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Highly Sensitive Shack–Hartmann Wavefront Sensor: Application to Non-Transparent Tissue Mimic Imaging with Adaptive Light-Sheet Fluorescence Microscopy

机译:高敏感的棚屋 - Hartmann波前传感器:应用于非透明组织模拟成像与自适应光纸荧光显微镜

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High-quality in-depth imaging of three-dimensional samples remains a major challenge in modern microscopy. Selective plane illumination microscopy (SPIM) is a widely used technique that enables imaging of living tissues with subcellular resolution. However, scattering, absorption, and optical aberrations limit the depth at which useful imaging can be done. Adaptive optics (AOs) is a method capable of measuring and correcting aberrations in different kinds of fluorescence microscopes, thereby improving the performance of the optical system. We have incorporated a wavefront sensor adaptive optics scheme to SPIM (WAOSPIM) to correct aberrations induced by optically-thick samples, such as multi-cellular tumor spheroids (MCTS). Two-photon fluorescence provides us with a tool to produce a weak non-linear guide star (NGS) in any region of the field of view. The faintness of NGS; however, led us to develop a high-sensitivity ShackHartmann wavefront sensor (SHWS). This paper describes this newly developed SHWS and shows the correction capabilities of WAOSPIM using NGS in thick, inhomogeneous samples like MCTS. We report improvements of up to 79% for spatial frequencies corresponding to cellular and subcellular size features.
机译:三维样本的高质量深入成像仍然是现代显微镜中的主要挑战。选择性平面照明显微镜(SPIM)是一种广泛使用的技术,可以通过亚细胞分辨率实现活性组织的成像。然而,散射,吸收和光学像差限制了可以进行有用成像的深度。自适应光学器件(AOS)是一种能够测量和校正不同种类荧光显微镜的像差的方法,从而提高了光学系统的性能。我们已将波前传感器自适应光学方案纳入SPIM(WAOSPIM)以校正由光学厚的样品诱导的像差,例如多细胞肿瘤球状体(MCT)。双光子荧光为我们提供了一种工具,在视野的任何区域中产生弱的非线性导向星(NGS)。 ngs的晕眩;然而,导致我们开发高灵敏度Shackhartmann波前传感器(Shws)。本文介绍了这种新开发的SHW,并显示了WaSpim的校正能力,使用厚的非均匀样品如MCTS。我们向对应于蜂窝和亚细胞尺寸特征的空间频率报告高达79%的改进。

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