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Cardiac cycle-induced EPI time series fluctuations in the brain: Their temporal shifts inflow effects and T2∗ fluctuations

机译:心脏循环诱发的脑中EPI时间序列波动:其时间变化流入效应和T2 *波动

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摘要

The cardiac-induced arterial pressure wave causes changes in cerebral blood flow velocities and volumes that affect the signals in echo-planar imaging (EPI). Using single-echo EPI time series data, acquired fast enough to unalias the cardiac frequency, we found that the cardiac cycle-induced signal fluctuations are delayed differentially in different brain regions. When referenced to the time series in larger arterial structures, the cortical voxels are only minimally shifted but significant shifts are observed in subcortical areas. Using double-echo EPI data we mapped the voxels’ “signal at zero echo time”, S0, and apparent T2 over the cardiac cycle. S0 pulsatility was maximised for voxels with a cardiac cycle-induced timing that was close to the arterial structures and is likely explained by enhanced inflow effects in the cortical areas compared to subcortical areas. Interestingly a consistent T2 waveform over the cardiac cycle was observed in all voxels with average amplitude ranges between 0.3-0.55% in grey matter and 0.15–0.22% in white matter. The timing of the T2 waveforms suggests a partial volume fluctuation where arteriolar blood volume changes are counterbalanced by changes in CSF volumes.
机译:心脏引起的动脉压波会引起脑血流速度和体积的变化,从而影响回波平面成像(EPI)中的信号。使用单回波EPI时间序列数据,其采集速度足够快,可以使心脏频率保持一致,因此我们发现,在不同的大脑区域,心动周期引起的信号波动会有所差异。当参考较大动脉结构中的时间序列时,皮层体素仅发生了最小的移动,但在皮层下区域观察到了明显的移动。使用双回波EPI数据,我们映射了体素的“零回波时间的信号”,S0和明显的 T 2 在整个心动周期中 。对于心动周期诱导的接近动脉结构的时机,体素的S0搏动最大,这可能是由于与皮层下区域相比,皮层区域的流入效应增强所致。有趣的是,一致的 T 2 在所有体素中观察到整个心动周期的波形,灰质的平均幅度在0.3-0.55%之间,白质的平均幅度在0.15-0.22%之间。 T 2 波形表明存在局部体积波动,其中小动脉血容量变化被CSF体积变化抵消。

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