Versatile, open-access opto-mechanics design for optical microscopes prototyping.

IF 2 3区 工程技术 Q2 ANATOMY & MORPHOLOGY
Łukasz Zinkiewicz, Milena Królikowska, Filip Bojdecki, Alexander Krupiński-Ptaszek, Przemysław Słota, Piotr Wasylczyk
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Abstract

Prototype optical microscopes, built to pursue developments in advanced imaging techniques, need specific opto-mechanical constructions: preferably with high flexibility in the elements' arrangement, easy access to the optical paths, straightforward integration with external optical subsystems-light sources and detectors-as well as good mechanical stability. Typically they are either built around an adapted commercial microscope body or as a home-brewed setups, based on standard opto-mechanical elements, and neither solution delivers the desired characteristics. We developed a series of versatile microscope design for prototype optical microscopes in various configurations that use folding mirror(s) to maintain the optical paths horizontal throughout most of the setup. All prototypes use many standard opto-mechanics in the excitation and detection paths, which simplifies the construction and maintenance of the microscopes. The proposed opto-mechanical arrangement proved to be useful in building an upright as well as inverted microscopes, in particular Raman microscopes in various configurations. Horizontal arrangement simplified greatly the optical alignment and enabled for fast modifications in the setup-both key advantages at the prototyping stage. Last but not least, the laser safety of the optical system increased. The versatile microscope platform, based around the idea of the horizontal beam arrangement, can easily be adopted to many microscope configurations and to a variety of components that potential users might want to incorporate into them. RESEARCH HIGHLIGHTS: We design, fabricate, and test a compact, versatile opto-mechanics for prototyping optical microscopes in various configurations. Horizontal layout along most of the optical paths provides excellent access to the light beams, allows for using standard components and increases the laser safety.

用于光学显微镜原型设计的多功能、开放式光学机械设计。
为追求先进成像技术的发展而制造的光学显微镜原型需要特定的光机电结构:最好是元件布置具有高度灵活性,光路易于接近,与外部光学子系统--光源和探测器--直接集成,以及良好的机械稳定性。通常情况下,它们要么是围绕一个经过改装的商用显微镜机身制造的,要么是基于标准光机电元件的自制装置,但这两种解决方案都无法提供所需的特性。我们为各种配置的原型光学显微镜开发了一系列多功能显微镜设计,这些原型光学显微镜使用折叠镜在大部分设置中保持光路水平。所有原型都在激发和检测路径中使用了许多标准光学机械装置,从而简化了显微镜的构造和维护。事实证明,所建议的光学机械布置可用于制造直立和倒置显微镜,特别是各种配置的拉曼显微镜。水平布置大大简化了光学校准,并能快速修改设置--这两点在原型阶段都是关键优势。最后但并非最不重要的一点是,光学系统的激光安全性得到了提高。以水平光束排列为基础的多功能显微镜平台可以很容易地应用于多种显微镜配置以及潜在用户可能希望集成到显微镜中的各种组件。研究亮点:我们设计、制造并测试了一种结构紧凑、用途广泛的光学机械装置,用于制作各种配置的光学显微镜原型。沿大部分光路的水平布局为光束提供了良好的通道,允许使用标准组件,并提高了激光安全性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Microscopy Research and Technique
Microscopy Research and Technique 医学-解剖学与形态学
CiteScore
5.30
自引率
20.00%
发文量
233
审稿时长
4.7 months
期刊介绍: Microscopy Research and Technique (MRT) publishes articles on all aspects of advanced microscopy original architecture and methodologies with applications in the biological, clinical, chemical, and materials sciences. Original basic and applied research as well as technical papers dealing with the various subsets of microscopy are encouraged. MRT is the right form for those developing new microscopy methods or using the microscope to answer key questions in basic and applied research.
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