基于射频信号复包络相位的应变成像时延估计

Safayat Bin Hakim, Kazi Khairul Islam
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引用次数: 0

摘要

时延估计是定位和跟踪辐射声源的一项基本技术。TDE过程通常用于研究过程工业中常见的信噪比、输入信号和系统。延迟估计是利用接收信号的原始和滞后滤波版本之间的广义互相关函数来获得的。近年来,超声弹性成像被证明是一种成功的替代有创活检的方法。其根本必要性在于应变的估计,而延迟估计是应变估计的先决步骤。利用压缩前后射频回波信号的复杂包络的相位,可以成功地计算出它们之间的时间延迟。弹性成像过程的最终目标是无噪声弹性图,用于识别嵌入组织柱深处的可疑结节。本文利用复合包络线相位获取的应变信息,对弹性图质量进行了分析,主要研究了应变和采样频率两个参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Time delay estimation for strain imaging using the phase of the complex envelope of RF signal
Time Delay Estimation is a basic technique used for locating and tracking radiating acoustic source. TDE process is common for studying signal-to-noise ratio, input signals and systems that are common in process industry. The delay estimate is acquired using the generalized cross-correlation function applied between the original and the time-lagged filtered version of the received signal. In recent years ultrasound elastography proved as a successful alternative of the invasive biopsy. The fundamental necessity lies in estimating the strain for which time delay estimation is a pre-requisite step. Taking the phase of the complex envelope of the pre and post compression RF echo signals it is possible to successfully compute the time delay between them. The ultimate target of an Elastographic process is the noiseless Elastogram which is used to identify the suspected nodules embedded into the deep of tissue column. In this paper the strain information acquired from the phase of complex envelope and the same is used to analyze the quality of Elastograms studying mainly two parameters strain and sampling frequency.
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