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Increased fMRI Sensitivity at Equal Data Burden Using Averaged Shifted Echo Acquisition

机译:使用平均移位回波采集在相等数据负载下提高了fMRI的灵敏度

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摘要

There is growing evidence as to the benefits of collecting BOLD fMRI data with increased sampling rates. However, many of the newly developed acquisition techniques developed to collect BOLD data with ultra-short TRs require hardware, software, and non-standard analytic pipelines that may not be accessible to all researchers. We propose to incorporate the method of shifted echo into a standard multi-slice, gradient echo EPI sequence to achieve a higher sampling rate with a TR of <1 s with acceptable spatial resolution. We further propose to incorporate temporal averaging of consecutively acquired EPI volumes to both ameliorate the reduced temporal signal-to-noise inherent in ultra-fast EPI sequences and reduce the data burden. BOLD data were collected from 11 healthy subjects performing a simple, event-related visual-motor task with four different EPI sequences: (1) reference EPI sequence with TR = 1440 ms, (2) shifted echo EPI sequence with TR = 700 ms, (3) shifted echo EPI sequence with every two consecutively acquired EPI volumes averaged and effective TR = 1400 ms, and (4) shifted echo EPI sequence with every four consecutively acquired EPI volumes averaged and effective TR = 2800 ms. Both the temporally averaged sequences exhibited increased temporal signal-to-noise over the shifted echo EPI sequence. The shifted echo sequence with every two EPI volumes averaged also had significantly increased BOLD signal change compared with the other three sequences, while the shifted echo sequence with every four EPI volumes averaged had significantly decreased BOLD signal change compared with the other three sequences. The results indicated that incorporating the method of shifted echo into a standard multi-slice EPI sequence is a viable method for achieving increased sampling rate for collecting event-related BOLD data. Further, consecutively averaging every two consecutively acquired EPI volumes significantly increased the measured BOLD signal change and the subsequently calculated activation map statistics.
机译:越来越多的证据表明,随着采样率的提高,收集BOLD fMRI数据的好处。但是,许多新开发的采集技术(使用超短TR收集BOLD数据)需要硬件,软件和非标准分析管道,可能并非所有研究人员都可以使用。我们建议将移位回波的方法合并到标准的多层梯度回波EPI序列中,以实现TR小于1 s且具有可接受的空间分辨率的更高采样率。我们进一步建议合并连续采集的EPI量的时间平均,以改善超快EPI序列固有的降低的时间信噪比并减少数据负担。 BOLD数据来自11位健康受试者,他们通过简单的事件相关的视觉运动任务使用四种不同的EPI序列进行采集:(1)TR = 1440 ms的参考EPI序列;(2)TR = 700 ms的移位回波EPI序列; (3)偏移回波EPI序列,每两个连续获取的EPI体积平均,有效TR = 1400 ms,(4)偏移回波EPI序列,每四个连续获取的EPI体积平均,有效TR = 2800 ms。在移位回波EPI序列上,这两个时间平均序列都显示出增加的时间信噪比。与其他三个序列相比,每两个EPI体积平均的偏移回波序列也显着增加了BOLD信号变化,而与其他三个序列相比,每四个EPI体积平均的偏移回波序列也显着减小了BOLD信号变化。结果表明,将移位回波的方法合并到标准的多层EPI序列中是一种可行的方法,可以提高采样率以收集事件相关的BOLD数据。此外,每两个连续获取的EPI体积的连续平均显着增加了测得的BOLD信号变化和随后计算的激活图统计量。

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