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使用互补金属氧化物半导体(CMOS)相机进行合成曝光以实现血流的多次曝光散斑成像。

Synthetic exposure with a CMOS camera for multiple exposure speckle imaging of blood flow.

作者信息

Chammas M, Pain F

机构信息

Laboratoire Charles Fabry, Institut d'Optique Graduate School, CNRS, Université Paris-Saclay, 91127, Palaiseau, France.

出版信息

Sci Rep. 2022 Mar 18;12(1):4708. doi: 10.1038/s41598-022-08647-6.

Abstract

Speckle contrast imaging is an established technique to obtain relative blood flow maps over wide fields of view. A major improvement of the method relies on the acquisition of raw speckle images at different exposure times but requires simultaneous modulation of a laser pulse in duration and intensity and precise synchronization with a camera. This complex instrumentation has limited the use of multiple exposure speckle imaging. We evaluate here the use of a CMOS camera for a simplified approach based on synthetic exposure images created from the sum of successive frames acquired at a 1 ms exposure time. Both methods have been applied to evaluate controlled flows in micro-channels. The contribution of noises to the speckle contrast have been quantified and compared. Dark, readout and shot noise contributions to the total contrast remain constant for modulated exposure, while all these contributions decrease with increasing exposure time for synthetic exposure. The relative contribution of noises to speckle contrast depends on the level of illumination and the exposure time. Guidelines for flow measurements and limitations of the use of a CMOS camera with a limited frame rate for synthetic exposure acquisition scheme are discussed. The synthetic exposure method is simple to implement and should facilitate the translation of multiple exposure speckle imaging to clinical set-ups.

摘要

散斑对比成像技术是一种成熟的技术,可用于在宽视野范围内获取相对血流图。该方法的一个主要改进依赖于在不同曝光时间采集原始散斑图像,但这需要同时调制激光脉冲的持续时间和强度,并与相机精确同步。这种复杂的仪器限制了多曝光散斑成像的应用。我们在此评估使用互补金属氧化物半导体(CMOS)相机的一种简化方法,该方法基于由在1毫秒曝光时间采集的连续帧之和创建的合成曝光图像。这两种方法都已应用于评估微通道中的受控流动。对散斑对比度的噪声贡献进行了量化和比较。对于调制曝光,暗噪声、读出噪声和散粒噪声对总对比度的贡献保持不变,而对于合成曝光,所有这些贡献都随着曝光时间的增加而降低。噪声对散斑对比度的相对贡献取决于光照水平和曝光时间。讨论了血流测量的指导原则以及使用具有有限帧率的CMOS相机进行合成曝光采集方案的局限性。合成曝光方法易于实施,应有助于将多曝光散斑成像技术应用于临床环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efc1/8933569/8897ec09b303/41598_2022_8647_Fig1_HTML.jpg

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