Zhang Yachao, Wang Lidai
Department of Biomedical Engineering, City University of Hong Kong, Hong Kong, 999077, China.
City University of Hong Kong Shenzhen Research Institute, Shen Zhen, 518057, China.
Biomed Opt Express. 2022 Jul 27;13(8):4398-4413. doi: 10.1364/BOE.464360. eCollection 2022 Aug 1.
Full-ring dual-modal ultrasound and photoacoustic imaging provide complementary contrasts, high spatial resolution, full view angle and are more desirable in pre-clinical and clinical applications. However, two long-standing challenges exist in achieving high-quality video-rate dual-modal imaging. One is the increased data processing burden from the dense acquisition. Another one is the object-dependent speed of sound variation, which may cause blurry, splitting artifacts, and low imaging contrast. Here, we develop a video-rate full-ring ultrasound and photoacoustic computed tomography (VF-USPACT) with real-time optimization of the speed of sound. We improve the imaging speed by selective and parallel image reconstruction. We determine the optimal sound speed via co-registered ultrasound imaging. Equipped with a 256-channel ultrasound array, the dual-modal system can optimize the sound speed and reconstruct dual-modal images at 10 Hz in real-time. The optimized sound speed can effectively enhance the imaging quality under various sample sizes, types, or physiological states. In animal and human imaging, the system shows co-registered dual contrasts, high spatial resolution (140 µm), single-pulse photoacoustic imaging (< 50 µs), deep penetration (> 20 mm), full view, and adaptive sound speed correction. We believe VF-USPACT can advance many real-time biomedical imaging applications, such as vascular disease diagnosing, cancer screening, or neuroimaging.
全环双模态超声和光声成像提供了互补的对比度、高空间分辨率、全视角,在临床前和临床应用中更具优势。然而,在实现高质量视频速率双模态成像方面存在两个长期挑战。一是密集采集带来的数据处理负担增加。另一个是与物体相关的声速变化,这可能导致模糊、分裂伪影和低成像对比度。在此,我们开发了一种具有实时声速优化功能的视频速率全环超声和光声计算机断层扫描(VF-USPACT)。我们通过选择性和平行图像重建提高成像速度。我们通过配准的超声成像确定最佳声速。配备256通道超声阵列的双模态系统能够实时优化声速并以10赫兹的频率重建双模态图像。优化后的声速可以在各种样本大小、类型或生理状态下有效提高成像质量。在动物和人体成像中,该系统显示出配准的双对比度、高空间分辨率(140微米)、单脉冲光声成像(<50微秒)、深度穿透(>20毫米)、全视角以及自适应声速校正。我们相信VF-USPACT能够推动许多实时生物医学成像应用的发展,如血管疾病诊断、癌症筛查或神经成像。