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Dual-wavelength linear regression phase unwrapping in three-dimensional microscopic images of cancer cells

机译:癌细胞的三维显微图像中的双波长线性回归相位展开

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摘要

We present a study of the three-dimensional structure of cancer cells using dual-wavelength phase-imaging digital holographic microscopy. Phase imaging of objects with optical height variation greater than the wavelength of light is ambiguous and causes phase wrapping. By comparing two phase images recorded at different wavelengths, the images can be accurately unwrapped. The unwrapping method is computationally fast and straightforward, and it can process complex topologies. Additionally, the limitations on the total optical height are significantly relaxed. This new methodology is widely applicable to other phase-imaging techniques as well as in applications beyond optical microscopy.
机译:我们目前使用双波长相位成像数字全息显微镜对癌细胞的三维结构进行研究。具有大于光的波长的光学高度变化的物体的相位成像是模糊的并且引起相位包裹。通过比较以不同波长记录的两个相位图像,可以准确解开图像。展开方法计算快速,简单,可以处理复杂的拓扑。此外,总光学高度的限制也大大放松了。这种新方法学可广泛应用于其他相位成像技术以及光学显微镜以外的应用。

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