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Imaging multi-scale dynamics in vivo with spiral volumetric optoacoustic tomography

机译:螺旋体积光声断层扫描的体内成像多尺度动态

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Imaging dynamics in living organisms is essential for the understanding of biological complexity. While multiple imaging modalities are often required to cover both microscopic and macroscopic spatial scales, dynamic phenomena may also extend over different temporal scales, necessitating the use of different imaging technologies based on the trade-off between temporal resolution and effective field of view. Optoacoustic (photoacoustic) imaging has been shown to offer the exclusive capability to link multiple spatial scales ranging from organelles to entire organs of small animals. Yet, efficient visualization of multi-scale dynamics remained difficult with state-of-the-art systems due to inefficient trade-offs between image acquisition and effective field of view. Herein, we introduce a spiral volumetric optoacoustic tomography (SVOT) technique that provides spectrally-enriched high-resolution optical absorption contrast across multiple spatio-temporal scales. We demonstrate that SVOT can be used to monitor various in vivo dynamics, from video-rate volumetric visualization of cardiac-associated motion in whole organs to high-resolution imaging of pharmacokinetics in larger regions. The multi-scale dynamic imaging capability thus emerges as a powerful and unique feature of the optoacoustic technology that adds to the multiple advantages of this technology for structural, functional and molecular imaging.
机译:生物体中的成像动态对于了解生物学复杂性至关重要。虽然通常需要多种成像方式来覆盖微观和宏观空间尺度,但是动态现象也可以在不同的时间尺度上延伸,因此需要基于时间分辨率和有效视野之间的权衡使用不同的成像技术。光声(光声)成像已被证明为提供从细胞器到小动物的整个器官的多个空间尺度的独有能力。然而,由于图像采集和有效视野之间的效率低效,所以,最先进的系统,高效可视化仍然困难。在此,我们介绍了一种螺旋体积声断层扫描(SVOT)技术,其提供跨多个时空尺度的光谱富集的高分辨率光学吸收对比。我们证明SVOT可用于监测各种体内动态,从整个器官的心脏相关运动的视频速率容积可视化到较大区域中药代动力学的高分辨率成像。因此,多尺度动态成像能力成为光声技术的强大而独特的特征,这增加了该技术的结构,功能和分子成像的多种优点。

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