Ljungberg M, Starck G, Vikhoff-Baaz B, Forssell-Aronsson E, Alpsten M, Ekholm S
Department of Radiation Physics, Göteborg University, Sahlgrenska University Hospital, Sweden.
Magn Reson Imaging. 1998 Sep;16(7):829-37. doi: 10.1016/s0730-725x(98)00007-1.
The volume-selection performance was studied for single- and double-volume-of-interest (VOI) acquisition with the volume-selection method image-selected in vivo spectroscopy for 31P magnetic resonance spectroscopy. High-resolution signal profiles were measured using a phantom simulating a brain. Inside the phantom there was a small, remotely controlled, movable signal source filled with ortho-phosphoric acid. Signal profiles of the VOI were measured in three perpendicular directions for 1VOI (single VOI) and 2VOI (double VOI) acquisition. The measured signal profiles for both acquisitions were very similar, but they showed a discrepancy with regard to the intended VOI (iVOI). The transition regions were on average 3.8 mm and the average full width at half maximum of the signal profile was 30 mm for an iVOI size of 303030 (mm3). No displacement was observed in the signal profiles. To avoid overlapping signal profiles, the minimum separation between two iVOIs was found to be 10 mm in our magnetic resonance (MR) system. A substantial negative signal contribution from regions outside the iVOI was measured in the y-direction for 1VOI acquisition and one of the two VOIs in 2VOI acquisition. The other VOI in 2VOI acquisition exhibited only minor contamination. The measurements presented underline the importance of detailed knowledge on the volume selection performance in in vivo magnetic resonance spectroscopy.
采用体内磁共振波谱成像选择法对单体积感兴趣区(VOI)和双体积感兴趣区采集的体素选择性能进行了研究,用于31P磁共振波谱分析。使用模拟大脑的体模测量高分辨率信号轮廓。在体模内部有一个小型的、遥控的、可移动的信号源,里面装满了正磷酸。在三个垂直方向上测量了1VOI(单VOI)和2VOI(双VOI)采集的VOI信号轮廓。两种采集方式测量得到的信号轮廓非常相似,但与预期的VOI(iVOI)存在差异。对于尺寸为30×30×30(mm3)的iVOI,过渡区域平均为3.8mm,信号轮廓的半高宽平均为30mm。在信号轮廓中未观察到位移。为避免信号轮廓重叠,在我们的磁共振(MR)系统中,发现两个iVOI之间的最小间距为10mm。在1VOI采集中,在y方向上测量到来自iVOI外部区域的显著负信号贡献,在2VOI采集中,两个VOI之一也有这种情况。2VOI采集中的另一个VOI仅表现出轻微污染。所呈现的测量结果强调了在体内磁共振波谱分析中详细了解体素选择性能的重要性。