Mizutani Koji, Sumida Tomotaka, Matsuda Morikatsu, Ishikawa Akihiro
Department of Radiology, Kainan Hospital, Aichi Prefectural Welfare Federation of Agricultural Cooperatives.
Nihon Hoshasen Gijutsu Gakkai Zasshi. 2004 Sep;60(9):1316-24. doi: 10.6009/jjrt.kj00003174599.
The aim of the present study was to evaluate the new tailored contrast truck-fluid-attenuated driven inversion-recovery (TACT-FLADIR) sequence. Technically, this sequence uses a nonselectively driven inversion (DI) pulse as the inversion pulse. The DI pulse has two parameters, number of refocus pulses (NR) and preparation time (TP). Using normal volunteers, we optimized NR and TP to measure signal-to-noise ratios (SNR) and contrast-to-noise ratios (CNR) of gray matter (GM) and white matter (WM), and to obtain CSF inflow artifacts. TACT-FLADIR was compared with conventional FLAIR using volunteers and patients. Among the optimized parameters, SNR and CNR were dependent on TP, and inflow artifacts were reduced by increasing NR. In brain imaging, TACT-FLADIR provided improvement in both SNR and CNR compared with conventional imaging with suppressed CSF signal and saturated flow artifacts.
本研究的目的是评估新的定制对比剂卡车流体衰减驱动反转恢复(TACT-FLADIR)序列。从技术上讲,该序列使用非选择性驱动反转(DI)脉冲作为反转脉冲。DI脉冲有两个参数,即重聚焦脉冲数(NR)和准备时间(TP)。我们使用正常志愿者优化NR和TP,以测量灰质(GM)和白质(WM)的信噪比(SNR)和对比噪声比(CNR),并获得脑脊液流入伪影。使用志愿者和患者将TACT-FLADIR与传统FLAIR进行比较。在优化参数中,SNR和CNR取决于TP,并且通过增加NR减少了流入伪影。在脑成像中,与具有抑制脑脊液信号和饱和流动伪影的传统成像相比,TACT-FLADIR在SNR和CNR方面均有改善。