Zucker Robert M
Reproductive Toxicology Division, National Health and Environmental Effects Research Laboratory, U.S. Environmental Protection Agency, Research Triangle Park, NC, USA.
Methods Mol Biol. 2006;319:77-135. doi: 10.1007/978-1-59259-993-6_5.
The confocal laser scanning microscope (CLSM) has enormous potential in many biological fields. When tests are made to evaluate the performance of a CLSM, the usual subjective assessment is accomplished by using a histological test slide to create a "pretty picture." Without the use of functional tests, many of the machines could be working at suboptimal performance levels, delivering suboptimum performance and possibly misleading data. To replace the subjectivity in evaluating a confocal microscope, tests were derived or perfected that measure field illumination, lens clarity, laser power, laser stability, dichroic functionality, spectral registration, axial resolution, scanning stability, photomultiplier tube quality, overall machine stability, and system noise. These tests will help serve as a guide for other investigators to ensure that their machines are working correctly to provide data that are accurate with the necessary resolution, sensitivity, and precision. Utilization of this proposed testing approach will help eliminate the subjective nature of assessing the CLSM and allow different machines to be compared. These tests are essential if one is to make intensity measurements.
共聚焦激光扫描显微镜(CLSM)在许多生物学领域具有巨大潜力。在测试CLSM的性能时,通常的主观评估是通过使用组织学测试载玻片来创建一张“漂亮的图片”来完成的。如果不进行功能测试,许多仪器可能会在次优性能水平下运行,提供次优性能并可能产生误导性数据。为了取代评估共聚焦显微镜时的主观性,人们推导或完善了一些测试方法,用于测量场照明、透镜清晰度、激光功率、激光稳定性、二向色性功能、光谱配准、轴向分辨率、扫描稳定性、光电倍增管质量、整机稳定性和系统噪声。这些测试将有助于为其他研究人员提供指导,以确保他们的仪器正常工作,从而提供具有必要分辨率、灵敏度和精度的准确数据。采用这种提议的测试方法将有助于消除评估CLSM的主观性,并能够对不同的仪器进行比较。如果要进行强度测量,这些测试至关重要。