Wijtenburg S A, McGuire S A, Rowland L M, Sherman P M, Lancaster J L, Tate D F, Hardies L J, Patel B, Glahn D C, Hong L E, Fox P T, Kochunov P
Maryland Psychiatric Research Center, Department of Psychiatry, University of Maryland School of Medicine, Baltimore, MD, USA.
Aerospace Medicine Consultation Division, Dayton, OH, USA.
Neuroimage. 2013 Feb 1;66:161-8. doi: 10.1016/j.neuroimage.2012.10.014. Epub 2012 Oct 13.
Fractional anisotropy (FA) of water diffusion in cerebral white matter (WM), derived from diffusion tensor imaging (DTI), is a sensitive index of microscopic WM integrity. Physiological and metabolic factors that explain intersubject variability in FA values were evaluated in two cohorts of healthy adults of different age spans (N=65, range: 28-50years; and N=25, age=66.6±6.2, range: 57-80years). Single voxel magnetic resonance spectroscopy (MRS) was used to measure N-acetylaspartate (NAA), total choline-containing compounds, and total creatine, bilaterally in an associative WM tract: anterior corona radiata (ACR). FA values were calculated for the underlying, proximal and two distal WM regions. Two-stage regression analysis was used to calculate the proportion of variability in FA values explained by spectroscopy measurements, at the first stage, and subject's age, at the second stage. WM NAA concentration explained 23% and 66% of intersubject variability (p<0.001) in the FA of the underlying WM in the younger and older cohorts, respectively. WM NAA concentration also explained a significant proportion of variability in FA of the genu of corpus callosum (CC), a proximal WM tract where some of the fibers contained within the spectroscopic voxel decussate. NAA concentrations also explained a significant proportion of variability in the FA values in the splenium of CC, a distal WM tract that also carries associative fibers, in both cohorts. These results suggest that MRS measurements explained a significant proportion of variability in FA values in both proximal and distal WM tracts that carry similar fiber-types.
源自扩散张量成像(DTI)的脑白质(WM)中水扩散的分数各向异性(FA)是微观WM完整性的敏感指标。在两个不同年龄跨度的健康成年人群体(N = 65,范围:28 - 50岁;N = 25,年龄 = 66.6 ± 6.2,范围:57 - 80岁)中,评估了解释FA值个体间变异性的生理和代谢因素。使用单体素磁共振波谱(MRS)在联合WM束:前放射冠(ACR)双侧测量N - 乙酰天门冬氨酸(NAA)、总含胆碱化合物和总肌酸。计算了底层、近端和两个远端WM区域的FA值。采用两阶段回归分析,在第一阶段计算由波谱测量解释的FA值变异性比例,在第二阶段计算受试者年龄解释的比例。WM的NAA浓度分别解释了年轻和老年群体中底层WM的FA值个体间变异性的23%和66%(p < 0.001)。WM的NAA浓度也解释了胼胝体膝部(CC)的FA值变异性的很大一部分,CC是近端WM束,其中一些包含在波谱体素内的纤维交叉。在两个群体中,NAA浓度也解释了CC压部(也是携带联合纤维的远端WM束)的FA值变异性的很大一部分。这些结果表明,MRS测量解释了携带相似纤维类型的近端和远端WM束中FA值变异性的很大一部分。