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首页> 外文期刊>Journal of Microscopy >Two-stage focus-hold system for rapid ultra-sensitive read-out of large-area biochips.
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Two-stage focus-hold system for rapid ultra-sensitive read-out of large-area biochips.

机译:两阶段聚焦保持系统,用于快速超灵敏地读出大面积生物芯片。

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摘要

We report here the development of a method for holding the focal plane in a fluorescence-based biochip scanner. The fast read-out of large (multiple cm(2)) glass slides as used in modern chip technology imposes severe constraints on the focal system. The limited focal depth of high-NA objectives together with the demand for single-molecule sensitivity challenges traditional focus-hold systems. Various long- and short-term effects disturb the often multiple hour-long data-acquisitioning process and cause blurred or unusable image data. Traditional focus-hold systems were often limited in terms of range, reaction time, sensitivity or demanded a large number of additional components. Our system uses the back-reflected illumination beam always present in total internal reflection fluorescence microscopy to generate an error proportional electrical signal, which in turn drives an actuator correcting the objective-sample distance. The latter consists of a fast but range-limited piezo drive attached to the objective and a slower motor coupled to the microscope's z-drive. With this combination, fast reaction times and virtually unlimited correction distances are possible. We show the applicability by scanning DNA microarrays on 27 x 18-mm(2) glass slides with single-molecule sensitivity over the whole array. Single-fluorescence dyes are imaged as diffraction-limited spots.
机译:我们在这里报告了在基于荧光的生物芯片扫描仪中保持焦平面的方法的发展。现代芯片技术中使用的大型(multiple cm(2))载玻片的快速读取对聚焦系统施加了严格的限制。高NA物镜的聚焦深度有限,加上对单分子灵敏度的需求,对传统的聚焦保持系统提出了挑战。各种长期和短期影响会干扰通常需要数小时的长时间数据采集过程,并导致图像数据模糊或无法使用。传统的聚焦保持系统通常在范围,反应时间,灵敏度方面受到限制,或者需要大量其他组件。我们的系统使用全内反射荧光显微镜中始终存在的背反射照明光束来生成误差比例的电信号,进而驱动执行器校正物镜-样品距离。后者包括一个连接在物镜上的快速但受范围限制的压电驱动器,以及一个与显微镜的z驱动器耦合的较慢的电机。通过这种组合,可以实现快速反应时间和几乎无限的校正距离。我们通过扫描在整个阵列上具有单分子敏感性的27 x 18-mm(2)载玻片上的DNA微阵列来显示适用性。单荧光染料成像为衍射极限点。

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