...
首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >An ultrasonic imaging speckle-suppression and contrast-enhancement technique by means of frequency compounding and coded excitation
【24h】

An ultrasonic imaging speckle-suppression and contrast-enhancement technique by means of frequency compounding and coded excitation

机译:通过频率合成和编码激励的超声成像斑点抑制和对比度增强技术

获取原文
获取原文并翻译 | 示例

摘要

A method for improving the contrast resolution of B-mode images is proposed by combining the speckle-reduction technique of frequency compounding (FC) and the codedexcitation and pulse-compression technique called resolution enhancement compression (REC). FC suppresses speckle but at the expense of a reduction in axial resolution. Using REC, the axial resolution and bandwidth of the imaging system was doubled. Therefore, by combining REC with FC (REC-FC), the tradeoff between axial resolution and contrast enhancement was extended significantly. Simulations and experimental measurements were conducted with a single-element transducer (f/2.66) having a center frequency of 2.25 MHz and a -3-dB bandwidth of 50%. Simulations and measurements of hyperechoic (+6 dB) tissue-mimicking targets were imaged. Four FC cases were evaluated: full-, half-, third-, and fourth-width of the true impulse response bandwidth. The image quality metrics used to compare REC-FC to conventional pulsing (CP) and CP-FC were contrast-to-noise ratio (CNR), speckle signal-to- noise ratio, histogram pixel intensity, and lesion signal-to-noise ratio. Increases in CNR of 121%, 231%, 302%, and 391% were obtained in experiments when comparing REC-FC for the full-, half-, third-, and fourth-width cases to CP. Furthermore, smaller increases in CNR of 112%, 233%, and 309% were obtained in experiments when comparing CP-FC for the half-, third-, and fourth-width cases to CP. Improved lesion detectability was observed by using REC-FC.
机译:通过结合频率合成(FC)的散斑减少技术和称为分辨率增强压缩(REC)的码激励和脉冲压缩技术,提出了一种提高B模式图像对比度分辨率的方法。 FC抑制斑点,但以降低轴向分辨率为代价。使用REC,成像系统的轴向分辨率和带宽增加了一倍。因此,通过将REC与FC(REC-FC)结合使用,可以显着扩展轴向分辨率和对比度增强之间的折衷。使用中心频率为2.25 MHz且-3-dB带宽为50%的单元素换能器(f / 2.66)进行仿真和实验测量。对高回声(+6 dB)模拟组织的目标进行仿真和测量。评估了四种FC情况:真实脉冲响应带宽的全角,半角,第三角和第四角。用于将REC-FC与常规脉冲(CP)和CP-FC进行比较的图像质量指标是:对比度噪声比(CNR),斑点信号噪声比,直方图像素强度和病变信号噪声比比。将全角,半角,三角和四角情况的REC-FC与CP进行比较时,在实验中获得的CNR分别提高了121%,231%,302%和391%。此外,将半角,第三和第四宽度情况下的CP-FC与CP进行比较时,实验中CNR的增加幅度较小,分别为112%,233%和309%。使用REC-FC观察到病灶的可检测性提高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号