首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Recovery of signal loss due to an in-plane susceptibility gradient in the gradient echo EPI through acquisition of extended phase-encoding lines
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Recovery of signal loss due to an in-plane susceptibility gradient in the gradient echo EPI through acquisition of extended phase-encoding lines

机译:通过获取扩展的相位编码线,恢复由于梯度回波EPI中的平面内磁化率梯度导致的信号损失

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摘要

In gradient echo imaging the in-plane susceptibility gradient causes an echo shift which results in signal loss. The loss of signal becomes more severe in gradient echo EPI, due to the low amplitude of the gradient which is applied in the phase-encoding direction during a long echo train. As the readout gradient amplitude is set to be very high in gradient echo EPI, the echo shift in the readout direction is negligible compared to that in the phase-encoding direction. Traditionally, a z-shimming technique has been applied to the phase-encoding direction of gradient echo EPI to restore the lost signal. This technique, however, requires a significant increase of scan time, as is also the case with the through-plane z-shimming technique. A new approach that allows one to restore the lost signal is to acquire additional phase-encoding lines beyond the regular phase-encoding range. The extension of the phase-encoding lines prior to the regular phase-encoding range exploits the delay time for optimum echo time of the BOLD sensitivity. Therefore, scan time is increased only for the extended phase-encoding lines posterior to the regular phase-encoding range. This technique has been confirmed experimentally by imaging human subject's heads at 3T.
机译:在梯度回波成像中,平面内磁化率梯度会引起回波偏移,从而导致信号损失。由于在长回波序列期间沿相位编码方向施加的梯度的振幅较低,因此在梯度回波EPI中信号的损失变得更加严重。由于在梯度回波EPI中将读出梯度幅度设置为非常高,因此与沿相位编码方向的回波偏移相比,在读出方向上的回波偏移可以忽略。传统上,将z匀场技术应用于梯度回波EPI的相位编码方向以恢复丢失的信号。但是,与通过平面z匀场技术一样,该技术需要大量增加扫描时间。一种允许恢复丢失信号的新方法是获取超出常规相位编码范围的其他相位编码线。在常规相位编码范围之前扩展相位编码线会利用延迟时间以获得BOLD灵敏度的最佳回波时间。因此,仅对于规则相位编码范围之后的扩展相位编码线,增加了扫描时间。该技术已通过在3T处对人的头部进行成像实验得到了证实。

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