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Sensitivity-encoded single-shot spiral imaging for reduced susceptibility artifacts in BOLD fMRI.

机译:灵敏度编码的单次螺旋成像可减少BOLD fMRI中的敏感性伪影。

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摘要

Sensitivity encoding (SENSE) with iterative image reconstruction was used to shorten the readout duration in single-shot spiral imaging by a factor of 2. This enabled susceptibility-related blurring and signal loss artifacts to be reduced and spatial resolution to be improved. As a beneficial side effect, the gradient duty cycle was also reduced. The spiral SENSE technique was applied to functional MRI (fMRI) with blood oxygen level-dependent (BOLD) contrast and compared to a conventional spiral acquisition. Stimulation experiments were performed in seven volunteers using motor, visual, and taste paradigms. The signal-to-noise ratio (SNR) and signal-to-fluctuation-noise ratio (SFNR) of the SENSE acquisitions were reduced by 20% and 13%, respectively, with respect to the longer readout. The overall activation detected was comparable to that of the conventional spiral acquisition, even though difficulties in reproducing the stimulation response hampered the evaluation. In some cases, the application of SENSE enabled recovery of activation in regions affected by signal loss due to field inhomogeneity.
机译:使用具有迭代图像重建功能的敏感度编码(SENSE)将单次螺旋成像中的读出持续时间缩短了2倍。这可以减少与磁化率相关的模糊和信号丢失伪像,并提高空间分辨率。作为有益的副作用,梯度占空比也降低了。螺旋SENSE技术应用于具有血氧水平依赖性(BOLD)对比的功能性MRI(fMRI),并与常规螺旋采集进行了比较。使用运动,视觉和味觉范例在七名志愿者中进行了刺激实验。相对于较长的读取时间,SENSE采集的信噪比(SNR)和信噪比(SFNR)分别降低了20%和13%。尽管再现刺激响应的困难阻碍了评估,但检测到的总体激活与传统的螺旋采集相当。在某些情况下,SENSE的应用可以恢复受电场不均匀性影响的信号丢失影响的区域中的激活。

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