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Functional mapping in the human brain using high magnetic fields

机译:使用强磁场在人脑中进行功能映射

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摘要

An avidly pursued new dimension in magnetic resonance imaging (MRI) research is the acquisition of physiological and biochemical information non-invasively using the nuclear spins of the water molecules in the human body. In this trial, a recent and unique accomplishment was the introduction of the ability to map human brain function non-invasively. Today, functional images with subcentimetre resolution of the entire human brain can be generated in single subjects and in data acquisition times of several minutes using 1.5 tesla (T) MRI scanners that are often used in hospitals for clinical purposes. However, there have been accomplishments beyond this type of imaging using significantly higher magnetic fields such as 4 T. Efforts for developing high magnetic field human brain imaging and functional mapping using MRI (fMRI) were undertaken at about the same time. It has been demonstrated that high magnetic fields result in improved contrast and, more importantly, in elevated sensitivity to capillary level changes coupled to neuronal activity in the blood oxygenation level dependent (BOLD) contrast mechanism used in fMRI. These advantages have been used to generate, for example, high resolution functional maps of ocular dominance columns, retinotopy within the small lateral geniculate nucleus, true single-trial fMRI and early negative signal changes in the temporal evolution of the BOLD signal. So far these have not been duplicated or have been observed as significantly weaker effects at much lower field strengths. Some of these high-field advantages and accomplishments are reviewed in this paper.
机译:磁共振成像(MRI)研究中一直追求的新领域是利用人体中水分子的核自旋无创地获取生理和生化信息。在该试验中,最近的一项独特成就是引入了无创地绘制人脑功能的功能。如今,使用1.5特斯拉(T)MRI扫描仪(通常在医院中用于临床目的)可以在单个对象中以及几分钟的数据采集时间内生成具有全人类大脑以下分辨率的功能图像。但是,使用显着更高的磁场(例如4 T)在这种类型的成像方面已经取得了成就。大约在同一时间进行了开发高磁场的人脑成像和使用MRI(fMRI)进行功能映射的工作。业已证明,高磁场可改善对比度,更重要的是,可提高对fMRI中所使用的血液氧合水平依赖性(BOLD)对比机制中与神经元活动相关的毛细血管水平变化的敏感性。这些优势已用于生成例如眼优势柱的高分辨率功能图,小侧膝状核内的视网膜检影,真正的单次试验fMRI和BOLD信号在时间演变中的早期负信号变化。到目前为止,这些还没有被复制,或者在低得多的场强下观察到效果明显减弱。本文综述了其中一些高场优势和成就。

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