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Harmonic holography for three-dimensional cellular imaging

机译:三维全息成像的谐波全息术

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Luminescent markers play a key role in imaging techniques for life sciences since they provide a contrast mechanism between signal and background. We describe a new type of marker using second harmonic generation (SHG) from noncentrosymmetric BaTiO_3 nanocrystals. These nanoparticles are attractive due to their stable, non-saturating and coherent signal with a femtosecond-scale response time and a broad flexibility in the choice of excitation wavelength. We use the coherent SHG signal from BaTiO_3 nanoparticles for three-dimensional (3D) imaging without scanning. We built a harmonic holographic (H~2) microscope which records digital holograms at the second harmonic frequency. High-resolution 3D distributions of these SHG markers in mammalian cells are successfully captured and interpreted by the H~2 microscope.
机译:发光标记物在生命科学的成像技术中起着关键作用,因为它们提供了信号与背景之间的对比机制。我们描述了一种使用非中心对称BaTiO_3纳米晶体产生二次谐波(SHG)的新型标记。这些纳米颗粒具有稳定,非饱和和相干的信号,具有飞秒级的响应时间,并且在选择激发波长时具有广泛的灵活性,因此具有吸引力。我们使用BaTiO_3纳米粒子的相干SHG信号进行三维(3D)成像而无需扫描。我们建立了一个谐波全息(H〜2)显微镜,该显微镜以二次谐波频率记录数字全息图。 H〜2显微镜成功捕获并解释了哺乳动物细胞中这些SHG标记的高分辨率3D分布。

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