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Optical coherence tomography speckle decorrelation for detecting cell death

机译:光学相干断层扫描斑点去相关检测细胞死亡

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We present a dynamic light scattering technique applied to optical coherence tomography (OCT) for detecting changes in intracellular motion caused by cellular reorganization during apoptosis. We have validated our method by measuring Brownian motion in microsphere suspensions and comparing the measured values to those derived based on particle diffusion calculated using the Einstein-Stokes equation. Autocorrelations of OCT signal intensities acquired from acute myeloid leukemia cells as a function of treatment time demonstrated a significant drop in the decorrelation time after 24 hours of cisplatin treatment. This corresponded with nuclear fragmentation and irregular cell shape observed in histological sections. A similar analysis conducted with multicellular tumor spheroids indicated a shorter decorrelation time in the spheroid core relative to its edges. The spheroid core corresponded to a region exhibiting signs of cell death in histological sections and increased backscatter intensity in OCT images.
机译:我们提出了一种动态光散射技术,应用于光学相干断层扫描(OCT),以检测细胞凋亡在细胞重组过程中引起的细胞内运动变化。我们通过测量微球悬浮液中的布朗运动并将测量值与基于使用爱因斯坦-斯托克斯方程式计算的颗粒扩散得出的测量值进行比较,验证了我们的方法。从急性髓细胞性白血病细胞获得的OCT信号强度的自相关与治疗时间的关系表明,在顺铂治疗24小时后,去相关时间显着下降。这与在组织学切片中观察到的核碎裂和不规则的细胞形状相对应。用多细胞肿瘤球体进行的类似分析表明,相对于其边缘,球体核的去相关时间较短。球体核心对应于组织切片中显示细胞死亡迹象并在OCT图像中增加反向散射强度的区域。

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