Punithakumar Kumaradevan, Hareendranathan Abhilash R, McNulty Alexander, Biamonte Marina, He Allen, Noga Michelle, Boulanger Pierre, Becher Harald
Servier Virtual Cardiac Centre, Mazankowski Alberta Heart Institute, Edmonton, Alberta, Canada; Department of Radiology & Diagnostic Imaging, University of Alberta, Edmonton, Alberta, Canada.
Servier Virtual Cardiac Centre, Mazankowski Alberta Heart Institute, Edmonton, Alberta, Canada; Department of Radiology & Diagnostic Imaging, University of Alberta, Edmonton, Alberta, Canada.
Ultrasound Med Biol. 2016 Aug;42(8):1998-2009. doi: 10.1016/j.ultrasmedbio.2016.03.019. Epub 2016 May 8.
Recent advances in echocardiography allow real-time 3-D dynamic image acquisition of the heart. However, one of the major limitations of 3-D echocardiography is the limited field of view, which results in an acquisition insufficient to cover the whole geometry of the heart. This study proposes the novel approach of fusing multiple 3-D echocardiography images using an optical tracking system that incorporates breath-hold position tracking to infer that the heart remains at the same position during different acquisitions. In six healthy male volunteers, 18 pairs of apical/parasternal 3-D ultrasound data sets were acquired during a single breath-hold as well as in subsequent breath-holds. The proposed method yielded a field of view improvement of 35.4 ± 12.5%. To improve the quality of the fused image, a wavelet-based fusion algorithm was developed that computes pixelwise likelihood values for overlapping voxels from multiple image views. The proposed wavelet-based fusion approach yielded significant improvement in contrast (66.46 ± 21.68%), contrast-to-noise ratio (49.92 ± 28.71%), signal-to-noise ratio (57.59 ± 47.85%) and feature count (13.06 ± 7.44%) in comparison to individual views.
超声心动图的最新进展使得能够对心脏进行实时三维动态图像采集。然而,三维超声心动图的主要局限性之一是视野有限,这导致采集的图像不足以覆盖心脏的整个几何形状。本研究提出了一种新颖的方法,即使用光学跟踪系统融合多个三维超声心动图图像,该系统结合屏气位置跟踪,以推断心脏在不同采集过程中保持在同一位置。在六名健康男性志愿者中,在一次屏气以及随后的屏气过程中采集了18对心尖/胸骨旁三维超声数据集。所提出的方法使视野提高了35.4±12.5%。为了提高融合图像的质量,开发了一种基于小波的融合算法,该算法为来自多个图像视图的重叠体素计算逐像素似然值。与单个视图相比,所提出的基于小波的融合方法在对比度(66.46±21.68%)、对比度噪声比(49.92±28.71%)、信噪比(57.59±47.85%)和特征计数(13.06±7.44%)方面有显著提高。