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Extended two-photon microscopy in live samples with Bessel beams: steadier focus faster volume scans and simpler stereoscopic imaging

机译:使用贝塞尔光束对活样品进行扩展的双光子显微镜:聚焦稳定体积扫描更快立体成像更简单

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摘要

Two-photon microscopy has revolutionized functional cellular imaging in tissue, but although the highly confined depth of field (DOF) of standard set-ups yields great optical sectioning, it also limits imaging speed in volume samples and ease of use. For this reason, we recently presented a simple and retrofittable modification to the two-photon laser-scanning microscope which extends the DOF through the use of an axicon (conical lens). Here we demonstrate three significant benefits of this technique using biological samples commonly employed in the field of neuroscience. First, we use a sample of neurons grown in culture and move it along the z-axis, showing that a more stable focus is achieved without compromise on transverse resolution. Second, we monitor 3D population dynamics in an acute slice of live mouse cortex, demonstrating that faster volumetric scans can be conducted. Third, we acquire a stereoscopic image of neurons and their dendrites in a fixed sample of mouse cortex, using only two scans instead of the complete stack and calculations required by standard systems. Taken together, these advantages, combined with the ease of integration into pre-existing systems, make the extended depth-of-field imaging based on Bessel beams a strong asset for the field of microscopy and life sciences in general.
机译:双光子显微镜已经彻底改变了组织中的功能性细胞成像技术,但是尽管标准装置的高度限定景深(DOF)产生了出色的光学切片效果,但它也限制了体积样本中的成像速度和易用性。因此,我们最近对双光子激光扫描显微镜提出了一种简单且可改进的改进方案,该方案通过使用轴锥(圆锥透镜)扩展了自由度。在这里,我们使用神经科学领域中常用的生物样本证明了该技术的三个显着优势。首先,我们使用在培养物中生长的神经元样本,并将其沿z轴移动,这表明可以获得更稳定的焦点,而不会影响横向分辨率。其次,我们在活体小鼠皮层的急性切片中监测3D种群动态,这表明可以进行更快的体积扫描。第三,我们只使用两次扫描而不是标准系统所需的完整堆栈和计算,就可以在固定的小鼠皮质样本中获取神经元及其树突的立体图像。这些优势加之易于集成到现有系统中,使得基于贝塞尔光束的扩展景深成像成为显微镜和生命科学领域的重要资产。

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