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用于体积选择核磁共振波谱的ISIS技术的实验表征

Experimental characterization of the ISIS technique for volume selected NMR spectroscopy.

作者信息

Keevil S F, Porter D A, Smith M A

机构信息

Division of Radiological Sciences, United Medical School, Guy's Hospital, London, UK.

出版信息

NMR Biomed. 1992 Jul-Aug;5(4):200-8. doi: 10.1002/nbm.1940050407.

Abstract

As clinical applications of MRS grow in number and complexity, there is a need for standardized methods for characterizing the performance of volume selection techniques. The results are presented of a thorough evaluation of a particular implementation of ISIS performed using a procedure which forms the basis of the method adopted by the European Community Concerted Action on MRS and MRI. We have found that ISIS localization is optimal when the volume of interest is slightly smaller than the region we wish to study. Contamination with extraneous signal has little T1 dependence so long as TR greater than T1 and the detection pulse angle is 90 degrees. However, a poorly optimized detection pulse results in T1-weighted contamination unless TR greater than 3T1. In the clinical context, this corresponds to a different degree of contamination for each peak in the spectrum. Adiabatic detection pulses were used in an attempt to overcome this problem without resorting to unacceptable TR values, but these were found to function less well than properly optimized rectangular pulses, even if the power was increased above the level determined by the system for B1 insensitivity. These detailed results pertain only to our system, but illustrate the importance of performing similar measurements as part of clinical spectroscopy programmes at other centres.

摘要

随着磁共振波谱(MRS)临床应用的数量不断增加且复杂性日益提高,需要有标准化的方法来表征容积选择技术的性能。本文给出了使用一种程序对ISIS(一种特定的化学位移成像序列)的具体实施进行全面评估的结果,该程序是欧洲共同体关于MRS和MRI的协同行动所采用方法的基础。我们发现,当感兴趣容积略小于我们希望研究的区域时,ISIS定位效果最佳。只要重复时间(TR)大于纵向弛豫时间(T1)且检测脉冲角度为90度,外部信号的污染对T1的依赖性就很小。然而,除非TR大于3倍T1,否则检测脉冲优化不佳会导致T1加权污染。在临床环境中,这对应于谱图中每个峰的不同污染程度。为了在不采用不可接受的TR值的情况下克服这个问题,使用了绝热检测脉冲,但发现即使将功率提高到系统确定的对B1不敏感的水平之上,这些脉冲的效果也不如经过适当优化的矩形脉冲。这些详细结果仅适用于我们的系统,但说明了在其他中心将类似测量作为临床光谱学项目一部分进行的重要性。

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