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在9.4T磁场下,与自旋回波血氧水平依赖性功能磁共振成像相比,采用板层反转的血管空间占据功能磁共振成像的皮质层特异性得到改善。

Improved cortical-layer specificity of vascular space occupancy fMRI with slab inversion relative to spin-echo BOLD at 9.4 T.

作者信息

Jin Tao, Kim Seong-Gi

机构信息

Department of Radiology, University of Pittsburgh, 3025 East Carson Street, University of Pittsburgh, Pittsburgh, PA 15203, USA.

出版信息

Neuroimage. 2008 Mar 1;40(1):59-67. doi: 10.1016/j.neuroimage.2007.11.045. Epub 2007 Dec 8.

Abstract

Cerebral blood volume (CBV)-weighted endogenous functional contrast can be obtained by the vascular space occupancy (VASO) technique. VASO relies on nonselective inversion for nulling blood signals, but the implementation of VASO at magnetic fields higher than 3 T is difficult due to converging T(1) values of tissue and blood water and a stronger counteracting blood oxygen level-dependent (BOLD) effect. To improve functional CBV sensitivity, we proposed to use VASO with slab-selective inversion (SI-VASO). Computer simulations showed that the SI-VASO approach significantly increases functional sensitivity compared to the original VASO in a stronger magnetic field with a shorter repetition time. To examine layer-dependent specificity, SI-VASO and spin-echo BOLD (SE-BOLD) functional magnetic resonance imaging (fMRI) experiments were performed on isoflurane-anesthetized cats during visual stimulation at 9.4 T. Unlike simultaneously acquired SE-BOLD signal, the SI-VASO signal peaked at 0.9 mm from the surface of the cortex and was localized to the middle cortical layer. The full-width at half maximal response across the cortex was narrower for SI-VASO than for SE-BOLD (1.7 mm vs. 2.5 mm, respectively), suggesting that SI-VASO is better localized to neuronally active sites than SE-BOLD fMRI. The magnitude of the SI-VASO change in the middle cortex was -1.45% with our experimental parameters, corresponding to a relative CBV change of approximately 8% when baseline CBV was assumed to be 5% in a two-compartment model. The signal response profile across the cortex, the calculated CBV change, and the time course of SI-VASO fMRI were similar to those of previously obtained CBV-weighted fMRI with contrast agent in the same animal model, suggesting that SI-VASO measures predominantly functional CBV responses.

摘要

脑血容量(CBV)加权的内源性功能对比可通过血管空间占据(VASO)技术获得。VASO依靠非选择性反转来消除血液信号,但由于组织和血液中水的T(1)值趋同以及更强的反向血氧水平依赖(BOLD)效应,在高于3 T的磁场中实施VASO较为困难。为提高功能CBV敏感性,我们提议使用具有层板选择性反转的VASO(SI-VASO)。计算机模拟表明,在具有更短重复时间的更强磁场中,与原始VASO相比,SI-VASO方法显著提高了功能敏感性。为研究层依赖性特异性,在9.4 T视觉刺激期间,对异氟烷麻醉的猫进行了SI-VASO和自旋回波BOLD(SE-BOLD)功能磁共振成像(fMRI)实验。与同时采集的SE-BOLD信号不同,SI-VASO信号在距皮质表面0.9 mm处达到峰值,并定位于皮质中层。SI-VASO在整个皮质上的半高宽比SE-BOLD窄(分别为1.7 mm和2.5 mm),这表明SI-VASO比SE-BOLD fMRI更好地定位于神经元活跃部位。在我们的实验参数下,皮质中层的SI-VASO变化幅度为-1.45%,在双室模型中,假设基线CBV为5%时,这相当于相对CBV变化约8%。整个皮质的信号响应曲线、计算出的CBV变化以及SI-VASO fMRI的时间过程与之前在同一动物模型中使用造影剂获得的CBV加权fMRI相似,这表明SI-VASO主要测量功能性CBV反应。

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