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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Estimation of brain iron concentration in vivo using a linear relationship between regional iron and apparent transverse relaxation rate of the tissue water at 4.7T.
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Estimation of brain iron concentration in vivo using a linear relationship between regional iron and apparent transverse relaxation rate of the tissue water at 4.7T.

机译:使用区域铁与4.7T下组织水的表观横向弛豫速率之间的线性关系估算体内脑铁浓度。

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Maps of the apparent transverse relaxation time (T(2) were collected on a transaxial plane across the basal ganglia in 54 healthy subjects at 4.7T using a multiecho adiabatic spin-echo (MASE) imaging sequence. We attempted to quantify the nonhemin iron concentration ([Fe]) in various brain regions in vivo based on the linear relationship between the apparent relaxation rate constant (R(2) = 1/T(2) and regional [Fe], as demonstrated previously in 12 subjects. The calculated [Fe] in five gray matter (GM) regions agreed well with the previously reported regional iron distribution as well as reproduced its age-dependent change. In particular, a decrease of iron in the thalamus region in subjects over 30 years of age was demonstrated while an upward trend was shown in other regions. Furthermore, the average R(2) in each GM region in subjects over 30 years of age showed a deviation from the regression line with [Fe] in an identical manner to that obtained in the previous 12 subjects. This strongly suggests that there is a systematic regional factor affecting R(2), in addition to iron. Interregional difference in the macromolecular mass fraction (f(M)) explained this systematic deviation well. When accounting for f(M) in the analysis, the apparent transverse relaxation rate seems to give a significantly better estimation of regional [Fe].
机译:使用多回波绝热自旋回波(MASE)成像序列,在4.7T的54例健康受试者的横穿基底神经节的横轴平面上收集了表观的横向弛豫时间(T(2))图,我们试图量化非血红素铁的浓度根据表观松弛速率常数(R(2)= 1 / T(2)和区域[Fe]之间的线性关系,在体内各个大脑区域中的[Fe]),如先前在12位受试者中所证明的。 [Fe]在五个灰质(GM)地区与先前报道的区域铁分布非常吻合,并再现了其年龄依赖性变化,特别是,在30岁以上人群中丘脑区域铁减少,而此外,在30岁以上的受试者中,每个GM区域的平均R(2)均显示与[Fe]的回归线存在偏差,其方式与之前的12个结果相同科目。错误地暗示,除了铁以外,还有一个系统的区域性因素会影响R(2)。大分子质量分数(f(M))的区域间差异很好地解释了这种系统偏差。当在分析中考虑f(M)时,表观横向弛豫率似乎可以更好地估计区域[Fe]。

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