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Deep-Tissue Two-Photon Imaging in Brain and Peripheral Nerve with a Compact High-Pulse Energy Ytterbium Fiber Laser

机译:深组织双光子成像在大脑和周围神经中,具有紧凑的高脉冲能量镱光纤激光器

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摘要

Two-photon microscopy is a powerful tool of current scientific research, allowing optical visualization of structures below the surface of tissues. This is of particular value in neuroscience, where optically accessing regions within the brain is critical for the continued advancement in understanding of neural circuits. However, two-photon imaging at significant depths have typically used Ti: Sapphire based amplifiers that are prohibitively expensive and bulky. In this study, we demonstrate deep tissue two-photon imaging using a compact, inexpensive, turnkey operated Ytterbium fiber laser (Y-Fi, KM Labs). The laser is based on all-normal dispersion (ANDi) that provides short pulse durations and high pulse energies. Depth measurements obtained in ex vivo mouse cortex exceed those obtainable with standard two-photon microscopes using Ti: Sapphire lasers. In addition to demonstrating the capability of deep-tissue imaging in the brain, we investigated imaging depth in highly-scattering white matter with measurements in sciatic nerve showing limited optical penetration of heavily myelinated nerve tissue relative to grey matter.
机译:双光子显微镜是当前科学研究的强大工具,允许在组织表面下方的结构光学可视化。这在神经科学中具有特殊的价值,其中大脑内的光学访问区域对于对神经电路的理解持续前进是至关重要的。然而,在显着深度下的两光子成像通常使用Ti:基于Sapphire的放大器,其非常昂贵和笨重。在这项研究中,我们展示了使用紧凑,廉价的交钥匙的YTTerbium光纤激光器(Y-Fi,KM实验室)的深组织双光子成像。激光基于全正常分散(ANDI),提供短脉冲持续时间和高脉冲能量。在exvivo小鼠皮质中获得的深度测量超过使用Ti:蓝宝石激光器的标准双光子显微镜获得的测量值。除了展示大脑中深组织成像的能力外,我们还研究了高度散射的白金的成像深度,坐骨神经中的测量显示,粘性神经组织的有限光学渗透相对于灰质。

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