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A True Multi-modality Approach for High Resolution Optical Imaging: Photo-Magnetic Imaging

机译:高分辨率光学成像的真正多模态方法:光磁成像

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摘要

Multi-modality imaging leverages the competitive advantage of different imaging systems to improve the overall resolution and quantitative accuracy. Our new technique, Photo-Magnetic Imaging (PMI) is one of these true multi-modality imaging approaches, which can provide quantitative optical absorption map at MRI spatial resolution. PMI uses laser light to illuminate tissue and elevate its temperature while utilizing MR thermometry to measure the laser-induced temperature variation with high spatial resolution. The high-resolution temperature maps are later converted to tissue absorption maps by a finite element based inverse solver that is based on modeling of photon migration and heat diffusion in tissue. Previously, we have demonstrated the feasibility of PMI with phantom studies. Recently, we have managed to reduce the laser power under ANSI limit for maximum skin exposure therefore, we have well positioned PMI for in vivo imaging. Currently we are expanding our system by adding multi-wavelength imaging capability. This will allow us not only to resolve spatial distribution of tissue chromophores but also exogenous contrast agents. Although we test PMIs feasibility with animal studies, our future goal is to use PMI for breast cancer imaging due to its high translational potential.
机译:多模态成像利用不同成像系统的竞争优势来提高整体分辨率和定量精度。我们的新技术,光磁成像(PMI)是这些真正的多模态成像方法之一,可以在MRI空间分辨率下提供定量的光吸收图。 PMI使用激光照亮组织并提高其温度,同时利用MR测温法以高空间分辨率测量激光引起的温度变化。高分辨率温度图随后通过基于有限元的逆求解器转换为组织吸收图,该逆求解器基于光子迁移和组织中热扩散的建模。以前,我们已经通过幻像研究证明了PMI的可行性。最近,我们设法降低了ANSI限制下的激光功率,以最大程度地暴露于皮肤,因此,我们已经将PMI定位于体内成像。当前,我们正在通过添加多波长成像功能来扩展我们的系统。这将使我们不仅能够解决组织发色团的空间分布,而且能够解决外源性造影剂的问题。尽管我们通过动物研究测试了PMI的可行性,但由于其较高的翻译潜力,我们的未来目标是将PMI用于乳腺癌成像。

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