论文标题
手持GPS的手持3D光声成像仪
Hand-held 3D Photoacoustic Imager with GPS
论文作者
论文摘要
作为一种新兴的医学诊断技术,已经针对临床前和临床应用实施了光声成像。为了临床便利,基本上需要提供3D成像能力的手持式免费扫描光声断层扫描(PAT)系统,这具有手术导航和疾病诊断的潜力。在本文中,我们提出了基于手持线性阵列超声探针的免费扫描3D PAT(FSPAT)系统。全球定位系统(GPS)用于超声探针坐标的采集。所提出的FSPAT可以同时实现实时2D成像,并且较大的视野3D体积成像,该视野是从多个2D图像中重建的,该图像具有由GPS获取的坐标信息。为了形成高质量的3D图像,使用并通过建议的系统验证了专用的空间转换方法和重建算法。已经进行了模拟和实验研究,以证明所提出的FSPAT的可行性。为了探索其临床潜力,还进行了人腕部血管的体内3D成像,显示出明显的皮下血管网络,具有较高的图像对比度。
As an emerging medical diagnostic technology, photoacoustic imaging has been implemented for both preclinical and clinical applications. For clinical convenience, a handheld free scan photoacoustic tomography (PAT) system providing 3D imaging capability is essentially needed, which has potential for surgical navigation and disease diagnosis. In this paper, we proposed a free scan 3D PAT (fsPAT) system based on a handheld linear array ultrasound probe. A global positioning system (GPS) is applied for ultrasound probes coordinate acquisition. The proposed fsPAT can simultaneously realize real time 2D imaging, and large field of view 3D volumetric imaging, which is reconstructed from the multiple 2D images with coordinate information acquired by the GPS. To form a high quality 3D image, a dedicated space transformation method and reconstruction algorithm are used and validated by the proposed system. Both simulation and experimental studies have been performed to prove the feasibility of the proposed fsPAT. To explore its clinical potential, in vivo 3D imaging of human wrist vessels is also conducted, showing clear subcutaneous vessel network with high image contrast.