论文标题

减少的运动伪影和增强线扫描纤维捆绑捆绑的速度改善

Reduced motion artifacts and speed improvements in enhanced line-scanning fiber bundle endomicroscopy

论文作者

Thrapp, Andrew D., Hughes, Michael R.

论文摘要

意义:共聚焦激光扫描可以在纤维束内部显微镜中进行光学切片,但限制了框架速率。为了更好地探索组织形态,将顺序获得的框架缝合到马赛克中很有用。但是,低帧速率限制了最大探针翻译速度。线扫描共聚焦内分物显微镜提供了更高的框架速率,但残留的异常光降低了图像。基于减法的方法可以以引入运动伪像的代价来抑制这种残基。 目的:为了通过改进的光学切片生成高帧速率内分镜图像,我们开发了一种高速减法方法,该方法仅需要获得单个摄像头框架。 方法:CMOS摄像机的滚动快门既充当基于减法的分段增强所需的对齐和偏移检测器缝隙。捆绑包的两个图像在相机的不同区域形成,允许同时获得这两个图像。 结果:与常规的线扫描相比,我们证实了改进的光学切片,尤其是远离焦点,并表明未引入运动伪像。我们以高达240 Hz的框架速率证明了高速镶嵌。 结论:使用基于新的减法方法的高速获取光学切片图像会导致高框架速率改善马赛克。

Significance: Confocal laser scanning enables optical sectioning in fiber bundle endomicroscopy but limits the frame rate. To be able to better explore tissue morphology it is useful to stitch sequentially acquired frames into a mosaic. However, low frame rates limit the maximum probe translation speed. Line-scanning confocal endomicroscopy provides higher frame rates, but residual out-of-focus light degrades images. Subtraction based approaches can suppress this residue at the expense of introducing motion artifacts. Aim: To generate high frame rate endomicroscopy images with improved optical sectioning, we develop a high-speed subtraction method that only requires the acquisition of a single camera frame. Approach: The rolling shutter of a CMOS camera acts as both the aligned and offset detector slits required for subtraction-based sectioning enhancement. Two images of the bundle are formed on different regions of the camera, allowing both images to be acquired simultaneously. Results: We confirm improved optical sectioning compared to conventional line-scanning, particularly far from focus, and show that motion artifacts are not introduced. We demonstrate high-speed mosaicing at frame rates of up to 240 Hz. Conclusion: High-speed acquisition of optically sectioned images using the new subtraction based approach leads to improved mosaicing at high frame rates.

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