首页> 外文会议>Optical technologies in biophysics and medicine XIV; and Laser physics and photonics XIV >Probing multi-scale self-similarity of tissue structures using light scattering spectroscopy: Prospects in pre-cancer detection
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Probing multi-scale self-similarity of tissue structures using light scattering spectroscopy: Prospects in pre-cancer detection

机译:使用光散射光谱探测组织结构的多尺度自相似性:癌前检测的前景

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Multi-resolution analysis on the spatial refractive index inhomogeneities in the connective tissue regions of human cervix reveals clear signature of multifractality. We have thus developed an inverse analysis strategy for extraction and quantification of the multifractality of spatial refractive index fluctuations from the recorded light scattering signal. The method is based on Fourier domain pre-processing of light scattering data using Born approximation, and its subsequent analysis through Multifractal Detrended Fluctuation Analysis model. The method has been validated on several mono-and multi-fractal scattering objects whose self-similar properties are user controlled and known a-priori. Following successful validation, this approach has initially been explored for differentiating between different grades of pre-cancerous human cervical tissues.
机译:对子宫颈结缔组织区域中的空间折射率不均匀性的多分辨率分析揭示了多重分形的清晰特征。因此,我们开发了一种逆分析策略,用于从记录的光散射信号中提取和量化空间折射率波动的多重性。该方法基于使用Born逼近对光散射数据进行傅立叶域预处理,并通过多分形去趋势波动分析模型对其进行后续分析。该方法已经在几个单分形和多分形散射对象上得到了验证,这些对象的自相似特性是用户控制的并且是先验的。在成功验证之后,最初已经探索了这种方法来区分不同等级的癌前人类宫颈组织。

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