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A temporal superresolution method applied to low-light cardiac fluorescence microscopy

机译:时间超分辨率方法应用于弱光心脏荧光显微镜

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In biomicroscopy, fluorescent samples emit very little light, and imaging requires a long camera integration time to acquire an adequate number of photons. However, when imaging live, dynamic biological processes, a long integration time results in motion blur, and a low sampling rate results in temporal aliasing. To reduce these unwanted artifacts, we utilize a temporal superresolution algorithm to reconstruct a high temporal resolution image sequence from multiple low temporal resolution acquisitions. Each acquisition is shifted in time by a subframe delay, and an l cost minimization is used to reconstruct the high temporal resolution sequence. This paper describes the acquisition and reconstruction algorithm, evaluates its performance, and demonstrates its application in live fluorescence bioimaging of the embryonic zebrafish heart. Our temporal superresolution algorithm increases the bandwidth by a factor of 1.5 and shows that temporal super-resolution can be a valuable tool to capture fast dynamic processes in biomicroscopy.
机译:在生物显微镜中,荧光样品发出的光非常少,而成像需要较长的照相机积分时间才能获取足够数量的光子。但是,在对实时动态生物过程进行成像时,较长的积分时间会导致运动模糊,而较低的采样率则会导致时间混叠。为了减少这些不必要的伪像,我们利用时间超分辨率算法从多个低时间分辨率采集中重建一个高时间分辨率图像序列。每个捕获在时间上偏移子帧延迟,并且将成本最小化用于重建高时间分辨率序列。本文介绍了采集和重建算法,评估了其性能,并证明了其在胚胎斑马鱼心脏的实时荧光生物成像中的应用。我们的时间超分辨率算法将带宽增加了1.5倍,并且表明时间超分辨率可以成为捕获生物显微镜中快速动态过程的有价值的工具。

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