首页> 外文会议>IEEE International Ultrasonics Symposium >Strategic Lateral Undersampling and Compressed Sensing Recovery in Ultrasound Imaging
【24h】

Strategic Lateral Undersampling and Compressed Sensing Recovery in Ultrasound Imaging

机译:超声成像中的战略性横向欠采样和压缩感知恢复

获取原文

摘要

Affordable point-of-care ultrasound systems use Conventional Focused Beamforming (CFB) with limited number of active elements, which leads to reduction in the image quality. In addition, these systems have limited storage capacity. Therefore, reduction in the number of active elements and data in CFB without accompanying compromise in the image quality is highly desired. For data reduction, axial undersampling of the channel RF data and recovery of the fully-sampled RF data using Compressed Sensing (CS) has been proposed earlier. However, there is no detailed investigation on aperture undersampling and its recovery using CS framework, which leads to data reduction as well as reduction in the number of active receive elements. The central theme of this work is to investigate two sampling schemes to undersample the receive aperture (lateral undersampling) as well as axial undersampling of the selected channel RF data for CS framework. Experimental data for this study were acquired from a wire phantom and in-vitro cyst phantom using Sonix Touch Q+(R) ultrasound scanner. The results indicate that CS with Gaussian undersampling outperforms the uniform undersampling. In spite of discarding 90% of samples from the original RF frame data, B-mode images from CS framework had better LR and comparable contrast to that of reference image. Further, the results suggest that as the size of receive aperture from which the subset of channels are chosen increases, LR improves but contrast deteriorates. Thus, the results clearly demonstrate that it is possible to reduce the active channel count and data size using CS framework and obtain better-quality image compared to that obtained from corresponding fully-sampled data.
机译:负担得起的即时护理超声系统使用常规聚焦波束成形(CFB),且有源元件数量有限,这会导致图像质量下降。此外,这些系统的存储容量有限。因此,非常需要减少CFB中的有源元件和数据的数量而不损害图像质量。为了减少数据量,较早提出了使用压缩传感(CS)进行通道RF数据轴向欠采样和完全采样RF数据恢复的建议。但是,没有对使用CS框架的孔径欠采样及其恢复进行详细研究,这会导致数据减少以及有效接收元件数量的减少。这项工作的中心主题是研究两种采样方案,以对CS框架所选通道RF数据的接收孔径(横向欠采样)以及轴向欠采样进行欠采样。这项研究的实验数据是使用Sonix Touch Q +从线体模和体外囊肿体模获得的 (R) 超声波扫描仪。结果表明,具有高斯欠采样的CS优于均匀欠采样。尽管从原始RF帧数据中丢弃了90%的样本,但CS框架的B模式图像具有更好的LR和与参考图像相当的对比度。此外,结果表明,随着从中选择信道子集的接收孔径的尺寸增加,LR会提高,但对比度会下降。因此,结果清楚地表明,与从相应的全采样数据中获得的图像相比,使用CS框架可以减少有效通道数和数据大小,并获得更高质量的图像。

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