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功能磁共振成像信号的扩散调制:BOLD 信号起源的早期研究。

Diffusion modulation of the fMRI signal: early investigations on the origin of the BOLD signal.

机构信息

Brain Imaging and Analysis Center, Box 2737, Hock Plaza, Duke University Medical Center, 2424 Erwin Road, Durham, NC 27705, USA.

出版信息

Neuroimage. 2012 Aug 15;62(2):949-52. doi: 10.1016/j.neuroimage.2012.01.001. Epub 2012 Jan 8.

Abstract

The early 1990s was a very special period for functional MRI (fMRI). Many original concepts were formed during that period which helped set up the foundations for modern neuroimaging development. I was fortunate to be in graduate school at the time. I was even more fortunate to be enrolled in one of the pioneer groups in fMRI at the Medical College of Wisconsin, and witnessed some of the early fMRI experiments taking place in the lab. Under the daily influence and steady guidance by the extraordinarily talented researchers there, I also began my own work on the contrast mechanisms of fMRI. In particular, I was developing diffusion weighted strategies to investigate the origin of the functional signal using blood oxygenation level dependent (BOLD) contrast. Our results, that there was significant BOLD signal in large veins and their vicinities at low field strengths (e.g. 1.5T), played an immediate role in moving fMRI applications to higher fields (3T and above) where small vessels (e.g. capillaries) contribute more significantly to improve the neuronal specificity of the BOLD signal. This manuscript gathers some of my own recollections concerning this particular development.

摘要

20 世纪 90 年代初期是功能磁共振成像(fMRI)非常特殊的一段时期。在这一时期形成了许多原始概念,为现代神经影像学的发展奠定了基础。我很幸运当时正在读研究生。更幸运的是,我加入了威斯康星医学院的 fMRI 先驱小组之一,并在实验室见证了一些早期的 fMRI 实验。在那里才华横溢的研究人员的日常影响和稳定指导下,我也开始了自己对 fMRI 对比机制的研究。特别是,我正在开发扩散加权策略,利用血氧水平依赖(BOLD)对比来研究功能信号的起源。我们的结果表明,在低场强(例如 1.5T)下,大静脉及其附近存在显著的 BOLD 信号,这立即推动 fMRI 应用向更高的场强(3T 及以上)发展,在更高的场强下,小血管(例如毛细血管)对提高 BOLD 信号的神经元特异性的贡献更大。本文汇集了我自己对这一特定发展的一些回忆。

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