Pu Run, Wu Zhe, Yu Wenwen, He Hongjian, Zhou Zuofu, Wang Zheng, Zhong Jianhui
Center for Brain Imaging Science and Technology, Key Laboratory for Biomedical Engineering of Ministry of Education, College of Biomedical Engineering and Instrumental Science, Zhejiang University, Hangzhou, China.
Techna Institute, University Health Network, Toronto, ON, Canada.
Quant Imaging Med Surg. 2020 Jul;10(7):1526-1539. doi: 10.21037/qims-19-1014.
Iron plays a vital role in myelin synthesis and maintenance. A tight association between iron concentration and myelin content has been demonstrated in local brain regions; however, whether such a relationship exists between distant brain regions that are anatomically connected is largely unknown.
We conducted an measurement of iron and myelin content in the brains of 8 young (mean age: 7.7 years) and 8 old (mean age: 24.7 years) macaques by integrating two MRI-based techniques: quantitative susceptibility mapping (QSM) and myelin water fraction (MWF) imaging. We examined the relationship between iron deposition in components of the basal ganglia (BG), and the myelin content of the BG-connecting fiber tract internal capsule (IC) and four more white matter (WM) structures, including the optic tract, and the genu, body, and splenium of the corpus callosum, which are anatomically separate from the BG.
Spearman's correlation analysis revealed a moderate to high (r=0.528-0.808, P<0.05) positive correlation between the magnetic susceptibility of the BG and the MWF of anatomically connected IC structures during myelin production and maintenance, but little significant correlation was found between the susceptibility of the BG and the MWF of WM structures not anatomically connected to the BG.
These results advance the understanding of the relationship between iron and myelin, and suggest that future studies should consider the impact that iron concentration in the BG has on the myelination of WM structures that are anatomically connected to the BG.
铁在髓鞘合成与维持中起着至关重要的作用。在局部脑区已证实铁浓度与髓鞘含量之间存在紧密关联;然而,在解剖学上相连的远距离脑区之间是否存在这种关系在很大程度上尚不清楚。
我们通过整合两种基于磁共振成像(MRI)的技术:定量磁化率成像(QSM)和髓鞘水分数(MWF)成像,对8只幼年(平均年龄:7.7岁)和8只成年(平均年龄:24.7岁)猕猴的大脑中铁和髓鞘含量进行了测量。我们研究了基底神经节(BG)各组成部分的铁沉积与BG连接纤维束内囊(IC)以及另外四个白质(WM)结构(包括视束、胼胝体膝部、体部和压部)的髓鞘含量之间的关系,这些结构在解剖学上与BG是分开的。
Spearman相关性分析显示,在髓鞘生成和维持过程中,BG的磁化率与解剖学上相连的IC结构的MWF之间存在中度到高度(r = 0.528 - 0.808,P < 0.05)的正相关,但在BG的磁化率与未与BG解剖学相连的WM结构的MWF之间未发现显著相关性。
这些结果推进了对铁与髓鞘之间关系的理解,并表明未来的研究应考虑BG中铁浓度对与BG解剖学相连的WM结构髓鞘形成的影响。