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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Impact of incidental magnetization transfer effects on inversion-recovery sequences that use a fast spin-echo readout.
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Impact of incidental magnetization transfer effects on inversion-recovery sequences that use a fast spin-echo readout.

机译:附带的磁化传递效应对使用快速自旋回波读数的反转恢复序列的影响。

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摘要

Multislice MR images obtained using a fast spin-echo (FSE) readout are strongly affected by magnetization transfer (MT) effects, which will cause a decrease in the observed longitudinal relaxation times for tissues with a large bound water component. This is pertinent for FSE-based inversion-recovery (IR) sequences, as it would be expected to cause a change in the required inversion times. Furthermore, the effect will be greater as the number of slices that are acquired within the repetition time (TR) is increased. A pseudo-3D IR-FSE sequence was used to obtain images of a phantom consisting of thermally crosslinked bovine serum albumin. It was found that increasing the number of slabs acquired per TR period led to a decrease in the inversion time that maximally suppressed the signal from the MT phantom; this was not the case for water. This has important consequences for any IR imaging sequence that uses an FSE readout.
机译:使用快速自旋回波(FSE)读数获得的多层MR图像受磁化传递(MT)效应的强烈影响,这将导致观察到的具有较大束缚水成分的组织的纵向弛豫时间减少。这与基于FSE的反转恢复(IR)序列有关,因为可以预期会导致所需的反转时间发生变化。此外,随着在重复时间(TR)内获取的切片数量的增加,效果将更大。伪3D IR-FSE序列用于获得由热交联的牛血清白蛋白组成的体模的图像。结果发现,增加每个TR周期采集的平板数量会导致反转时间的减少,从而最大程度地抑制了MT幻像的信号;水不是这种情况。这对于使用FSE读数的任何IR成像序列都会产生重要的后果。

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