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Super-resolution scanning laser microscopy through virtually structured detection

机译:通过虚拟结构检测实现超分辨率扫描激光显微镜

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摘要

High resolution microscopy is essential for advanced study of biological structures and accurate diagnosis of medical diseases. The spatial resolution of conventional microscopes is light diffraction limited. Structured illumination has been extensively explored to break the diffraction limit in wide field light microscopy. However, deployable application of the structured illumination in scanning laser microscopy is challenging due to the complexity of the illumination system and possible phase errors in sequential illumination patterns required for super-resolution reconstruction. We report here a super-resolution scanning laser imaging system which employs virtually structured detection (VSD) to break the diffraction limit. Without the complexity of structured illumination, VSD provides an easy, low-cost and phase-artifact free strategy to achieve super-resolution in scanning laser microscopy.
机译:高分辨率显微镜对于生物学结构的高级研究和医学疾病的准确诊断至关重要。常规显微镜的空间分辨率受到光衍射的限制。为了在宽视场光学显微镜中突破衍射极限,已经广泛探索了结构照明。但是,由于照明系统的复杂性以及超分辨率重建所需的顺序照明图案中可能存在相位误差,因此在扫描激光显微镜中可结构化照明的可部署应用具有挑战性。我们在这里报告了一种超分辨率扫描激光成像系统,该系统采用虚拟结构化检测(VSD)打破了衍射极限。在没有结构化照明的复杂性的情况下,VSD提供了一种简便,低成本和无伪像的策略,可在扫描激光显微镜中实现超分辨率。

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