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Comparison of line-scanned and point-scanned dual-axis confocal microscope performance

机译:线扫描和点扫描双轴共聚焦显微镜性能的比较

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摘要

The point-scanned dual-axis confocal (PS-DAC) microscope has been shown to exhibit a superior capability to reject out-of-focus and multiply scattered light in comparison to its conventional single-axis counterpart. However, the slow frame rate (typically < 5 Hz) resulting from point-by-point data collection makes these systems vulnerable to motion artifacts. While video-rate point-scanned confocal microscopy is possible, a line-scanned dual-axis confocal (LS-DAC) microscope provides a simpler means of achieving high-speed imaging through line-by-line data collection, but sacrifices contrast due to a loss of confocality along one dimension. Here we evaluate the performance tradeoffs between a LS-DAC and PS-DAC microscope with identical spatial resolutions. Characterization experiments of the LS-DAC and PS-DAC microscopes with tissue phantoms, in reflectance mode, are shown to match results from Monte-Carlo scattering simulations of the systems. Fluorescence images of mouse brain vasculature, obtained using resolution-matched LS-DAC and PS-DAC microscopes, demonstrate the comparable performance of LS-DAC and PS-DAC microscopy at shallow depths.
机译:点扫描双轴共焦(PS-DAC)显微镜已显示出与传统的单轴同类显微镜相比,具有出色的抑制散焦和倍增散射光的能力。但是,逐点数据收集导致的慢帧速率(通常<5 Hz)使这些系统易受运​​动伪影的影响。虽然可以进行视频速率点扫描共聚焦显微镜,但线扫描双轴共聚焦(LS-DAC)显微镜为通过逐行数据收集实现高速成像提供了更简单的方法,但由于牺牲了对比度一面失去共产主义。在这里,我们评估了具有相同空间分辨率的LS-DAC和PS-DAC显微镜之间的性能折衷。带有反射模型的带有体模的LS-DAC和PS-DAC显微镜的表征实验显示,与系统的蒙特卡罗散射仿真结果相匹配。使用分辨率匹配的LS-DAC和PS-DAC显微镜获得的小鼠大脑脉管系统的荧光图像证明了LS-DAC和PS-DAC显微镜在较浅深度的可比性能。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(38),24
  • 年度 -1
  • 页码 5280–5283
  • 总页数 11
  • 原文格式 PDF
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