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首页> 外文期刊>Journal of Biophotonics >Microscopic phase reconstruction of cervical exfoliated cell under partially coherent illumination
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Microscopic phase reconstruction of cervical exfoliated cell under partially coherent illumination

机译:部分相干照射下颈椎剥落细胞的微观相重建

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摘要

Basic coherent diffraction imaging methods strongly rely on having a highly coherent illumination in order to reconstruct the phase accurately. However, regardless of considering the turbulent transport medium, the instability of the system or the generation mechanism of the light source, partially coherent illumination is more common in real case. In this paper, we proposed an efficient microscopic phase imaging method to study normal and abnormal cervical exfoliated cells. By applying three phase modulations in a single point of the sample's transmitted field, the phase can be retrieved with correspoding three intensities under partially coherent illumination. Compared with intensity map, we can efficiently and clearly judge the proportion of high density shrinking abnormal cells from the phase distributions, which provides a confident analysis and evaluation basis for early medical diagnosis of cervical cancer. This study also has potential applications in noninvasive optical imaging of dynamic biological tissues.
机译:基本的相干衍射成像方法强烈依赖于具有高度相干的照明,以便精确地重建相位。然而,无论考虑湍流传输介质、系统的不稳定性或光源的产生机制,部分相干照明在实际情况下更为常见。在本文中,我们提出了一种有效的显微相位成像方法来研究正常和异常宫颈脱落细胞。通过在样品透射场的一个点上应用三个相位调制,在部分相干照明下,可以通过相应的三个强度来恢复相位。与强度图相比,从相位分布可以有效、清晰地判断高密度收缩异常细胞的比例,为宫颈癌的早期医学诊断提供可靠的分析和评价依据。这项研究在动态生物组织的无创光学成像方面也有潜在的应用。

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