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A Hybrid PET-MRI: An Integrated Molecular-Genetic Imaging System with HRRT-PET and 7.0-T MRI

机译:混合PET-MRI:具有HRRT-PET和7.0-T MRI的集成分子遗传成像系统

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摘要

A PET-MRI fusion system is developed for molecular-genetic imaging. The purpose of the system is to obtain images of the in-vivo human brain using two high-end imaging devices, an advanced PET and an ultrahigh-field MRI. These are the HRRT-PET, a high-resolution research tomograph dedicated to brain imaging on the molecular level, and the 7.0-T MRI, an ultrahigh field version used for morphological imaging. HRRT-PET delivers high-resolution molecular imaging with a resolution down to 2.5 mm FWHM, which is currently the highest spatial resolution available for the observation of the human brain's molecular activities, including enzymes and receptors, which are manipulated genetically, such as reporter genes and probes. The 7.0-T MRI began to reveal submillimeter resolution images of the cortical as well as deep brain areas, down to 250 urn, which allows us to visualize the fine details of the cortical and brainstem areas, including the line of Gennari in the visual cortex and the corticospinal tracts in the pontine area. The current PET-MRI fusion imaging system produces the highest quality images of molecular and genetic activities of the human brain in vivo. It is starting to provide many answers to the key questions about the neurological diseases. Some of these start providing answers to many cognitive neuroscience problems with clear molecular and genetic bases. There is great potential in the PET-MRI for early diagnosis of cancers as well as other neurological diseases, which we were previously unable to diagnose, such as microscopic molecular changes that occur in Parkinson's and Alzheimer's diseases.
机译:开发了用于分子遗传成像的PET-MRI融合系统。该系统的目的是使用两个高端成像设备,先进的PET和超高场MRI获得体内人脑的图像。它们是HRRT-PET(高分辨率的研究断层扫描仪,专门用于分子水平上的脑部成像)和7.0-T MRI(用于形态成像的超高场版)。 HRRT-PET提供高分辨率的分子成像,分辨率低至2.5 mm FWHM,这是目前观察人脑分子活动(包括酶和受体)的最高空间分辨率,包括酶和受体,这些酶和受体经过遗传操作,例如报道基因和探针。 7.0-T MRI开始显示皮质和深部大脑区域的亚毫米级分辨率图像,低至250 um,这使我们能够可视化皮质和脑干区域的精细细节,包括视觉皮层中的Gennari线和脑桥区域的皮质脊髓束。当前的PET-MRI融合成像系统可在体内产生人脑分子和遗传活动的最高质量图像。它开始为有关神经系统疾病的关键问题提供许多答案。其中一些方法开始为具有清晰分子和遗传基础的许多认知神经科学问题提供答案。 PET-MRI在癌症以及其他我们以前无法诊断的神经系统疾病的早期诊断中具有巨大潜力,例如帕金森氏病和阿尔茨海默氏病中发生的微观分子变化。

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