首页> 外文会议>Proceedings of the 2010 Biomedical Sciences and Engineering Conference >8.5: Presentation session: BRAiN measurements and imaging technologies: “Data-driven evaluation and optimization of acquisition strategies for ultra-high-field functional MRI at 7 Tesla”
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8.5: Presentation session: BRAiN measurements and imaging technologies: “Data-driven evaluation and optimization of acquisition strategies for ultra-high-field functional MRI at 7 Tesla”

机译:8.5:演示会议:BRAiN测量和成像技术:“数据驱动的评估和7特斯拉超高场功能MRI的采集策略优化”

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Blood oxygenation level dependent (BOLD) functional magnetic resonance imaging (fMRI) is commonly performed using 2D single-shot echo-planar imaging (EPI). However, challenges with EPI at 7 Tesla (T) include significant geometric distortions (due to low bandwidth (BW) in the phase-encode (PE) direction) and amplification of physiological noise. Recent studies have suggested that 3D multi-shot sequences such as PRESTO may offer comparable BOLD contrast-to-noise ratio with increased volume coverage and decreased geometric distortions. A four-way comparison was performed at 7T between 2D and 3D acquisition sequences at two in-plane resolutions. The quality of fMRI data was evaluated via independent metrics of prediction and reproducibility using NPAIRS (Non-parametric Prediction, Activation, Influence and Reproducibility re-Sampling). Activation maps were optimized for each acquisition strategy by selecting the number of principal components that jointly maximized prediction and reproducibility, and showed good agreement in sensitivity and specificity for positive BOLD changes. High-resolution EPI exhibited the highest z-scores of the four acquisition sequences; however, it suffered from the lowest BW in the PE direction (resulting in the worst geometric distortions) and limited spatial coverage, and also caused subject discomfort through peripheral nerve stimulation (PNS). In comparison, PRESTO had the second highest z-scores (higher than EPI for a matched in-plane resolution), the highest BW in the PE direction (producing images with superior geometric stability), the potential for whole-brain coverage, and no reported PNS. This study provides evidence to support the consideration of using multi-shot acquisition sequences in lieu of single-shot EPI for ultra-high-field BOLD fMRI at 7T and above.
机译:血液氧合水平依赖性(BOLD)功能磁共振成像(fMRI)通常使用2D单次回波平面成像(EPI)进行。但是,EPI在7 Tesla(T)时面临的挑战包括明显的几何失真(由于相位编码(PE)方向上的低带宽(BW))和生理噪声的放大。最近的研究表明,诸如PRESTO之类的3D连拍序列可以提供可比的BOLD对比度-噪声比,并具有增加的体积覆盖率和减少的几何失真。在7T下,以两个面内分辨率在2D和3D采集序列之间进行了四次比较。使用NPAIRS(非参数预测,激活,影响和可重复性重新采样)通过独立的预测和可重复性指标来评估fMRI数据的质量。通过选择共同最大化预测和可重复性的主要成分的数量,针对每种获取策略优化了激活图,并在积极的BOLD变化的敏感性和特异性方面显示出良好的一致性。高分辨率EPI表现出四个采集序列中最高的z得分;但是,它在PE方向上的BW最低(导致最严重的几何变形)且空间覆盖范围有限,并且还通过周围神经刺激(PNS)引起受试者不适。相比之下,PRESTO的z得分第二高(在匹配的平面分辨率下高于EPI),在PE方向上的最高BW(产生具有出色几何稳定性的图像),全脑覆盖的潜力,并且没有报告的PNS。这项研究提供了证据支持在7T及更高温度下使用多发采集序列代替单发EPI进行超高视场BOLD fMRI的考虑。

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