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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Barker-coded ultrasound color flow imaging: theoretical and practical design considerations
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Barker-coded ultrasound color flow imaging: theoretical and practical design considerations

机译:Barker编码的超声彩色流成像:理论和实际设计注意事项

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Barker-coded excitation is applied to improve the sensitivity versus resolution tradeoff for ultrasound color flow imaging (CFT). Direct sequence encoding and complex baseband decoding methods that enable flexible combination of demodulation frequency and Barker-chip duration are proposed. Based on a general Wiener decoding filter formulation, three different conditions that pertain to the relationship between the Barker-chip duration and demodulation frequency are found, such that they result in real, complex symmetric and complex asymmetric decoding filter sequences, respectively. It is also shown that the matched filter and the inverse filter represent two extreme cases of the Wiener filter, and the latter is proposed for decoding Barker-coded CFI signals with maximum range sidelobe suppression. Some practical considerations such as coding gain, integrated sidelobe level (ISL) and peak side-lobe level (PSL) for various decoding filter lengths, and the influence of flow rate also are analyzed. Linear array imaging of steady flow in straight tubes is simulated based on a 4-cycle base pulse at 6.25 MHz, a 5-chip Barker code, a 32-tap decoding filter, and standard color flow data processing. The resultant color flow images demonstrate the expected improvements in penetration and axial resolution
机译:使用Barker编码的激励来提高超声彩色流成像(CFT)的灵敏度与分辨率的权衡。提出了可以灵活组合解调频率和Barker-chip持续时间的直接序列编码和复杂基带解码方法。基于一般的维纳解码滤波器公式,发现了与巴克码片持续时间和解调频率之间的关系有关的三个不同条件,从而分别导致了实数,复数对称和复数非对称解码滤波器序列。还示出了匹配滤波器和逆滤波器代表维纳滤波器的两个极端情况,并且提出后者被用于解码具有最大范围旁瓣抑制的巴克编码的CFI信号。分析了各种解码滤波器长度的编码增益,积分旁瓣电平(ISL)和峰值旁瓣电平(PSL)等一些实际考虑因素,以及流量的影响。基于6.25 MHz的4周期基本脉冲,5芯片巴克码,32抽头解码滤波器和标准色流数据处理,对直管中稳定流的线性阵列成像进行了仿真。所得的彩色流图像显示出预期的穿透力和轴向分辨率改善

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