Kucharczyk J, Moseley M, Kurhanewicz J, Norman D
Department of Radiology, University of California, San Francisco 94143-0628.
Invest Radiol. 1989 Dec;24(12):951-4. doi: 10.1097/00004424-198912000-00005.
Significant increases in magnetic field strengths and improvements in magnetic field homogeneity have made combined high-resolution magnetic resonance imaging (MRI) and multinuclear spectroscopy (MRS) feasible for investigating the relationship between biochemical and structural changes induced by ischemic brain disease. Magnetic resonance spectroscopy is the only noninvasive technique capable of measuring concentrations of high-energy phosphate metabolites, lactate, and other metabolically relevant compounds. Anticipated advances in localization of the volume of tissue from which spectra are obtained will enhance the clinical potential of MRS in the diagnosis of ischemic disease.
磁场强度的显著增加和磁场均匀性的改善,使得高分辨率磁共振成像(MRI)与多核磁共振波谱(MRS)相结合,用于研究缺血性脑病引起的生化和结构变化之间的关系成为可能。磁共振波谱是唯一能够测量高能磷酸代谢物、乳酸和其他代谢相关化合物浓度的非侵入性技术。预期在获取波谱的组织体积定位方面的进展,将提高MRS在缺血性疾病诊断中的临床潜力。