首页> 美国卫生研究院文献>Human Brain Mapping >Elucidating Microstructural Alterations in Neurodevelopmental Disorders: Application of Advanced Diffusion‐Weighted Imaging in Children With Rasopathies
【2h】

Elucidating Microstructural Alterations in Neurodevelopmental Disorders: Application of Advanced Diffusion‐Weighted Imaging in Children With Rasopathies

机译:阐明神经发育障碍的微观结构改变:高级弥散加权成像在儿童 Rasopathies 中的应用

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

Neurodevelopmental disorders (NDDs) can severely impact functioning yet effective treatments are limited. Greater insight into the neurobiology underlying NDDs is critical to the development of successful treatments. Using a genetics‐first approach, we investigated the potential of advanced diffusion‐weighted imaging (DWI) techniques to characterize the neural microstructure unique to neurofibromatosis type 1 (NF1) and Noonan syndrome (NS). In this prospective study, children with NF1, NS, and typical developing (TD) were scanned using a multi‐shell DWI sequence optimized for neurite orientation density and dispersion imaging (NODDI) and diffusion kurtosis imaging (DKI). Region‐of‐interest and tract‐based analysis were conducted on subcortical regions and white matter tracts. Analysis of covariance, principal components, and linear discriminant analysis compared between three groups. 88 participants (M age = 9.36, SDage = 2.61; 44 male) were included: 31 NS, 25 NF1, and 32 TD. Subcortical regions differed between NF1 and NS, particularly in the thalamus where the neurite density index (NDI; estimated difference 0.044 [95% CI: −0.034, 0.053], d = 2.36), orientation dispersion index (ODI; estimate 0.018 [95% CI: 0.010, 0.026], d = 1.39), and mean kurtosis (MK; estimate 0.049 [95% CI: 0.025, 0.072], d = 1.39) were lower in NF1 compared with NS (all p < 0.0001). Reduced NDI was found in NF1 and NS compared with TD in all 39 white matter tracts investigated (p < 0.0001). Reduced MK was found in a majority of the tracts in NF1 and NS relative to TD, while fewer differences in ODI were observed. The middle cerebellar peduncle showed lower NDI (estimate 0.038 [95% CI: 0.021, 0.056], p < 0.0001) and MK (estimate 0.057 [95% CI: 0.026, 0.089], p < 0.0001) in NF1 compared to NS. Multivariate analyses distinguished between groups using NDI, ODI, and MK measures. Principal components analysis confirmed that the clinical groups differ most from TD in white matter tract‐based NDI and MK, whereas ODI values appear similar across the groups. The subcortical regions showed several differences between NF1 and NS, to the extent that a linear discriminant analysis could classify participants with NF1 with an accuracy rate of 97%. Differences in neural microstructure were detected between NF1 and NS, particularly in subcortical regions and the middle cerebellar peduncle, in line with pre‐clinical evidence. Advanced DWI techniques detected subtle alterations not found in prior work using conventional diffusion tensor imaging.
机译:神经发育障碍 (NDD) 会严重影响功能,但有效的治疗方法有限。更深入地了解 NDD 背后的神经生物学对于开发成功的治疗方法至关重要。使用遗传学优先的方法,我们研究了先进的弥散加权成像 (DWI) 技术在表征 1 型神经纤维瘤病 (NF1) 和 Noonan 综合征 (NS) 特有的神经微观结构方面的潜力。在这项前瞻性研究中,使用针对神经突取向密度和色散成像 (NODDI) 和弥散峰度成像 (DKI) 优化的多壳 DWI 序列对患有 NF1、NS 和典型发育 (TD) 的儿童进行扫描。对皮质下区域和白质束进行感兴趣区域和基于束的分析。协方差分析、主成分分析和三组之间的线性判别分析。包括 88 名参与者 (M 年龄 = 9.36,SDage = 2.61;44 名男性) : 31 名 NS 、 25 名 NF1 和 32 名 TD。NF1 和 NS 之间的皮质下区域不同,特别是在丘脑中,NF1 的神经突密度指数 (NDI;估计差异 0.044 [95% CI: −0.034, 0.053],d = 2.36)、定向分散指数 (ODI;估计 0.018 [95% CI: 0.010, 0.026],d = 1.39)和平均峰度 (MK;估计 0.049 [95% CI: 0.025, 0.072],d = 1.39) 与 NS 相比较低 (均 p < 0.0001)。在调查的所有 39 个白质束中,与 TD 相比,NF1 和 NS 的 NDI 降低 (p < 0.0001)。相对于 TD,在 NF1 和 NS 的大多数束中发现 MK 降低,而观察到 ODI 的差异较小。与 NS 相比,NF1 中小脑蒂显示较低的 NDI(估计 0.038 [95% CI:0.021,0.056],p < 0.0001)和 MK(估计 0.057 [95% CI:0.026,0.089],p < 0.0001)。使用 NDI 、 ODI 和 MK 测量对组进行多变量分析。主成分分析证实,临床组在基于白质束的 NDI 和 MK 方面与 TD 差异最大,而 ODI 值在各组之间似乎相似。皮质下区域在 NF1 和 NS 之间显示出一些差异,以至于线性判别分析可以以 97% 的准确率对 NF1 参与者进行分类。在 NF1 和 NS 之间检测到神经微结构的差异,特别是在皮质下区域和小脑中蒂,与临床前证据一致。先进的 DWI 技术检测到了使用传统弥散张量成像在先前工作中未发现的细微变化。

著录项

代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号