Kalva Sandeep Kumar, Özbek Ali, Reiss Michael, Deán-Ben Xosé Luís, Razansky Daniel
Institute of Pharmacology and Toxicology and Institute for Biomedical Engineering, Faculty of Medicine, University of Zurich, Zurich CH-8057, Switzerland.
Institute for Biomedical Engineering, Department of Information Technology and Electrical Engineering, ETH Zurich, Zurich CH-8093, Switzerland.
Photoacoustics. 2024 Oct 28;40:100659. doi: 10.1016/j.pacs.2024.100659. eCollection 2024 Dec.
Optoacoustic (OA) tomography is a powerful noninvasive preclinical imaging tool enabling high resolution whole-body visualization of biodistribution and dynamics of molecular agents. The technique yet lacks endogenous soft-tissue contrast, which often hampers anatomical navigation. Herein, we devise spiral volumetric optoacoustic and ultrasound (SVOPUS) tomography for concurrent OA and pulse-echo ultrasound (US) imaging of whole mice. To this end, a spherical array transducer featuring a central curvilinear segment is employed. Full rotation of the array renders transverse US and OA views, while additional translation facilitates volumetric whole-body imaging with high spatial resolution down to 150 µm and 110 µm in the OA and US modes, respectively. OA imaging revealed blood-filled, vascular organs like heart, liver, spleen, kidneys, and surrounding vasculature, whilst complementary details of bones, lungs, and skin boundaries were provided by the US. The dual-modal capability of SVOPUS for label-free imaging of tissue morphology and function is poised to facilitate pharmacokinetic studies, disease monitoring, and image-guided therapies.
光声(OA)断层扫描是一种强大的非侵入性临床前成像工具,能够对分子试剂的生物分布和动力学进行高分辨率的全身可视化。然而,该技术缺乏内源性软组织对比度,这常常妨碍解剖导航。在此,我们设计了螺旋体积光声和超声(SVOPUS)断层扫描技术,用于对整个小鼠进行同步OA和脉冲回波超声(US)成像。为此,采用了一种具有中央曲线段的球形阵列换能器。阵列的全旋转可提供横向US和OA视图,而额外的平移则有助于以高空间分辨率进行全身体积成像,在OA和US模式下分别低至150 µm和110 µm。OA成像揭示了充满血液的血管器官,如心脏、肝脏、脾脏、肾脏以及周围的血管系统,而US则提供了骨骼、肺部和皮肤边界的补充细节。SVOPUS在组织形态和功能的无标记成像方面的双模态能力有望促进药代动力学研究、疾病监测和图像引导治疗。