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首页> 外文期刊>Nano letters >Probing Rotational and Translational Diffusion of Nanodoublers in Living Cells on Microsecond Time Scales
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Probing Rotational and Translational Diffusion of Nanodoublers in Living Cells on Microsecond Time Scales

机译:在微秒级上探测活细胞中纳米倍增剂的旋转和平移扩散。

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摘要

Nonlinear microscopes have seen an increase in popularity in the life sciences due to their molecular and structural specificity, high resolution, large penetration depth, and volumetric imaging capability. Nonetheless, the inherently weak optical signals demand long exposure times for live cell imaging. Here, by modifying the optical layout and illumination parameters, we can follow the rotation and translation of noncentrosymetric crystalline particles, or nanodoublers, with 50 μs acquisition times in living cells. The rotational diffusion can be derived from variations in the second harmonic intensity that originates from the rotation of the nanodoubler crystal axis. We envisage that by capitalizing on the biocompatibility, functionalizability, stability, and nondestructive optical response of the nanodoublers, novel insights on cellular dynamics are within reach.
机译:非线性显微镜因其分子和结构特异性,高分辨率,大穿透深度和体积成像能力而在生命科学领域日益普及。但是,固有的弱光信号要求活细胞成像需要较长的曝光时间。在这里,通过修改光学布局和照明参数,我们可以在活细胞中以50μs的采集时间跟踪非定心晶体颗粒或纳米倍增器的旋转和平移。旋转扩散可源自于二次谐波强度的变化,该变化源自纳米倍增晶体轴的旋转。我们设想通过利用纳米倍增剂的生物相容性,功能性,稳定性和无损光学响应,对细胞动力学的新见解可及。

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