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Ultracompact alignment-free single molecule fluorescence device with a foldable light path

机译:具有可折叠光路的超紧凑免对准单分子荧光装置

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摘要

Instruments with single-molecule level detection capabilities can potentially benefit a wide variety of fields, including medical diagnostics. However, the size, cost, and complexity of such devices have prevented their widespread use outside sophisticated research laboratories. Fiber-only devices have recently been suggested as smaller and simpler alternatives, but thus far, they have lacked the resolution and sensitivity of a full-fledged system, and accurate alignment remains a critical requirement. Here we show that through-space reciprocal optical coupling between a fiber and a microscope objective, combined with wavelength division multiplexing in optical fibers, allows a drastic reduction of the size and complexity of such an instrument while retaining its resolution. We demonstrate a 4x4x18 cm(3) sized fluorescence correlation spectrometer, which requires no alignment, can analyze kinetics at the single-molecule level, and has an optical resolution similar to that of much larger microscope based devices. The sensitivity can also be similar in principle, though in practice it is limited by the large background fluorescence of the commonly available optical fibers. We propose this as a portable and field deployable single molecule device with practical diagnostic applications.
机译:具有单分子水平检测功能的仪器可以潜在地受益于许多领域,包括医学诊断。但是,此类设备的尺寸,成本和复杂性已使其无法在复杂的研究实验室之外广泛使用。近年来,仅光纤设备被认为是更小,更简单的替代产品,但是到目前为止,它们还缺乏完整系统的分辨率和灵敏度,而精确对准仍然是关键要求。在这里,我们显示出光纤与显微镜物镜之间的空间互易光学耦合,与光纤中的波分复用相结合,可在保持其分辨率的同时,大幅降低此类仪器的尺寸和复杂性。我们演示了一个4x4x18 cm(3)大小的荧光相关光谱仪,它不需要对齐,可以在单分子水平上分析动力学,并且具有与大型显微镜设备相似的光学分辨率。灵敏度原则上也可以相似,尽管在实践中它受到常用光纤的大背景荧光的限制。我们建议将此作为具有实际诊断应用的便携式和可现场部署的单分子设备。

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