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Valuation of responses in spectral techniques for thermal estimation into biological media, from ultrasonic echo-signals contaminated with increasing noise levels

机译:评估在光谱技术中用于热估计进入生物介质中的响应的价值,这些响应是由噪声水平不断升高污染的超声回波信号

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The objective of this work is to define the preliminary bases needed for achieving an evaluation of responses of the spectral analysis technique for non invasive temperature estimation, when applied to multi-echo ultrasonic signals contaminated with increasing noise levels. Power Spectral Density (PSD) of an ultrasonic signal is calculated in order to obtain accurate information about signal frequency components. The frequency of interest in non invasive thermal estimation is the one associated to the average distance among internal scatterers, which defines a fundamental resonance mode. This fundamental frequency is also associated with the speed of the ultrasound in the propagation media and with its variations versus the temperature. The final objective of this on-going study is to determine potential disturbances on that fundamental resonance frequency, and mainly on its harmonics related to the indirect detection of temperature increments or decrements, for the realistic case of be working with ultrasonic echo-signals contaminated with different noise levels.
机译:这项工作的目的是定义一种初步的基础,用于将频谱分析技术用于无创温度估计的响应评估,该方法适用于受噪声级提高污染的多回波超声信号。计算超声信号的功率谱密度(PSD),以获得有关信号频率分量的准确信息。非侵入式热估计中感兴趣的频率是与内部散射体之间的平均距离相关联的频率,其定义了基本共振模式。该基频还与传播介质中超声波的速度及其随温度的变化有关。这项正在进行的研究的最终目的是确定在该基本谐振频率上的潜在干扰,主要是在与间接检测温度升高或降低有关的谐波上,对于在实际情况下使用受超声波污染的超声波回波信号,应进行确定。不同的噪音水平。

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