论文标题
光圈,深度和声学混乱对相干多透射超声成像的性能的影响
Impact of aperture, depth, and acoustic clutter on performance of Coherent Multi-Transducer Ultrasound imaging
论文作者
论文摘要
超声成像中需要具有较大光圈尺寸的换能器,以提高分辨率和图像质量。连贯的多透射超声成像系统(COMTUS)通过多个换能器的相干组合实现了扩展有效孔径。在这项研究中,通过模拟和实验研究了Comtus创建的不连续的扩展孔及其在深层成像和通过分层媒体的性能。评估典型的图像质量指标 - 分辨率,对比度和对比度与噪声比率 - 并与标准的单探针成像系统进行了比较。结果表明,comtus的图像性能取决于阵列的相对空间位置。产生的有效光圈显着改善了分辨率,而阵列之间的分离可能会降低对比度。对于有效孔径有限的差距(少于几厘米),与标准的单探针成像系统相比,COMTU为图像质量提供了好处。总体而言,COMTUS显示出更高的灵敏度,并通过成像深度降低了分辨率的损失。通常,当通过不同的声音速度和分辨率在大型成像深度上提高的分层中的成像时,COMTUS成像性能不受影响。
Transducers with larger aperture size are desirable in ultrasound imaging to improve resolution and image quality. A coherent multi-transducer ultrasound imaging system (CoMTUS) enables an extended effective aperture through coherent combination of multiple transducers. In this study, the discontinuous extended aperture created by CoMTUS and its performance for deep imaging and through layered-media are investigated by both simulations and experiments. Typical image quality metrics - resolution, contrast and contrast-to-noise ratio - are evaluated and compared with a standard single probe imaging system. Results suggest that, the image performance of CoMTUS depends on the relative spatial location of the arrays. The resulting effective aperture significantly improves resolution, while the separation between the arrays may degrade contrast. For a limited gap in the effective aperture (less than few centimetres), CoMTUS provides benefits to image quality compared to standard single probe imaging system. Overall, CoMTUS shows higher sensitivity and reduced loss of resolution with imaging depth. In general, CoMTUS imaging performance was unaffected when imaging through a layered-medium with different speed of sound values and resolution improved up to 80% at large imaging depths.