Suppr超能文献

利用磁共振指纹技术对白质发育进行快速可靠的定量测量。

Fast and reliable quantitative measures of white matter development with magnetic resonance fingerprinting.

作者信息

Yablonski Maya, Zhou Zihan, Cao Xiaozhi, Schauman Sophie, Liao Congyu, Setsompop Kawin, Yeatman Jason D

出版信息

bioRxiv. 2024 Jun 30:2024.06.26.600735. doi: 10.1101/2024.06.26.600735.

Abstract

Developmental cognitive neuroscience aims to shed light on evolving relationships between brain structure and cognitive development. To this end, quantitative methods that reliably measure individual differences in brain tissue properties are fundamental. Standard qualitative MRI sequences are influenced by scan parameters and hardware-related biases, and also lack physical units, making the analysis of individual differences problematic. In contrast, quantitative MRI can measure physical properties of the tissue but with the cost of long scan durations and sensitivity to motion. This poses a critical limitation for studying young children. Here, we examine the reliability and validity of an efficient quantitative multiparameter mapping method - Magnetic Resonance Fingerprinting (MRF) - in children scanned longitudinally. We focus on T1 values in white matter, since quantitative T1 values are known to primarily reflect myelin content, a key factor in brain development. Forty-nine children aged 8-13y (mean 10.3y ±1.4) completed two scanning sessions 2-4 months apart. In each session, two 2-minute 3D-MRF scans at 1mm isotropic resolution were collected to evaluate the effect of scan duration on image quality and scan-rescan reliability. A separate calibration scan was used to measure B0 inhomogeneity and correct for bias. We examined the impact of scan time and B0 inhomogeneity correction on scan-rescan reliability of values in white matter, by comparing single 2-min and combined two 2-min scans, with and without B0-correction. Whole-brain voxel-based reliability analysis showed that combining two 2-min MRF scans improved reliability (pearson's r=0.87) compared with a single 2-min scan (r=0.84), while B0-correction had no effect on reliability in white matter (r=0.86 and 0.83 4-min vs 2-min). Using diffusion tractography, we delineated MRF-derived T1 profiles along major white matter fiber tracts and found similar or higher reliability for T1 from MRF compared to diffusion parameters (based on a 10-minute dMRI scan). Lastly, we found that T1 values in multiple white matter tracts were significantly correlated with age. In sum, MRF-derived T1 values were highly reliable in a longitudinal sample of children and replicated known age effects. Reliability in white matter was improved by longer scan duration but was not affected by B0-correction, making it a quick and straightforward scan to collect. We propose that MRF provides a promising avenue for acquiring quantitative brain metrics in children and patient populations where scan time and motion are of particular concern.

摘要

发育认知神经科学旨在阐明脑结构与认知发展之间不断演变的关系。为此,能够可靠测量脑组织特性个体差异的定量方法至关重要。标准的定性磁共振成像序列受扫描参数和硬件相关偏差的影响,并且缺乏物理单位,这使得个体差异分析存在问题。相比之下,定量磁共振成像可以测量组织的物理特性,但代价是扫描时间长且对运动敏感。这对研究幼儿构成了关键限制。在此,我们研究了一种高效的定量多参数映射方法——磁共振指纹成像(MRF)——在纵向扫描儿童中的可靠性和有效性。我们关注白质中的T1值,因为已知定量T1值主要反映髓磷脂含量,而髓磷脂含量是脑发育的关键因素。49名8至13岁(平均10.3岁±1.4)的儿童在相隔2至4个月的时间内完成了两次扫描。在每次扫描中,采集了两次2分钟的各向同性分辨率为1毫米的3D-MRF扫描,以评估扫描持续时间对图像质量和扫描-重扫可靠性的影响。使用单独的校准扫描来测量B0不均匀性并校正偏差。我们通过比较有和没有B0校正的单次2分钟扫描与两次2分钟组合扫描,研究了扫描时间和B0不均匀性校正对白质中值的扫描-重扫可靠性的影响。基于全脑体素的可靠性分析表明,与单次2分钟扫描(r = 0.84)相比,组合两次2分钟的MRF扫描提高了可靠性(皮尔逊r = 0.87),而B0校正对白质可靠性没有影响(4分钟与2分钟相比,r = 0.86和0.83)。使用扩散张量成像,我们沿着主要白质纤维束描绘了MRF衍生的T1剖面图,发现与扩散参数(基于10分钟的扩散加权磁共振成像扫描)相比,MRF的T1具有相似或更高的可靠性。最后,我们发现多个白质束中的T1值与年龄显著相关。总之,在纵向样本的儿童中,MRF衍生的T1值高度可靠,并重现了已知的年龄效应。白质的可靠性通过更长的扫描持续时间得到改善,但不受B0校正的影响,使其成为一种快速且直接的扫描采集方法。我们认为,MRF为在扫描时间和运动特别受关注的儿童和患者群体中获取定量脑指标提供了一条有前景的途径。

相似文献

1
2
Fast and reliable quantitative measures of white matter development with magnetic resonance fingerprinting.
Imaging Neurosci (Camb). 2025 Feb 18;3. doi: 10.1162/imag_a_00470. eCollection 2025.
4
Magnetic resonance perfusion for differentiating low-grade from high-grade gliomas at first presentation.
Cochrane Database Syst Rev. 2018 Jan 22;1(1):CD011551. doi: 10.1002/14651858.CD011551.pub2.
6
White matter changes measured by multi-component MR Fingerprinting in multiple sclerosis.
Neuroimage Clin. 2023;40:103528. doi: 10.1016/j.nicl.2023.103528. Epub 2023 Oct 11.
7
Automated Whole-Brain Focal Cortical Dysplasia Detection Using MR Fingerprinting With Deep Learning.
Neurology. 2025 Jun 10;104(11):e213691. doi: 10.1212/WNL.0000000000213691. Epub 2025 May 16.
9
Reminiscence therapy for dementia.
Cochrane Database Syst Rev. 2018 Mar 1;3(3):CD001120. doi: 10.1002/14651858.CD001120.pub3.
10
Improving Energy Access, Climate and Socio-Economic Outcomes Through Off-Grid Electrification Technologies: A Systematic Review.
Campbell Syst Rev. 2025 Aug 15;21(3):e70060. doi: 10.1002/cl2.70060. eCollection 2025 Sep.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验