IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Dec;65(12):2365-2380. doi: 10.1109/TUFFC.2018.2873380. Epub 2018 Oct 2.
Identifying and visualizing vasculature within organs and tumors has major implications in managing cardiovascular diseases and cancer. Contrast-enhanced ultrasound scans detect slow-flowing blood, facilitating noninvasive perfusion measurements. However, their limited spatial resolution prevents the depiction of microvascular structures. Recently, super-localization ultrasonography techniques have surpassed this limit. However, they require long acquisition times of several minutes, preventing the detection of hemodynamic changes. We present a fast super-resolution method that exploits sparsity in the underlying vasculature and statistical independence within the measured signals. Similar to super-localization techniques, this approach improves the spatial resolution by up to an order of magnitude compared to standard scans. Unlike super-localization methods, it requires acquisition times of only tens of milliseconds. We demonstrate a temporal resolution of ~25 Hz, which may enable functional super-resolution imaging deep within the tissue, surpassing the temporal resolution limitations of current super-resolution methods, e.g., in neural imaging. The subsecond acquisitions make our approach robust to motion artifacts, simplifying in vivo use of super-resolution ultrasound.
在管理心血管疾病和癌症方面,识别和可视化器官和肿瘤内的脉管系统具有重要意义。对比增强超声扫描可检测低速血流,促进非侵入性灌注测量。然而,其空间分辨率有限,无法描绘微血管结构。最近,超局部超声成像技术已经超越了这一限制。然而,它们需要数分钟的长采集时间,从而无法检测血流动力学变化。我们提出了一种快速的超分辨率方法,该方法利用了基础脉管系统中的稀疏性和测量信号中的统计独立性。与超局部化技术类似,该方法可将空间分辨率提高到标准扫描的一个数量级。与超局部化方法不同,它只需要几十毫秒的采集时间。我们证明了~25 Hz 的时间分辨率,这可能使功能超分辨率成像能够深入组织内部,超越当前超分辨率方法的时间分辨率限制,例如在神经成像中。亚秒级的采集使我们的方法对运动伪影具有鲁棒性,简化了超分辨率超声在体内的使用。