高分辨率光谱估计技术在噪声宽带条件下组织热表征的评价

F. Gamino, I. Bazán, A. Ramírez, A. Ramos, C. Negreira
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引用次数: 0

摘要

频谱分析技术已被广泛用于提取某些信号及其产生过程的信息。从生物组织中获取的超声(US)信号是一个特殊的例子。光谱分析已被用于提取与生物组织状态相关的US信号信息,主要与内部散射结构分布和规律性有关。高分辨率光谱分析技术应用于确定病理特征,可以表明疾病在组织中的存在。谐波位置的一些微小变化可能会受到分析信号中存在的噪声的极大影响。在这项工作中,进行了两种参数HR光谱分析技术的评估,首先应用于从温度范围为21°C至45°C的生物组织体中获取的信号。第二次评估考虑了模拟的美国信号,加入了三种不同的信噪比水平,然后用两种参数方法对它们进行了分析,得出了不同噪声水平条件下估计误差的变化。但一般情况下,当噪声降低时,误差较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of high-resolution spectral estimation techniques in tissue thermal characterization under noisy broadband conditions
The spectral analysis techniques has been widely used to extract information about certain signals and the process in which those are generated. Ultrasonic (US) signal acquired from biological tissues are a particular case of that. Spectral analysis has been used to extract information from US signal related to biological tissue condition, mainly related with the internal scattering structure distribution and regularity. High-resolution spectral analysis techniques are applied to determine pathological characteristics that could indicate the presence of disease in the tissue. Some small changes in harmonics location could be drastically affected by the presence of noise in the analyzed signal. In this work, an evaluation of two parametric HR spectral analysis techniques is performed, first applied to signals acquired from a biological tissue phantom in a temperature range from 21°C to 45°C. A second evaluation was performed, considering simulated US signals, which were added with three different levels of SNR, and then they were analyzed with two parametric methods, which present variations in the error estimated for different noise level conditions. But the general behavior is a smaller error when noise decreases.
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