Mubaid Firas, Kaufman Daniel, Wee Tse-Luen, Nguyen-Huu Dong-Son, Young David, Anghelopoulou Maria, Brown Claire M
Department of Physiology, McGill University, Montreal, Canada.
Advanced BioImaging Facility (ABIF), McGill University, 3649 Prom. Sir William Osler, Bellini Building Rm 137, Montreal, QC, H3G 0B1, Canada.
Histochem Cell Biol. 2019 Apr;151(4):357-366. doi: 10.1007/s00418-019-01776-6. Epub 2019 Feb 14.
The process of fluorescence starts with the efficient generation of light that is required for the excitation of fluorophores. As such, light sources are a crucial component of a fluorescence microscope. Choosing the right illumination tool can not only improve the quality of experimental results, but also the microscope's economic and environmental footprint. While arc lamps have historically proven to be a reliable light source for widefield fluorescence microscopy, solid-state light-emitting diodes (LEDs) have become the light source of choice for new fluorescence microscopy systems. In this paper, we demonstrate that LEDs have superior light stability on all timescales tested and use less electrical power than traditional light sources when used at lower power outputs. They can be readily switched on and off electronically, have a longer lifetime and they do not contain mercury, and thus are better for the environment. We demonstrate that it is important to measure light source power output during warm-up and switching, as a light source's responsiveness (in terms of power) can be quite variable. Several general protocols for testing light source stability are presented. A detailed life cycle analysis shows that an LED light source can have a fourfold lower environmental impact when compared to a metal halide source.
荧光过程始于高效产生激发荧光团所需的光。因此,光源是荧光显微镜的关键组件。选择合适的照明工具不仅可以提高实验结果的质量,还能减少显微镜对经济和环境的影响。虽然历史证明弧光灯是宽场荧光显微镜可靠的光源,但固态发光二极管(LED)已成为新型荧光显微镜系统的首选光源。在本文中,我们证明LED在所有测试时间尺度上具有卓越的光稳定性,并且在较低功率输出下使用时比传统光源消耗更少的电能。它们可以通过电子方式轻松开关,寿命更长,不含汞,因此对环境更友好。我们证明在预热和切换期间测量光源功率输出很重要,因为光源的响应性(在功率方面)可能变化很大。本文还介绍了几种测试光源稳定性的通用方案。详细的生命周期分析表明,与金属卤化物光源相比,LED光源对环境的影响可降低四倍。