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Adaptive optics two photon scanning laser fluorescence microscopy

机译:自适应光学两光子扫描激光荧光显微镜

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Two-photon fluorescence microscopy provides a powerful tool for deep tissue imaging. However, optical aberrations from illumination beam path limit imaging depth and resolution. Adaptive Optics (AO) is found to be useful to compensate for optical aberrations and improve image resolution and contrast from two-photon excitation. We have developed an AO system relying on a MEMS Deformable Mirror (DM) to compensate the optical aberrations in a two-photon scanning laser fluorescence microscope. The AO system utilized a Zernike polynomial based stochastic parallel gradient descent (SPGD) algorithm to optimize the DM shape for wavefront correction. The developed microscope is applied for subsurface imaging of mouse bone marrow. It was demonstrated that AO allows 80% increase in fluorescence signal intensity from bone cavities 145um below the surface. The AO-enhanced microscope provides cellular level images of mouse bone marrow at depths exceeding those achievable without AO.
机译:双光子荧光显微镜为深层组织成像提供了强大的工具。然而,来自照明光束路径的光学像差限制了成像深度和分辨率。自适应光学(AO)被发现可用于补偿光学像差,提高图像分辨率和双光子激发的对比度。我们已经开发了一种依靠MEMS变形镜(DM)的AO系统来补偿双光子扫描激光荧光显微镜中的光学像差。 AO系统利用基于Zernike多项式的随机平行梯度下降(SPGD)算法来优化DM形状以进行波前校正。研制的显微镜用于小鼠骨髓的地下成像。结果表明,AO使来自表面以下145um的骨腔的荧光信号强度增加80%。 AO增强显微镜可提供超过无AO可获得的深度的小鼠骨髓细胞水平图像。

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