Biomedical Imaging Division, VT-WFU School of Biomedical Engineering and Sciences, Blacksburg, Virginia Tech, Blacksburg, Virginia, United States of America.
PLoS One. 2012;7(6):e39700. doi: 10.1371/journal.pone.0039700. Epub 2012 Jun 29.
We recently elevated interior tomography from its origin in computed tomography (CT) to a general tomographic principle, and proved its validity for other tomographic modalities including SPECT, MRI, and others. Here we propose "omni-tomography", a novel concept for the grand fusion of multiple tomographic modalities for simultaneous data acquisition in a region of interest (ROI). Omni-tomography can be instrumental when physiological processes under investigation are multi-dimensional, multi-scale, multi-temporal and multi-parametric. Both preclinical and clinical studies now depend on in vivo tomography, often requiring separate evaluations by different imaging modalities. Over the past decade, two approaches have been used for multimodality fusion: Software based image registration and hybrid scanners such as PET-CT, PET-MRI, and SPECT-CT among others. While there are intrinsic limitations with both approaches, the main obstacle to the seamless fusion of multiple imaging modalities has been the bulkiness of each individual imager and the conflict of their physical (especially spatial) requirements. To address this challenge, omni-tomography is now unveiled as an emerging direction for biomedical imaging and systems biomedicine.
我们最近将计算机断层扫描(CT)中的体层成像技术提升为一个通用的体层成像原理,并证明了其在 SPECT、MRI 等其他断层扫描模式中的有效性。在这里,我们提出了“全向断层扫描”,这是一种将多种断层扫描模式融合为一体的新概念,用于在感兴趣区域(ROI)中同时获取数据。当研究中的生理过程是多维、多尺度、多时相和多参数时,全向断层扫描可以发挥作用。临床前和临床研究现在都依赖于体内断层扫描,通常需要不同的成像模式进行单独评估。在过去的十年中,已经使用了两种方法来进行多模态融合:基于软件的图像配准和混合扫描仪,如 PET-CT、PET-MRI 和 SPECT-CT 等。虽然这两种方法都存在内在的局限性,但将多种成像模式无缝融合的主要障碍是每个成像仪的体积庞大,以及它们的物理(特别是空间)要求之间的冲突。为了解决这一挑战,全向断层扫描现在被揭示为生物医学成像和系统生物医学的一个新兴方向。