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Adaptive-Optics Polarization-Sensitive Second Harmonic Generation Microscopy

机译:自适应光学偏振敏感第二谐波产生显微镜

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An accurate visualization of structures containing collagen is essential for early detection and correct diagnosis of possible diseases. Second harmonic generation (SHG) microscopy is a non-invasive multiphoton technique allowing high-resolution imaging of collagen-based structures. However, this technique is limited by optical aberrations. Adaptive optics (AO) procedures are often used to compensate for optical aberrations and to improve multiphoton imaging. Moreover, since polarization modulates SHG signal, the acquired images show different features depending on the incident polarization state. In this work we demonstrate a multiphoton microscope combining AO and polarization-control for SHG imaging. Results show that polarization adds extra benefits to AO in terms of image quality enhancement. Although the performance depends on each particular sample and depth imaging location, results show up to a 3× improvement in SHG signal.
机译:包含胶原蛋白的结构的精确可视化对于早期发现和正确诊断可能的疾病至关重要。二次谐波生成(SHG)显微镜是一种非侵入性的多光子技术,可对基于胶原的结构进行高分辨率成像。但是,该技术受到光学像差的限制。自适应光学(AO)程序通常用于补偿光学像差并改善多光子成像。此外,由于偏振调制了SHG信号,所以所获取的图像根据入射的偏振状态而表现出不同的特征。在这项工作中,我们演示了将AO和偏振控制相结合的多光子显微镜用于SHG成像。结果表明,极化在增强图像质量方面为AO增加了额外的好处。尽管性能取决于每个特定的样本和深度成像位置,但结果显示SHG信号可提高3倍。

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