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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effects of Signal Saturation on QUS Parameter Estimates Based on High-Frequency-Ultrasound Signals Acquired From Isolated Cancerous Lymph Nodes
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Effects of Signal Saturation on QUS Parameter Estimates Based on High-Frequency-Ultrasound Signals Acquired From Isolated Cancerous Lymph Nodes

机译:基于从孤立的癌性淋巴结中获取的高频超声信号,信号饱和度对QUS参数估计的影响

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Choosing an appropriate dynamic range (DR) for acquiring radio frequency (RF) data from a high-frequency-ultrasound (HFU) system is challenging because signals can vary greatly in amplitude as a result of focusing and attenuation effects. In addition, quantitative ultrasound (QUS) results are altered by saturated data. In this paper, the effects of saturation on QUS estimates of effective scatterer diameter (ESD) and effective acoustic concentration (EAC) were quantified using simulated and experimental RF data. Experimental data were acquired from 69 dissected human lymph nodes using a single-element transducer with a 26-MHz center frequency. Artificially saturated signals ( were produced by thresholding the original unsaturated RF echo signals. Saturation severity was expressed using a quantity called saturate-signal-to-noise ratio (SSNR). Results indicated that saturation has little effect on ESD estimates. However, EAC estimates decreased significantly with decreasing SSNR. An EAC correction algorithm exploiting a linear relationship between EAC values over a range of SSNR values and -norm of (i.e., the sum of absolute values of the true RF echo signal) is developed. The maximal errors in EAC estimates resulting from saturation were −8.05, −3.59, and −0.93 dB/mm with the RF echo signals thresholded to keep 5, 6, and 7-bit from the original 8-bit DR, respectively. The EAC correction algorithm reduced maximal errors to −3.71, −0.89, and −0.26 dB/mm when signals were thresholded at 5, 6, and 7-bit, respectively.
机译:选择合适的动态范围(DR)从高频超声(HFU)系统获取射频(RF)数据具有挑战性,因为聚焦和衰减效应会导致信号幅度发生很大变化。另外,饱和数据会改变定量超声(QUS)结果。在本文中,使用模拟和实验RF数据量化了饱和度对QUS估计的有效散射体直径(ESD)和有效声波浓度(EAC)的影响。使用具有26 MHz中心频率的单元素换能器从69个解剖的人淋巴结中获取实验数据。人为饱和信号(是通过对原始不饱和RF回波信号进行阈值产生的。饱和严重性使用称为饱和信号信噪比(SSNR)的量表示。结果表明,饱和度对ESD估计的影响很小。但是,EAC估计随SSNR的降低而显着降低,开发了一种EAC校正算法,该算法利用了SSNR值范围内的EAC值与-范数(即真实RF回波信号的绝对值之和)之间的线性关系。饱和导致的估计值为-8.05,-3.59和-0.93 dB / mm,同时将RF回波信号阈值化为分别保持原始8位DR的5位,6位和7位。当信号分别以5位,6位和7位为阈值时,分别达到-3.71,-0.89和-0.26 dB / mm。

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