开放式柔性显微镜
OpenFlexure Microscope

原始链接: https://openflexure.org/projects/microscope/

## OpenFlexure显微镜:可访问且可定制的显微镜 OpenFlexure显微镜是一款革命性的开源显微镜,旨在实现可访问性和定制化。它使用现成的低成本组件(如网络摄像头或标准显微镜物镜和树莓派)构建,却能提供令人惊讶的高性能。 其关键创新在于一个3D打印的载物台,利用“柔性铰链”——塑料组件,实现无摩擦、无振动且极其精确的运动(精度可达小于100纳米的步长)。这种设计最大限度地减少了组装和对非打印部件的依赖,从而最大限度地提高稳定性。 除了经济实惠(主要成本在于树莓派和摄像头),OpenFlexure显微镜还具有高度适应性。用户可以轻松更换光学器件以获得不同的放大倍数,甚至可以添加打印的滤光块来实现诸如荧光成像等高级技术。详细的文档和学术出版物可供使用,使高质量的显微镜技术能够惠及更广泛的用户和应用。

Hacker News 新闻 | 过去 | 评论 | 提问 | 展示 | 工作 | 提交 登录 OpenFlexure 显微镜 (openflexure.org) 8 分,来自 o4c 1小时前 | 隐藏 | 过去 | 收藏 | 1 条评论 gnabgib 1小时前 [–] 热门于: 2024 (189 分,20 评论) https://news.ycombinator.com/item?id=42115243 2021 (113 分,39 评论) https://news.ycombinator.com/item?id=27216452 回复 指南 | 常见问题 | 列表 | API | 安全 | 法律 | 申请 YC | 联系 搜索:
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原文

The OpenFlexure Microscope v7.0.0-alpha1Microscopy for everyone

The OpenFlexure Microscope is a customisable, open-source optical microscope. It can be built using either low-cost webcam optics or laboratory-grade RMS-threaded microscope objectives. The system uses an inverted optical geometry and a high-precision mechanical stage, which can be motorised using low-cost geared stepper motors.

An overview of the OpenFlexure Microscope v6.0.0 is published in Biomedical Optics Express.

You can also explore academic publications from the OpenFlexure Project, or read media coverage for a more accessible introduction to the project.

High-performance, low-cost

Optomechanics is a crucial part of any microscope; when working at high magnification, it is absolutely crucial to keep the sample steady and to be able to bring it into focus precisely. Accurate motion control is extremely difficult using printed mechanical parts, as good linear motion typically requires tight tolerances and a smooth surface finish.

This design for a 3D printed microscope stage uses plastic flexures, meaning its motion is free from friction and vibration. It achieves steps well below 100 nanometers when driven with miniature stepper motors, and is stable to within a few microns over several days.

Easy to source, quick to assemble

This design aims to minimise both the amount of post-print assembly required, and the number of non-printed parts required - partly to make it as easy as possible to print, and partly to maximise stability; most of the microscope (including all the parts with flexures) prints as a single piece.

The majority of the expense is in the Raspberry Pi and its camera module; the design requires only around 200g of plastic and a few nuts, bolts and other parts.

Lab-ready customisation

The optics module (containing the camera and lens) can be easily swapped out or modified, for example to change the magnification/resolution by using a microscope objective.

Optional filter cubes can be printed, allowing for reflection (epi-) illumination, polarisation-contrast microscopy, and even fluorescence imaging.

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