Lavdas Ioannis, Miquel Marc E, McRobbie Donald W, Aboagye Eric O
Comprehensive Cancer Imaging Centre (C.C.I.C.), Department of Surgery and Cancer, Hammersmith Campus, Imperial College, London, United Kingdom.
J Magn Reson Imaging. 2014 Sep;40(3):682-90. doi: 10.1002/jmri.24397. Epub 2013 Oct 31.
To compare DW-MRI between 1.5 and 3 Tesla (T) in terms of image quality, apparent diffusion coefficient (ADC), reproducibility, lesion-to-background contrast and signal-to-noise ratio (SNR), using a test object.
A spherical diffusion phantom was used for qualitatively assessing image quality and performing quantitative measurements between the two field strengths.
Distortions and signal losses degraded image quality at 3T even when the protocols were optimized for minimum TE. The ADC, in the majority of the phantom compartments, was significantly different between 1.5T and 3T (P < 0.009), while the average coefficient of variation, excluding the phantom compartments affected by artifacts, was <1.3% at both field strengths. The lesion-to-background contrast was improved at 1.5T for images acquired with b = 1000 s/mm(2) and comparable contrast was achieved at 3T with higher b-values. The SNR gain at 3T could, in theory, be balanced by the increased number of signal excitations one can accommodate at 1.5T to perform DW-MRI within the same acquisition time and possibly improved image quality, when 3T systems with no parallel transmission are used.
Further phantom and in vivo studies are required to investigate the utility of DW-MRI at 3T, if image quality and acquisition times comparable to the ones from 1.5T are assumed.
使用一个测试物体,比较1.5特斯拉(T)和3特斯拉(T)的扩散加权磁共振成像(DW-MRI)在图像质量、表观扩散系数(ADC)、可重复性、病变与背景对比度以及信噪比(SNR)方面的差异。
使用一个球形扩散模型对两种场强下的图像质量进行定性评估并进行定量测量。
即使对协议进行了优化以实现最短回波时间(TE),3T时的图像失真和信号损失仍会降低图像质量。在大多数模型隔室中,1.5T和3T之间的ADC存在显著差异(P < 0.009),而在两种场强下,排除受伪影影响的模型隔室后,平均变异系数均<1.3%。对于b = 1000 s/mm²采集的图像,1.5T时病变与背景的对比度有所改善,而在3T时,使用更高的b值可获得相当的对比度。理论上,当使用无并行传输的3T系统时,3T时的SNR增益可以通过增加1.5T时可容纳的信号激发次数来平衡,以便在相同采集时间内进行DW-MRI并可能提高图像质量。
如果假设图像质量和采集时间与1.5T相当,则需要进一步进行模型和体内研究,以探讨3T时DW-MRI的实用性。