Omary R A, Unal O, Koscielski D S, Frayne R, Korosec F R, Mistretta C A, Strother C M, Grist T M
Department of Radiology, University of Wisconsin-Madison Medical School, USA.
J Vasc Interv Radiol. 2000 Sep;11(8):1079-85. doi: 10.1016/s1051-0443(07)61343-8.
To test the hypothesis that real-time magnetic resonance (MR) imaging-guided passive catheter tracking is feasible with use of dilute gadolinium (Gd)-filled catheters, to determine the optimal Gd concentration required for tracking, and to measure catheter tip tracking accuracy.
The authors tested a real-time, T1-weighted, two-dimensional, spoiled gradient-recalled echo MR imaging sequence suitable for tracking catheters. In a yogurt phantom, the authors placed 5-F catheters filled with 2%-12% Gd solutions. MR imaging was performed with and without use of a projection dephaser that suppressed background signal. The authors measured signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR), and enhancement ratio to determine the optimal Gd concentration for catheter depiction. Catheter tip tracking accuracy was measured in an acrylic phantom with use of linear regression analysis, with goodness of fit assessed statistically with the F test.
Peak catheter SNR, CNR, and enhancement ratios were obtained with 4%-6% Gd concentrations. Tip tracking accuracy was determined to be +/- 0.41 mm (R2 = 0.99; P < .0001). MR imaging reconstructions were displayed up to 3.1 frames/sec.
Accurate MR imaging-guided passive catheter tracking was feasible in real-time with use of dilute Gd-filled catheters. This technique may have application in MR imaging-guided endovascular procedures.
验证使用稀释钆(Gd)填充导管进行实时磁共振(MR)成像引导下的被动导管追踪是否可行,确定追踪所需的最佳Gd浓度,并测量导管尖端追踪精度。
作者测试了一种适用于导管追踪的实时、T1加权、二维、扰相梯度回波MR成像序列。在一个酸奶模拟体模中,作者放置了填充有2%-12% Gd溶液的5F导管。在使用和不使用抑制背景信号的投影去相位器的情况下进行MR成像。作者测量了信噪比(SNR)、对比噪声比(CNR)和增强比,以确定用于导管描绘的最佳Gd浓度。在一个丙烯酸模拟体模中,使用线性回归分析测量导管尖端追踪精度,并用F检验对拟合优度进行统计学评估。
Gd浓度为4%-6%时,导管的SNR、CNR和增强比达到峰值。确定尖端追踪精度为±0.41 mm(R2 = 0.99;P <.0001)。MR成像重建的显示速度可达3.1帧/秒。
使用稀释Gd填充导管进行准确的MR成像引导下的被动导管追踪在实时情况下是可行的。该技术可能在MR成像引导的血管内手术中具有应用价值。