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Imaging Multimodalities for Dissecting Alzheimer's Disease: Advanced Technologies of Positron Emission Tomography and Fluorescence Imaging

机译:解剖阿尔茨海默氏病的成像多模态:正电子发射断层扫描和荧光成像的先进技术

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The rapid progress in advanced imaging technologies has expanded our toolbox for monitoring a variety of biological aspects in living subjects including human. In vivo radiological imaging using small chemical tracers, such as with positron emission tomography, represents an especially vital breakthrough in the efforts to improve our understanding of the complicated cascade of neurodegenerative disorders including Alzheimer's disease (AD), and it has provided the most reliable visible biomarkers for enabling clinical diagnosis. At the same time, in combination with genetically modified animal model systems, the most recent innovation of fluorescence imaging is helping establish diverse applications in basic neuroscience research, from single-molecule analysis to animal behavior manipulation, suggesting the potential utility of fluorescence technology for dissecting the detailed molecular-based consequence of AD pathophysiology. In this review, our primary focus is on a current update of PET radiotracers and fluorescence indicators beneficial for understanding the AD cascade, and discussion of the utility and pitfalls of those imaging modalities for future translational research applications. We will also highlight current cutting-edge genetic approaches and discuss how to integrate individual technologies for further potential innovations.
机译:先进成像技术的快速发展扩展了我们的工具箱,可用于监视包括人类在内的生命对象的各种生物学方面。使用小型化学示踪剂进行的体内放射成像,例如正电子发射断层扫描,是在努力增进我们对复杂的神经退行性疾病包括阿尔茨海默氏病(AD)的级联的努力中的一项特别重要的突破,它提供了最可靠的可见光用于临床诊断的生物标志物。同时,与转基因动物模型系统结合,荧光成像的最新创新正在帮助建立基础神经科学研究的各种应用,从单分子分析到动物行为操纵,表明荧光技术在解剖中的潜在效用。 AD病理生理学基于分子的详细结果。在这篇综述中,我们的主要重点是对PET放射性示踪剂和荧光指示剂的最新更新,这些信息有助于理解AD级联,并讨论了这些成像方式在将来的翻译研究应用中的实用性和陷阱。我们还将重点介绍当前最先进的遗传方法,并讨论如何整合单个技术以进行进一步的潜在创新。

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