改进了超声回波迹谱分析技术在血管壁变化研究中的应用

I. Bazán, C. Negreira, A. Ramos, H. Calás, T. Gómez, A. Ramírez, J. M. De La Rosa, F. Gallegos
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引用次数: 4

摘要

为了获得更高的频率分辨率,本文对作者先前开发的用于生物多回波波形频谱评估的参数算法进行了调整和改进。这些结果允许围绕一种新的自回归光谱技术的可能应用进行可行性研究,以估计血管壁厚变化等物理特性,并具有足够的准确性。这些在血管中进行的困难和复杂的测量作为计算血管壁弹性特性的基本参数的工具越来越受到关注。本文展示了乳胶模体(模拟血管特性)的实验室厚度数据,为这种改进的血管表征估计技术提供了一个有希望的期望,这是一种越来越受到研究人员关注的诊断工具。事实上,研究结果表明,在估计脉冲信号之间延迟的空间分辨率方面,与经典的相互关联和非参数技术相比,有了明显的提高。但是,为了优化这种新的厚度测量方法的潜在分辨率,并评估其可能的临床局限性,还需要进一步的努力和对从控制良好的血组织幻影中获得的超声回波信号进行严格的分析。
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Possible application of spectral analysis techniques on ultrasonic echo-traces improved for studying changes in blood vessel walls
Parametric algorithms previously developed by authors for spectral evaluation of biological multi-echo waveforms are adapted and improved here in order to achieve a more elevated frequency resolution. These results permit to undertake viability studies around the possible application of a new auto-regressive spectral technique to estimate physical properties like wall thickness changes in blood vessels, with accuracy enough. These difficult and sophisticated measurements in vessels have an increasing interest as tools to estimate basic parameters for calculating elastic properties in the vessel walls. Laboratory thickness data obtained for a latex phantom (mimicking vessel properties) are shown, giving a promising expectative for this improved estimation technique in blood vessels characterization, a diagnostic tool nowadays of growing attention by the researches. In fact, the results suggest clear improvement in spatial resolution, over the classic cross-correlation and non-parametric techniques, to estimate delays between pulsed signals. But, still further efforts and rigorous analyses of ultrasonic echo-signals acquired from well-controlled sanguineous tissues phantoms are needed in order to optimize the potential resolution of this new thickness measurement procedure and also to evaluate its possible clinic limitations.
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