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Multimodal Biomedical Optical Imaging Review: Towards Comprehensive Investigation of Biological Tissues

机译:多峰生物医学光学成像审查:朝着生物组织的全面调查。

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Optical imaging techniques ranging from mesoscopic to macroscopic levels provide non-invasive, non-ionized and highly sensitive investigation of thick biological tissues with different spatial resolution, penetration depth and contrast mechanisms. Multimodal optical imaging can be understood as the combination of multiple optical imaging modalities and/or fusion with established conventional medical imaging modalities such as computed tomography (CT), magnetic resonance (MR), ultrasound imaging (US) and positron emission tomography (PET). Multimodal optical imaging allows to capture complementary anatomical, physiological and molecular data sets for enhanced diagnosis, therapy monitoring and to assist drug development. Moreover, multimodal optical imaging platforms provides unique tool to validate new imaging paradigms via data cross-validation. Herein, we summarize the recent technical progresses of multimodal optical imaging for thick tissue applications. More particularly, we focus on the mesoscopic imaging regime (optical coherence tomography) and macroscopic imaging (diffuse optical tomography and bioluminescent tomography) applied to subsurface and deep tissue investigation.
机译:从介观到宏观水平的光学成像技术可对具有不同空间分辨率,穿透深度和对比度机制的厚生物组织进行非侵入性,非电离且高度敏感的研究。多模式光学成像可以理解为多种光学成像模式和/或与已建立的常规医学成像模式(例如计算机断层扫描(CT),磁共振(MR),超声成像(US)和正电子发射断层扫描(PET))的融合。 。多模态光学成像可以捕获互补的解剖,生理和分子数据集,以增强诊断,治疗监测并协助药物开发。此外,多峰光学成像平台提供了独特的工具,可通过数据交叉验证来验证新的成像范例。在此,我们总结了用于厚组织应用的多峰光学成像的最新技术进展。更具体地说,我们专注于应用于地下和深层组织研究的介观成像方案(光学相干断层扫描)和宏观成像(漫射光学断层扫描和生物发光层析成像)。

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