis to determine if the equipment is operating correctly. Laser power, PMTs function, dichroic reflection, spectral registration, axial registration, system noise and sensitivity, lens performance and laser stability were tested colocalization of UV and visible peaks of a bead should be less than 210 nm. Interference contrast optics decrease fluorescence resolution.

CONCLUSIONS

QA tests that assess CLSM system performance are also applicable to other slide-based systems. By utilization this type of testing approach, the subjective nature of assessing the CLSM may be eliminated. These tests serve as guidelines for other investigators to ensure that their machines are providing data that is accurate with the necessary resolution, sensitivity and precision.

摘要

背景

所有基于载玻片的荧光细胞计数检测系统基本上都包括以下组件:(1)激发光源,(2)中间光学器件,以及(3)由电荷耦合器件(CCD)相机或光电倍增管(PMT)组成的检测装置。基于载玻片的系统所采用的光学原理与共聚焦显微镜(CLSM)的光学原理相似。

方法

以下测试评估了共聚焦设备的性能:二向色反射率、场照明、透镜性能、激光功率输出、光谱配准、轴向分辨率、光电倍增管可靠性和系统噪声。

结果

质量保证测试为确定设备是否正常运行提供了依据。测试了激光功率、光电倍增管功能、二向色反射、光谱配准、轴向配准、系统噪声和灵敏度、透镜性能以及激光稳定性。珠子的紫外线和可见光峰的共定位应小于210纳米。干涉对比光学器件会降低荧光分辨率。

结论

评估共聚焦激光扫描显微镜(CLSM)系统性能的质量保证测试也适用于其他基于载玻片的系统。通过采用这种测试方法,可以消除评估共聚焦激光扫描显微镜时的主观性。这些测试为其他研究人员提供了指导方针,以确保他们的仪器能够提供具有必要分辨率、灵敏度和精度的准确数据。

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