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Reduced higher dimensional temporal dynamism in neurofibromatosis type 1

机译:降低1型神经纤维瘤病的高次元时间动力

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摘要

Neurofibromatosis type 1 (NF1) is a common single gene disorder resulting in multi-organ involvement. In addition to physical manifestations such as characteristic pigmentary changes, nerve sheath tumors, and skeletal abnormalities, NF1 is also associated with increased rates of learning disabilities, attention deficit hyperactivity disorder, and autism spectrum disorder. While there are established NF1-related structural brain anomalies, including brain overgrowth and white matter disruptions, little is known regarding patterns of functional connectivity in NF1. Here, we sought to investigate functional network connectivity (FNC) in a well-characterized sample of NF1 participants (n = 30) vs. age- and sex-matched healthy controls (n = 30). We conducted a comprehensive investigation of both static as well as dynamic FNC and meta-state analysis, a novel approach to examine higher-dimensional temporal dynamism of whole-brain connectivity.We found that static FNC of the cognitive control domain is altered in NF1 participants. Specifically, connectivity between anterior cognitive control areas and the cerebellum is decreased, whereas connectivity within the cognitive control domain is increased in NF1 participants relative to healthy controls. These alterations are independent of IQ.Dynamic FNC analysis revealed that NF1 participants spent more time in a state characterized by whole-brain hypoconnectivity relative to healthy controls. However, connectivity strength of dynamic states did not differ between NF1 participants and healthy controls.NF1 participants exhibited also reduced higher-dimensional dynamism of whole-brain connectivity, suggesting that temporal fluctuations of FNC are reduced. Given that similar findings have been observed in individuals with schizophrenia, higher occurrence of hypoconnected dynamic states and reduced temporal dynamism may be more general indicators of global brain dysfunction and not specific to either disorder.
机译:1型神经纤维瘤病(NF1)是导致多器官受累的常见单基因疾病。除了诸如特征性色素变化,神经鞘瘤和骨骼异常等身体表现外,NF1还与学习障碍,注意力不足过动症和自闭症谱系障碍发生率增加相关。尽管已经建立了与NF1相关的结构性脑异常,包括脑过度生长和白质破坏,但对于NF1中功能连接的模式知之甚少。在这里,我们试图研究一个特征明确的NF1参与者(n = 30)与年龄和性别相匹配的健康对照(n = 30)中的功能网络连接(FNC)。我们对静态FNC和动态FNC以及元状态分析进行了全面研究,这是一种检查全脑连接的高维时间动态性的新方法。我们发现NF1参与者的认知控制域的静态FNC发生了变化。具体而言,相对于健康对照,NF1参与者的前认知控制区域和小脑之间的连接性降低,而认知控制域内的连接性增加。这些变化与IQ无关。动态FNC分析显示,与健康对照组相比,NF1参与者在以全脑低连通性为特征的状态下花费了更多的时间。然而,NF1参与者和健康对照组之间动态状态的连接强度没有差异.NF1参与者还表现出降低的全脑连接的高维动力,这表明FNC的时间波动有所减少。鉴于在精神分裂症患者中观察到了类似的发现,低联系动态状态的发生率更高和时间动力降低可能是全球脑功能障碍的更一般指标,而不是特定于任何一种疾病。

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