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首页> 外文期刊>NeuroImage >MR fingerprinting enables quantitative measures of brain tissue relaxation times and myelin water fraction in the first five years of life
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MR fingerprinting enables quantitative measures of brain tissue relaxation times and myelin water fraction in the first five years of life

机译:指纹识别先生在生命的前五年内能够进行脑组织松弛时间和髓鞘水分的定量测量

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摘要

Quantitative assessments of normative brain development using MRI are of critical importance to gain insights into healthy neurodevelopment. However, quantitative MR imaging poses significant technical challenges and requires prohibitively long acquisition times, making it impractical for pediatric imaging. This is particularly relevant for healthy subjects, where imaging under sedation is not clinically indicated. MR Fingerprinting (MRF), a novel MR imaging framework, provides rapid, efficient, and simultaneous quantification of multiple tissue properties. In this study, a 2D MR Fingerprinting method was developed that achieves a spatial resolution of 1 x 1 x 3 mm(3) with rapid and simultaneous quantification of T-1, T-2 and myelin water fraction (MWF). Phantom experiments demonstrated that accurate measurements of T-1 and T-2 relaxation times were achieved over a wide range of T-1 and T-2 values. MRF images were acquired cross-sectionally from 28 typically developing children, 0 to five years old, who were enrolled in the UNC/UMN Baby Connectome Project. Differences associated with age of R1 (=1/T-1), R2 (=1/T-2) and MWF were obtained from several predefined white matter regions. Both R1 and R2 exhibit a marked increase until similar to 20 months of age, followed by a slower increase for all WM regions. In contrast, the MWF remains at a negligible level until similar to 6 months of age for all predefined ROIs and gradually increases afterwards. Depending on the brain region, rapid increases are observed between 6 and 12 months to 6-18 months, followed by a slower pace of increase in MWF. Neither relaxivities nor MWF were significantly different between the left and right hemispheres. However, regional differences in age-related R1 and MWF measures were observed across different white matter regions. In conclusion, our results demonstrate that the MRF technique holds great potential for multi-parametric assessments of normative brain development in early childhood.
机译:使用MRI的规范性大脑发育的定量评估是对健康神经发作的洞察力的重要意义。然而,定量MR成像造成显着的技术挑战,并且需要监测较长的时间,对儿科成像进行了不切实际的。这与健康受试者特别相关,其中镇静下的成像未临床上表明。指纹纹理(MRF)是一种新的MR成像框架,提供了多种组织特性的快速,高效和同时定量。在该研究中,开发了一种2D MR指纹识别方法,其实现了1×1×3mm(3)的空间分辨率,快速且同时定量T-1,T-2和髓鞘水分(MWF)。 Phantom实验证明,在宽范围的T-1和T-2值中实现了T-1和T-2弛豫时间的精确测量。 MRF图像从28名典型的发展中国家获得横断面的图像,0到5岁,曾在UNC / UMN Baby Connectome项目中注册。与R1(= 1 / T-1)的年龄,R2(= 1 / T-2)和MWF相关的差异是从几个预定的白质子区域获得的。 R1和R2都表现出显着的增加,直到类似于20个月的年龄,然后对所有WM区域增加速度较慢。相比之下,MWF仍然处于忽略的水平,直到所有预定义的ROI的6个月,之后逐渐增加。根据大脑地区,在6到12个月至6-18个月之间观察到快速增加,然后在MWF增加速度较慢。左右半球之间的放松性和MWF都没有显着差异。然而,在不同的白质区间观察到年龄相关的R1和MWF措施的区域差异。总之,我们的结果表明,MRF技术对幼儿期初期的规范性大脑发育的多参数评估具有巨大潜力。

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