首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Functional magnetic resonance imaging of the human brain based on signal enhancement by extravascular protons (SEEP fMRI).
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Functional magnetic resonance imaging of the human brain based on signal enhancement by extravascular protons (SEEP fMRI).

机译:基于血管外质子信号增强(SEEP fMRI)的人脑功能磁共振成像。

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Functional magnetic resonance imaging (fMRI) studies of the human brain were carried out at 3 Tesla to investigate an fMRI contrast mechanism that does not arise from the blood oxygen-level dependent (BOLD) effect. This contrast mechanism, signal enhancement by extravascular protons (SEEP), involves only proton-density changes and was recently demonstrated to contribute to fMRI signal changes in the spinal cord. In the present study it is hypothesized that SEEP fMRI can be used to identify areas of neuronal activity in the brain with as much sensitivity and precision as can be achieved with BOLD fMRI. A detailed analysis of the areas of activity, signal intensity time courses, and the contrast-to-noise ratio (CNR), is also presented and compared with the BOLD fMRI results. Experiments were carried out with subjects performing a simple finger-touching task, or observing an alternating checkerboard pattern. Data were acquired using a conventional BOLD fMRI method (gradient-echo (GE) EPI, TE = 30 ms), a conventional method with reduced BOLD sensitivity (GE-EPI, TE = 12 ms), and SEEP fMRI (spin-echo (SE) EPI, TE = 22 ms). The results of this study demonstrate that SEEP fMRI may provide better spatial localization of areas of neuronal activity, and a higher CNR than conventional BOLD fMRI, and has the added benefit of lower sensitivity to field inhomogeneities.
机译:在3特斯拉进行了人脑的功能磁共振成像(fMRI)研究,以研究fMRI对比机制,该机制不是由血氧水平依赖性(BOLD)效应引起的。这种对比机制是通过血管外质子(SEEP)增强信号,仅涉及质子密度变化,最近被证明有助于脊髓中fMRI信号变化。在本研究中,假设SEEP fMRI可用于识别大脑中神经元活动的区域,其灵敏度和精确度与BOLD fMRI可以达到的灵敏度和精确度相同。还提供了对活动区域,信号强度时程和对比噪声比(CNR)的详细分析,并将其与BOLD fMRI结果进行了比较。实验是对受试者执行简单的手指触摸任务或观察交替的棋盘图案进行的。使用常规BOLD fMRI方法(梯度回波(GE)EPI,TE = 30毫秒),降低BOLD灵敏度的常规方法(GE-EPI,TE = 12毫秒)和SEEP fMRI(自旋回波( SE)EPI,TE = 22 ms)。这项研究的结果表明,SEEP fMRI可以提供比传统BOLD fMRI更好的神经元活动区域空间定位,并具有更高的CNR,并具有降低对场不均匀性的敏感性。

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