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Ultrafast bold fMRI using single-shot spin-echo echo planar imaging

机译:使用单次自旋回波回波平面成像的超快大胆功能磁共振成像

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摘要

The choice of imaging parameters for functional MRI can have an impact on the accuracy of functional localization by affecting the image quality and the degree of blood oxygenation-dependent (BOLD) contrast achieved. By improving sampling efficiency, parallel acquisition techniques such as sensitivity encoding (SENSE) have been used to shorten readout trains in single-shot (SS) echo planar imaging (EPI). This has been applied to susceptibility artifact reduction and improving spatial resolution. SENSE together with single-shot spin-echo (SS-SE) imaging may also reduce off-resonance artifacts. The goal of this work was to investigate the BOLD response of a SENSE-adapted SE-EPI on a three Tesla scanner. Whole-brain fMRI studies of seven healthy right hand-dominant volunteers were carried out in a three Tesla scanner. fMRI was performed using an SS-SE EPI sequence with SENSE. The data was processed using statistical parametric mapping. Both, group and individual subject data analyses were performed. Individual average percentage and maximal percentage signal changes attributed to the BOLD effect in M1 were calculated for all the subjects as a function of echo time. Corresponding activation maps and the sizes of the activated clusters were also calculated. Our results show that susceptibility artifacts were reduced with the use of SENSE; and the acquired BOLD images were free of the typical quadrature artifacts of SS-EPI. Such measures are crucial at high field strengths. SS SE-EPI with SENSE offers further benefits in this regard and is more specific for oxygenation changes in the microvasculature bed. Functional brain activity can be investigated with the help of single-shot spin echo EPI using SENSE at high magnetic fields.
机译:功能性MRI的成像参数的选择可能会影响图像质量和所获得的血氧依赖性(BOLD)对比程度,从而影响功能定位的准确性。通过提高采样效率,已使用诸如灵敏度编码(SENSE)的并行采集技术来缩短单发(SS)回波平面成像(EPI)中的读出序列。这已应用于减少磁化伪影和提高空间分辨率。 SENSE与单次自旋回波(SS-SE)成像一起还可以减少失谐伪像。这项工作的目的是研究在三台Tesla扫描仪上采用SENSE的SE-EPI的大胆响应。在三台Tesla扫描仪中对七名健康的右手优势志愿者进行了全脑fMRI研究。使用带有SENSE的SS-SE EPI序列进行功能核磁共振检查。使用统计参数映射处理数据。进行了小组和个人受试者数据分析。计算所有受试者的M1中BOLD效应引起的信号平均平均百分比变化和最大百分比变化,作为回波时间的函数。还计算了相应的激活图和激活簇的大小。我们的结果表明,使用SENSE可以减少磁化伪影。采集的BOLD图像没有SS-EPI的典型正交伪像。这些措施对于高场强至关重要。带有SENSE的SS SE-EPI在这方面提供了更多好处,并且更适合微脉管床中的氧合变化。可以在强磁场下使用SENSE借助单次自旋回波EPI来研究功能性大脑活动。

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