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苍白球和壳核中T2弛豫时间的年龄分布及铁依赖性。

Age distribution and iron dependency of the T2 relaxation time in the globus pallidus and putamen.

作者信息

Schenker C, Meier D, Wichmann W, Boesiger P, Valavanis A

机构信息

Department of Neuroradiology, University Hospital, Zurich, Switzerland.

出版信息

Neuroradiology. 1993;35(2):119-24. doi: 10.1007/BF00593967.

Abstract

Heavily T2-weighted spin echo sequences of the brain show age-dependent low signal intensity in many extrapyramidal nuclei. Although it has been suggested that this low intensity results from non-haem iron, the specific influence of non-haem iron on the T2 relaxation time has not been quantified and remains controversial. The T2 relaxation times of the globus pallidus and putamen were measured from MRI at 1.5T in 27 healthy patients, by using a mathematical model. They were then plotted as a function of age and compared to the curve of age-dependent iron concentration determined post mortem. The curves of T2 relaxation time in the basal ganglia are congruent with published curves of iron concentration, indicating a high probability that the changes in T2 relaxation times and the low signal in the basal ganglia result from the local, age-dependent iron deposition. Individual measurements of T2 relaxation time show less variation before than after 45 years of age, indicating the influence of a second, more individual factor.

摘要

大脑的重T2加权自旋回波序列显示,许多锥体外系核团存在与年龄相关的低信号强度。尽管有人认为这种低强度是由非血红素铁引起的,但非血红素铁对T2弛豫时间的具体影响尚未量化,仍存在争议。通过使用数学模型,在1.5T的磁共振成像(MRI)上测量了27名健康患者苍白球和壳核的T2弛豫时间。然后将其绘制为年龄的函数,并与死后测定的年龄依赖性铁浓度曲线进行比较。基底神经节的T2弛豫时间曲线与已发表的铁浓度曲线一致,表明基底神经节T2弛豫时间的变化和低信号很可能是由局部年龄依赖性铁沉积引起的。T2弛豫时间的个体测量显示,45岁之前的变化小于45岁之后,这表明存在第二个更具个体性的因素的影响。

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