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Is the nuclear refractive index lower than cytoplasm? Validation of phase measurements and implications for light scattering technologies

机译:核折射率是否低于细胞质?验证相位测量结果及其对光散射技术的影响

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摘要

The refractive index (RI) of biological materials is a fundamental parameter for the optical characterization of living systems. Numerous light scattering technologies are grounded in a quantitative knowledge of the refractive index at cellular and subcellular scales. Recent work in quantitative phase microscopy (QPM) has called into question the widely held assumption that the index of the cell nucleus is greater than that of the cytoplasm, a result which disagrees with much of the current literature. In this work, we critically examine the measurement of the nuclear and whole-cell refractive index using QPM, validating that nuclear refractive index is lower than that of cytoplasm in four diverse cell lines and their corresponding isolated nuclei. We further examine Mie scattering and phase-wrapping as potential sources of error in these measurements, finding they have minimal impact. Finally, we use simulation to examine the effects of incorrect RI assumptions on nuclear morphology measurements using angle-resolved scattering information. Despite an erroneous assumption of the nuclear refractive index, accurate measurement of nuclear morphology was maintained, suggesting that light scattering modalities remain effective.
机译:生物材料的折射率(RI)是生物系统光学表征的基本参数。许多光散射技术都基于对细胞和亚细胞尺度的折射率的定量了解。定量相显微镜(QPM)的最新研究使人们普遍认为细胞核的指数大于细胞质的指数的说法受到质疑,这一结果与许多现有文献不同。在这项工作中,我们使用QPM严格检查了核和全细胞折射率的测量,验证了在四个不同细胞系及其相应的分离核中核折射率均低于细胞质。我们进一步检查了Mie散射和相位包裹作为这些测量中潜在的误差源,发现它们的影响最小。最后,我们使用模拟来检查不正确的RI假设对使用角度分辨散射信息的核形态测量的影响。尽管对核折射率的假设是错误的,但仍然可以精确测量核的形态,这表明光散射模态仍然有效。

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