Starck G, Lundin R, Forssell-Aronsson E, Arvidsson M, Alpsten M, Ekholm S
Department of Radiation Physics, Sahlgren's Hospital, University of Gothenburg, Sweden.
Acta Radiol. 1995 May;36(3):317-22. doi: 10.1177/028418519503600321.
In vivo MR spectroscopy (MRS) requires some kind of volume selection method to be able to measure the signal from a selected part of the body. To be able to interpret the spectra correctly, the quality of the volume selection must be investigated for each new MRS application using phantom measurements. A new phantom, especially suitable for precision measurements of the volume selection performance, is presented. It contains a small, remotely controlled signal source placed inside a larger vessel. This principle can be applied to various body regions, coil types and nuclei. The measurement conditions are close to the clinical situation. The phantom does not have to be repositioned during a signal profile measurement and the signal contribution from each point along the profile is determined regarding sign and amplitude.
体内磁共振波谱(MRS)需要某种体积选择方法,以便能够测量来自身体选定部位的信号。为了能够正确解释波谱,对于每个新的MRS应用,必须使用体模测量来研究体积选择的质量。本文介绍了一种特别适用于精确测量体积选择性能的新型体模。它包含一个放置在较大容器内的小型遥控信号源。该原理可应用于各种身体区域、线圈类型和原子核。测量条件接近临床情况。在信号轮廓测量过程中,体模无需重新定位,并且沿轮廓的每个点的信号贡献在正负号和幅度方面都能被确定。