论文标题
深度血液动力学成像的光声矢量层析成像
Photoacoustic vector tomography for deep hemodynamic imaging
论文作者
论文摘要
用于制图血液动力学的深血血管的非侵入性成像仍然是生物医学光学成像的开放率。尽管纯粹的光学成像技术提供了丰富的血液对比度并据报道测量血流,但它们通常仅限于在大约1毫米的光学扩散极限内表面成像。本文中,我们提出了光声矢量断层扫描(PAVT),突破了光学扩散极限,以使用速度和方向定量图像深血流量。 PAVT协同血液的空间异质性和光声对比。它编译了连续的单发,广阔的光声图像,以直接以像素流速度估计的方式直接可视化血液到框架传播的框架传播。我们在体内证明了PAVT允许对深血血管的血液动力学定量在光学扩散极限(超过五毫米)的五倍,从而导致人类血流的矢量图。通过提供具有光学对比度深体血液动力学成像的能力,PAVT可能成为监测和诊断血管疾病和映射循环系统功能的强大工具。
Non-invasive imaging of deep blood vessels for mapping hemodynamics remains an open quest in biomedical optical imaging. Although pure optical imaging techniques offer rich optical contrast of blood and have been reported to measure blood flow, they are generally limited to surface imaging within the optical diffusion limit of about one millimeter. Herein, we present photoacoustic vector tomography (PAVT), breaking through the optical diffusion limit to image deep blood flow with speed and direction quantification. PAVT synergizes the spatial heterogeneity of blood and the photoacoustic contrast; it compiles successive single-shot, wide-field photoacoustic images to directly visualize the frame-to-frame propagation of the blood with pixel-wise flow velocity estimation. We demonstrated in vivo that PAVT allows hemodynamic quantification of deep blood vessels at five times the optical diffusion limit (more than five millimeters), leading to vector mapping of blood flow in humans. By offering the capability for deep hemodynamic imaging with optical contrast, PAVT may become a powerful tool for monitoring and diagnosing vascular diseases and mapping circulatory system function.