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Volumetric navigated MEGA-SPECIAL for real-time motion and shim corrected GABA editing

机译:体积导航的MEGA-SPECIAL,用于实时运动和匀场校正的GABA编辑

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摘要

Mescher-Garwood (MEGA) editing with spin echo full intensity acquired localization (MEGA-SPECIAL, MSpc) is a technique to acquire -aminobutyric acid (GABA) without macromolecule (MM) contamination at a T-E of 68 ms. However, due to the requirement of multiple shot-localization, it is often susceptible to subject motion and B-0 inhomogeneity. A method is presented for real-time shim and motion correction (ShMoCo) using volumetric navigators to correct for motion and motion-related B-0 inhomogeneity during MSpc acquisition. A phantom experiment demonstrates that ShMoCo restores the GABA peak and improves spectral quality in the presence of motion and zero- and first-order shim changes. The ShMoCo scans were validated in three subjects who performed up-down and left-right head rotations. Qualitative assessment of these scans indicates effective reduction of subtraction artefacts and well edited GABA peaks, while quantitative analysis indicates superior fitting and spectral quality relative to scans with no correction. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:具有自旋回波全强度采集定位(MEGA-SPECIAL,MSpc)的Mescher-Garwood(MEGA)编辑技术是一种在68 ms的T-E时不受到大分子(MM)污染的情况下获取-氨基丁酸(GABA)的技术。但是,由于需要多次镜头定位,因此通常容易受到对象运动和B-0不均匀性的影响。提出了一种使用体积导航器进行实时匀场和运动校正(ShMoCo)的方法,以在MSpc采集过程中校正运动和与运动相关的B-0不均匀性。幻像实验表明,在运动以及零阶和一阶匀场变化的存在下,ShMoCo可以还原GABA峰并改善光谱质量。 ShMoCo扫描在三名受试者中进行了验证,他们分别进行了上下和左右旋转。对这些扫描的定性评估表明,有效减少了减影伪像和编辑良好的GABA峰,而定量分析表明,与未经校正的扫描相比,其拟合度和光谱质量更高。版权所有(c)2015 John Wiley&Sons,Ltd.

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