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首页> 外文期刊>IEEE Transactions on Medical Imaging >A statistical analysis of phase aberration correction using image quality factors in coherent imaging systems
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A statistical analysis of phase aberration correction using image quality factors in coherent imaging systems

机译:相干成像系统中使用图像质量因子进行相差校正的统计分析

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摘要

A fundamental analysis of phase aberration correction techniques which use speckle brightness-based image equality factors (QFs) to iteratively reduce phase errors is presented. Phase aberration arises from the spatial inhomogeneity of acoustic velocity in human tissue and degrades the performance of diagnostic ultrasonic imaging systems. A theoretical analysis is presented indicating that the mean speckle brightness decreases with root-mean-square (RMS) phase error. A general definition of QFs is given using the probability of error as a criterion of performance. The QF is optimized through minimization of the probability of error under different conditions. The analysis provides a theoretical framework for the current correction technique using QFs under a variety of conditions, and is a useful tool to evaluate new QFs and correction techniques.
机译:提出了相位像差校正技术的基础分析,该技术使用基于斑点亮度的图像相等因子(QF)来迭代减少相位误差。相位像差是由人体组织中声速的空间不均匀性引起的,并且会降低超声诊断成像系统的性能。进行了理论分析,表明平均斑点亮度随均方根(RMS)相位误差而降低。 QF的一般定义是使用错误概率作为性能标准给出的。通过最小化不同条件下的错误概率来优化QF。该分析为在各种条件下使用QF的当前校正技术提供了理论框架,并且是评估新的QF和校正技术的有用工具。

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