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Adaptive optics two-photon microscopy for in vivo imaging of cortex and hippocampus in mouse brain

机译:自适应光学双光子显微镜显微镜,用于小鼠脑中皮质和海马的体内成像

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Two-photon microscopy is a powerful tool for in vivo brain imaging that has greatly facilitated the neuroscience researchin the past few decades. However, it still remains a challenge to image deep inside the brain with near diffraction-limitedresolution due to the optical aberrations induced by the biological tissue and the cranial window. Here, we used anadaptive optics approach based on direct wavefront sensing to correct the aberration induced by the thinned skullwindow and achieved minimally invasive imaging of cerebral cortex with near-diffraction-limit resolution. Besides, bycompensating the intrinsic aberration of a miniature gradient-index lens that implanted into the brain, two-photonimaging of hippocampal dendritic spines was realized over an extended field of view. The improvement in fluorescenceintensity and imaging resolution enabled us to resolve the fine structures in live mouse brain such as dendritic spines thatwere invisible without the help of adaptive optics.
机译:双光子显微镜是体内脑成像的强大工具,这极大地促进了神经科学研究在过去的几十年里。然而,在大脑内部与附近的衍射限制仍然是对大脑深度的挑战由于生物组织和颅窗引起的光学像差导致的分辨率。在这里,我们使用了基于直接波前感测的自适应光学方法校正稀土颅骨诱导的像差窗口并实现了近衍射极限分辨率的脑皮质的微创成像。此外,除了补偿植入大脑的微型梯度指数透镜的固有像差,双光子通过扩展视野实现海马树突脊柱的成像。荧光的改善强度和成像分辨率使我们能够解决活小鼠大脑中的细结构,如树突状刺在没有自适应光学的帮助下,看不见。

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