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9.4T人体多模态神经成像:迈向先进代谢成像扫描仪的技术突破。

Multimodal neuroimaging in humans at 9.4 T: a technological breakthrough towards an advanced metabolic imaging scanner.

作者信息

Shah N Jon

机构信息

Institute of Neuroscience and Medicine-4, Research Centre Jülich, 52425, Jülich, Germany,

出版信息

Brain Struct Funct. 2015 Jul;220(4):1867-84. doi: 10.1007/s00429-014-0843-4. Epub 2014 Jul 14.

DOI:10.1007/s00429-014-0843-4
PMID:25017191
Abstract

The aim of this paper is twofold: firstly, to explore the potential of simultaneously acquiring multimodal MR-PET-EEG data in a human 9.4 T scanner to provide a platform for metabolic brain imaging. Secondly, to demonstrate that the three modalities are complementary, with MRI providing excellent structural and functional imaging, PET providing quantitative molecular imaging, and EEG providing superior temporal resolution. A 9.4 T MRI scanner equipped with a PET insert and a commercially available EEG device was used to acquire in vivo proton-based images, spectra, and sodium- and oxygen-based images with MRI, EEG signals from a human subject in a static 9.4 T magnetic field, and demonstrate hybrid MR-PET capability in a rat model. High-resolution images of the in vivo human brain with an isotropic resolution of 0.5 mm and post-mortem brain images of the cerebellum with an isotropic resolution of 320 µm are presented. A (1)H spectrum was also acquired from 2 × 2 × 2 mm voxel in the brain allowing 12 metabolites to be identified. Imaging based on sodium and oxygen is demonstrated with isotropic resolutions of 2 and 5 mm, respectively. Auditory evoked potentials measured in a static field of 9.4 T are shown. Finally, hybrid MR-PET capability at 9.4 T in the human scanner is demonstrated in a rat model. Initial progress on the road to 9.4 T multimodal MR-PET-EEG is illustrated. Ultra-high resolution structural imaging, high-resolution images of the sodium distribution and proof-of-principle (17)O data are clearly demonstrated. Further, simultaneous MR-PET data are presented without artefacts and EEG data successfully corrected for the cardioballistic artefact at 9.4 T are presented.

摘要

本文的目的有两个

首先,探索在人类9.4T扫描仪中同时获取多模态MR-PET-EEG数据的潜力,以提供一个代谢脑成像平台。其次,证明这三种模态具有互补性,MRI提供出色的结构和功能成像,PET提供定量分子成像,EEG提供卓越的时间分辨率。使用一台配备PET插入件和市售EEG设备的9.4T MRI扫描仪,在静态9.4T磁场中获取来自人类受试者的体内基于质子的图像、光谱以及基于钠和氧的图像、EEG信号,并在大鼠模型中展示混合MR-PET能力。展示了体内人类大脑的各向同性分辨率为0.5mm的高分辨率图像以及小脑的各向同性分辨率为320µm的死后脑图像。还从大脑中2×2×2mm的体素获取了(1)H光谱,可识别12种代谢物。分别以2mm和5mm的各向同性分辨率展示了基于钠和氧的成像。展示了在9.4T静态磁场中测量的听觉诱发电位。最后,在大鼠模型中展示了人类扫描仪中9.4T的混合MR-PET能力。阐述了9.4T多模态MR-PET-EEG道路上的初步进展。清晰展示了超高分辨率结构成像、钠分布的高分辨率图像以及原理验证(17)O数据。此外,展示了无伪影的同步MR-PET数据以及成功校正9.4T时心脏弹道伪影的EEG数据。

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