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Optical sequential readout of microcantilever arrays for biological detection

机译:光学顺序读取微悬臂阵列以进行生物检测

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摘要

A technique for the readout of the nanomechanical response of multiple microcantilevers is presented. This combines the optical beam deflection technique and the scanning of a laser beam illuminating the cantilevers of an array sequentially. The individual motion of each microcantilever is obtained by correlating the total photocurrent collected in a photodetector array, the position of the laser beam and the coordinates of the laser spot centroid on the photodetector. The technique provides sub-angstrom resolution in the cantilever deflection and it allows the readout of tens of cantilevers per second. This is applied for the quasi-simultaneous detection of single-stranded DNA with an array of five microcantilevers. Moreover, this technique also allows the measurement of the resonant frequency of individual microcantilevers into an array. This can be applied for multiple detection of several pathogen targets.
机译:提出了一种读取多个微悬臂梁纳米力学响应的技术。这结合了光束偏转技术和顺序扫描阵列悬臂的激光束扫描。每个微悬臂梁的单独运动是通过将在光电探测器阵列中收集的总光电流,激光束的位置以及光电探测器上激光点质心的坐标相关联来获得的。该技术可提供悬臂偏转的亚埃分辨率,并且每秒可读取数十个悬臂。这适用于具有五个微悬臂梁阵列的准同时检测单链DNA。此外,该技术还允许测量单个微悬臂梁在阵列中的共振频率。这可以用于多种病原体靶标的多重检测。

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