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Intrinsic signal changes accompanying sensory stimulation: functional brain mapping with magnetic resonance imaging.

机译:伴随感觉刺激的内在信号变化:具有磁共振成像功能的脑图。

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摘要

We report that visual stimulation produces an easily detectable (5-20%) transient increase in the intensity of water proton magnetic resonance signals in human primary visual cortex in gradient echo images at 4-T magnetic-field strength. The observed changes predominantly occur in areas containing gray matter and can be used to produce high-spatial-resolution functional brain maps in humans. Reducing the image-acquisition echo time from 40 msec to 8 msec reduces the amplitude of the fractional signal change, suggesting that it is produced by a change in apparent transverse relaxation time T*2. The amplitude, sign, and echo-time dependence of these intrinsic signal changes are consistent with the idea that neural activation increases regional cerebral blood flow and concomitantly increases venous-blood oxygenation.
机译:我们报告说,视觉刺激会在4T磁场强度下的梯度回波图像中的人类初级视觉皮层中水质子磁共振信号的强度产生易于检测的(5-20​​%)瞬时增加。观察到的变化主要发生在含有灰质的区域,可用于生成人类的高空间分辨率功能性脑图。将图像采集回波时间从40毫秒减少到8毫秒可减小分数信号变化的幅度,这表明它是由视在横向弛豫时间T * 2的变化产生的。这些内在信号变化的幅度,符号和回波时间依赖性与神经激活增加局部脑血流量并同时增加静脉血氧合的想法是一致的。

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