Afrakhteh Sajjad, Iacca Giovanni, Demi Libertario
Department of Information Engineering and Computer Science, University of Trento, Trento, Italy.
J Acoust Soc Am. 2023 Nov 1;154(5):3454-3465. doi: 10.1121/10.0022515.
To solve the problem of reduced image quality in plane wave imaging (PWI), coherent plane wave compounding (CPWC) has been introduced, based on a combination of plane wave images from several directions (i.e., with different angles). However, the number of angles needed to reach a reasonable image quality affects the maximum achievable frame rate in CPWC. In this study, we suggest reducing the tradeoff between the image quality and the frame rate in CPWC by employing two-dimensional (2D) interpolation based on radial basis functions. More specifically, we propose constructing a three-dimensional spatio-angular structure to integrate both spatial and angular information into the reconstruction prior to 2D interpolation. The rationale behind our proposal is to reduce the number of transmissions and then apply the 2D interpolation along the angle dimension to reconstruct the missing information corresponding to the angles not selected for CPWC imaging. To evaluate the proposed technique, we applied it to the PWI challenges in the medical ultrasound database. Results show that we can achieve 3× to 4× improvement in frame rate while maintaining acceptable image quality compared to the case of using all the angles.
为了解决平面波成像(PWI)中图像质量下降的问题,引入了基于多个方向(即不同角度)的平面波图像组合的相干平面波复合(CPWC)技术。然而,达到合理图像质量所需的角度数量会影响CPWC中可实现的最大帧率。在本研究中,我们建议通过采用基于径向基函数的二维(2D)插值来减少CPWC中图像质量和帧率之间的权衡。更具体地说,我们建议构建一个三维空间角结构,在二维插值之前将空间和角度信息整合到重建中。我们建议背后的基本原理是减少传输次数,然后沿角度维度应用二维插值来重建与未选择用于CPWC成像的角度相对应的缺失信息。为了评估所提出的技术,我们将其应用于医学超声数据库中的PWI挑战。结果表明,与使用所有角度的情况相比,我们可以在保持可接受图像质量的同时将帧率提高3到4倍。