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Robust microbial cell segmentation by optical‐phase thresholding with minimal processing requirements

机译:通过光学相位阈值进行鲁棒的微生物细胞细分同时具有最低的处理要求

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摘要

High‐throughput imaging with single‐cell resolution has enabled remarkable discoveries in cell physiology and Systems Biology investigations. A common, and often the most challenging step in all such imaging implementations, is the ability to segment multiple images to regions that correspond to individual cells. Here, a robust segmentation strategy for microbial cells using Quantitative Phase Imaging is reported. The proposed method enables a greater than 99% yeast cell segmentation success rate, without any computationally‐intensive, post‐acquisition processing. We also detail how the method can be expanded to bacterial cell segmentation with 98% success rates with substantially reduced processing requirements in comparison to existing methods. We attribute this improved performance to the remarkably uniform background, elimination of cell‐to‐cell and intracellular optical artifacts, and enhanced signal‐to‐background ratio—all innate properties of imaging in the optical‐phase domain. © 2017 The Authors. Cytometry Part A published by Wiley Periodicals, Inc. on behalf of International Society for Advancement of Cytometry.
机译:具有单细胞分辨率的高通量成像已在细胞生理学和系统生物学研究中取得了非凡的发现。在所有此类成像实现中,常见且通常是最具挑战性的步骤是将多个图像分割为对应于单个细胞的区域的能力。在此,报道了使用定量相成像技术对微生物细胞进行有效分割的策略。所提出的方法可实现超过99%的酵母细胞分割成功率,而无需任何计算密集型的采集后处理。我们还将详细介绍与现有方法相比,该方法如何以98%的成功率扩展到细菌细胞分割,同时大大降低了处理要求。我们将这种改进的性能归因于非常均匀的背景,消除了细胞间和细胞内的光学伪像以及增强的信噪比,这是光相位域中成像的所有固有特性。 ©2017作者。细胞计数法A部分,由Wiley Periodicals,Inc.代表国际细胞计数发展协会出版。

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