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High-speed device synchronization in optical microscopy with an open-source hardware control platform

机译:具有开源硬件控制平台的光学显微镜中的高速装置同步

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摘要

Azimuthal beam scanning eliminates the uneven excitation field arising from laser interference in through-objective total internal reflection fluorescence (TIRF) microscopy. The same principle can be applied to scanning angle interference microscopy (SAIM), where precision control of the scanned laser beam presents unique technical challenges for the builders of custom azimuthal scanning microscopes. Accurate synchronization between the instrument computer, beam scanning system and excitation source is required to collect high quality data and minimize sample damage in SAIM acquisitions. Drawing inspiration from open-source prototyping systems, like the Arduino microcontroller boards, we developed a new instrument control platform to be affordable, easily programmed, and broadly useful, but with integrated, precision analog circuitry and optimized firmware routines tailored to advanced microscopy. We show how the integration of waveform generation, multiplexed analog outputs, and native hardware triggers into a single central hub provides a versatile platform for performing fast circle-scanning acquisitions, including azimuthal scanning SAIM and multiangle TIRF. We also demonstrate how the low communication latency of our hardware platform can reduce image intensity and reconstruction artifacts arising from synchronization errors produced by software control. Our complete platform, including hardware design, firmware, API, and software, is available online for community-based development and collaboration.
机译:方位角扫描消除了通过物镜总体反射荧光(TIRF)显微镜的激光干扰产生的不均匀激励场。相同的原理可以应用于扫描角度干扰显微镜(SAIM),其中扫描激光束的精确控制为自定义方位角扫描显微镜的构建器提供了独特的技术挑战。仪器计算机,光束扫描系统和激励源之间的精确同步需要收集高质量数据并最大限度地减少SAIM收购中的样本损坏。从开源原型系统中汲取灵感,如Arduino微控制器板,我们开发了一个新的仪器控制平台,可以实惠,易于编程,并且广泛有用,但具有集成,精密模拟电路和针对先进显微镜的优化固件例程。我们展示了波形生成,多路复用模拟输出和本机硬件触发到单个中央集线器的集成方式如何提供多功能平台,用于执行快速圆扫描采集,包括方位扫描SAIM和多端格TIRF。我们还展示了我们的硬件平台的低通信延迟如何减少软件控制产生的同步误差引起的图像强度和重建伪像。我们的完整平台,包括硬件设计,固件,API和软件,可在线提供基于社区的开发和协作。

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