Thiel Thorsten, Czisch Michael, Elbel Gregor K, Hennig Juergen
Section of Medical Physics, Department of Diagnostic Radiology, University Hospital, Freiburg, Germany.
Magn Reson Med. 2002 Jun;47(6):1077-82. doi: 10.1002/mrm.10174.
The quality of spectra in (1)H magnetic resonance spectroscopy (MRS) is strongly affected by temporal signal instabilities during the acquisition. One reason for these instabilities are hardware imperfections, e.g., drifts of the main magnetic field in superconducting magnets. This is of special concern in high-field systems where the specification of the field stability is close to the spectral linewidth. A second major potential source of artifacts, particularly in clinical MRS, is patient motion. Using standard acquisition schemes of phase-cycled averaging of the individual acquisitions, long-term effects (field drifts) as well as changes on a shorter time scale (motion) can severely reduce spectral quality. The new technique for volume-selective MRS presented here is based on the additional interleaved acquisition of a navigator signal during the recovery time of the metabolite acquisition. It corrects for temporal signal instabilities by means of a deconvolution of the metabolite and the navigator signal. This leads to phase-corrected individual metabolite scans and upon summation to a phase-coherent averaging scheme. The interleaved navigator acquisition does not require any user interaction or supervision, while sequence efficiency is maintained.
氢磁共振波谱(MRS)中的谱质量在采集过程中会受到时间信号不稳定性的强烈影响。这些不稳定性的一个原因是硬件缺陷,例如超导磁体中主磁场的漂移。在高场系统中,这一点尤为值得关注,因为场稳定性的规格接近谱线宽度。另一个主要的伪影潜在来源,特别是在临床MRS中,是患者运动。使用单个采集的相位循环平均的标准采集方案,长期影响(场漂移)以及较短时间尺度上的变化(运动)会严重降低谱质量。这里介绍的用于容积选择性MRS的新技术基于在代谢物采集的恢复时间内额外交错采集导航信号。它通过对代谢物和导航信号进行去卷积来校正时间信号不稳定性。这导致相位校正的单个代谢物扫描,并在求和后形成相位相干平均方案。交错的导航采集不需要任何用户交互或监督,同时保持序列效率。