首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Single-shot dual-z-shimmed sensitivity-encoded spiral-in/out imaging for functional MRI with reduced susceptibility artifacts.
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Single-shot dual-z-shimmed sensitivity-encoded spiral-in/out imaging for functional MRI with reduced susceptibility artifacts.

机译:用于功能性MRI的单发双z匀场灵敏度编码的旋入/旋出成像,减少了易受伪影的影响。

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摘要

Blood oxygenation level-dependent (BOLD) functional MRI (fMRI) can be severely hampered by signal loss due to susceptibility-induced static magnetic field (B(0)) inhomogeneities near air/tissue interfaces. A single-shot spiral-in/out sequence with a z-shim gradient embedded between the two acquisitions was previously proposed to efficiently recover the signal. However, despite promising results, this technique had several limitations, which are addressed here as follows. First, by adding a second z-shim gradient before the spiral-in acquisition and optimizing both z-shim gradients slice-by-slice, a significantly more uniform signal recovery can be achieved. Second, by acquiring a B(0) map, the optimal z-shim gradients can be directly, efficiently, and accurately determined for each subject. Third, by complementing the z-shimming approach with sensitivity encoding (SENSE), the in-plane spatial resolution can be increased and, hence, susceptibility artifacts further reduced, while maintaining a high temporal resolution for fMRI applications. These advantages are demonstrated in human functional studies.
机译:血液氧合水平依赖性(BOLD)功能MRI(fMRI)可能会由于空气/组织界面附近易感性感应的静磁场(B(0))不均匀性而受到信号损失的严重阻碍。先前提出了在两次采集之间嵌入z匀场梯度的单脉冲螺旋进/出序列,以有效地恢复信号。但是,尽管取得了令人鼓舞的结果,但该技术仍存在一些局限性,在此将介绍如下。首先,通过在螺旋输入之前添加第二个z匀场梯度并逐层优化两个z匀场梯度,可以实现明显更均匀的信号恢复。其次,通过获取B(0)映射,可以直接,有效和准确地确定每个对象的最佳z匀场梯度。第三,通过使用灵敏度编码(SENSE)补充z匀场方法,可以提高平面内空间分辨率,因此,在保持fMRI应用的高时间分辨率的同时,可以进一步降低磁化伪影。这些优点在人体功能研究中得到了证明。

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