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Theoretical model of errors in micromirror-based three-dimensional particle tracking

机译:基于微镜的三维粒子跟踪误差的理论模型

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摘要

Several recently developed particle-tracking and imaging methods have achieved three-dimensional sensitivity through the introduction of angled micromirrors into the observation volume of an optical microscope. We model the imaging response of such devices and show how the direct and reflected images of a fluorescent particle are affected. In particle-tracking applications, asymmetric image degradation manifests itself as systematic tracking errors. Based on our results, we identify strategies for reducing systematic errors to the 10 nm level in practical applications.
机译:通过将成角度的微镜引入光学显微镜的观察体积中,几种最近开发的粒子跟踪和成像方法已经实现了三维灵敏度。我们对此类设备的成像响应进行建模,并显示荧光粒子的直接和反射图像如何受到影响。在粒子跟踪应用中,不对称图像降级表现为系统跟踪误差。根据我们的结果,我们确定了在实际应用中将系统误差降低到10 nm级别的策略。

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