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首页> 外文期刊>Journal of innovative optical health sciences >Overcoming the penetration depth limit in optical microscopy: Adaptive optics and wavefront shaping
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Overcoming the penetration depth limit in optical microscopy: Adaptive optics and wavefront shaping

机译:克服光学显微镜中的穿透深度限制:自适应光学和波前成形

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Despite the unique advantages of optical microscopy for molecular specific high resolution imaging of living structure in both space and time, current applications are mostly limited to research settings. This is due to the aberrations and multiple scattering that is induced by the inhomogeneous refractive boundaries that are inherent to biological systems. However, recent developments in adaptive optics and wavefront shaping have shown that high resolution optical imaging is not fundamentally limited only to the observation of single cells, but can be significantly enhanced to realize deep tissue imaging. To provide insight into how these two closely related fields can expand the limits of bio imaging, we review the recent progresses in their performance and applicable range of studies as well as potential future research directions to push the limits of deep tissue imaging.
机译:尽管光学显微镜在时空上都可以对生活结构进行分子特异性高分辨率成像,但其独特的优势,目前的应用大多局限于研究环境。这是由于生物系统固有的不均匀折射边界引起的像差和多重散射。然而,自适应光学和波阵面成形的最新发展表明,高分辨率光学成像不仅从根本上不限于观察单个细胞,而且可以显着增强以实现深层组织成像。为了深入了解这两个密切相关的领域如何扩大生物成像的范围,我们回顾了它们在性能和适用范围方面的最新进展,以及可能推动深层组织成像发展的潜在未来研究方向。

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