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A multi-point scanner for high frame rate confocal microendoscopy

机译:用于高帧率共聚焦显微内窥镜检查的多点扫描仪

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Slit-scanning geometries for confocal microendoscopy represent a compromise between acquisition rate and optical performance. Such systems provide high frame rates that freeze motion but recent Monte Carlo simulations show that scattered light severely limits the practical imaging depth for in vivo applications. A new multi-point scanning architecture for confocal microendoscopy has been developed. The new scanner is based on a relatively simple modification to the slit-scanning geometry that results in a parallelized point-scanning confocal microendoscope that maintains the high frame rate of a slit-scanning system while providing optical performance close to that of a single point scanning system. The multi-point scanner has been incorporated into an existing multi-spectral slit-scanning confocal microendoscope. The new confocal aperture consists of a slit and a rotating low duty cycle binary transmission grating, which effectively produces a set of continuously moving widely spaced illumination points along the slit. The design maintains the ability to rapidly switch between grayscale and multi-spectral imaging modes. The improved axial resolution of the multi-point scanning confocal microendoscope leads to significantly better confocal sectioning and deeper imaging, which greatly improves the diagnostic potential of the instrument.
机译:共焦显微内窥镜的狭缝扫描几何形状代表了采集速率和光学性能之间的折衷。这样的系统提供了冻结运动的高帧频,但是最近的蒙特卡洛模拟显示,散射光严重限制了体内应用的实际成像深度。已经开发了用于共聚焦显微内窥镜检查的新的多点扫描架构。新的扫描仪基于对狭缝扫描几何形状的相对简单的修改,从而产生了平行点扫描共聚焦微型内窥镜,该内窥镜在保持狭缝扫描系统高帧频的同时,提供了接近单点扫描的光学性能。系统。多点扫描仪已被并入现有的多光谱狭缝扫描共聚焦显微内窥镜中。新的共焦光阑由一个狭缝和一个旋转的低占空比二进制透射光栅组成,可有效地产生一组沿狭缝连续移动的宽间隔照明点。该设计保持了在灰度和多光谱成像模式之间快速切换的能力。多点扫描共聚焦显微内窥镜的轴向分辨率提高,可显着改善共聚焦切片和更深的成像,从而大大提高了仪器的诊断潜力。

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