Chair of Biological Imaging, Technical University of Munich, 81675, Munich, Germany.
Institute of Biological and Medical Imaging, Helmholtz Zentrum München, 85764, Neuherberg, Germany.
Sci Rep. 2020 Oct 23;10(1):18173. doi: 10.1038/s41598-020-75092-8.
Ultrasound imaging is affected by coherent noise or speckle, which reduces contrast and overall image quality and degrades the diagnostic precision of the collected images. Elevational angular compounding (EAC) is an attractive means of addressing this limitation, since it reduces speckle noise while operating in real-time. However, current EAC implementations rely on mechanically rotating a one-dimensional (1D) transducer array or electronically beam steering of two-dimensional (2D) arrays to provide different elevational imaging angles, which increases the size and cost of the systems. Here we present a novel EAC implementation based on a 1D array, which does not necessitate mechanically rotating the transducer. The proposed refraction-based elevational angular compounding technique (REACT) instead utilizes a translating cylindrical acoustic lens that steers the ultrasound beam along the elevational direction. Applying REACT to investigate phantoms and excised tissue samples demonstrated superior suppression of ultrasound speckle noise compared to previous EAC methods, with up to a two-fold improvement in signal- and contrast-to-noise ratios. The effects of elevational angular width on speckle reduction was further investigated to determine the appropriate conditions for applying EAC. This study introduces acoustic refractive elements as potential low cost solutions to noise reduction, which could be integrated into current medical ultrasound devices.
超声成像是受相干噪声或斑点的影响,这会降低对比度和整体图像质量,并降低所采集图像的诊断精度。仰角复合(EAC)是解决此限制的一种有吸引力的方法,因为它可以在实时操作的同时减少斑点噪声。然而,目前的 EAC 实现依赖于机械旋转一维(1D)换能器阵列或二维(2D)阵列的电子波束转向,以提供不同的仰角成像角度,这增加了系统的尺寸和成本。在这里,我们提出了一种基于 1D 阵列的新型 EAC 实现方法,该方法不需要机械旋转换能器。所提出的基于折射的仰角角复合技术(REACT)而是利用平移圆柱声学透镜来沿仰角方向引导超声束。将 REACT 应用于研究体模和切除的组织样本表明,与以前的 EAC 方法相比,超声斑点噪声的抑制效果更好,信号和对比噪声比提高了一倍。进一步研究了仰角宽度对斑点减少的影响,以确定应用 EAC 的适当条件。本研究介绍了声学折射元件作为降低噪声的潜在低成本解决方案,可集成到当前的医学超声设备中。