Approaching altered inhibitory control in phenylketonuria: A functional MRI study with a Go‐NoGo task in young female adults

功能磁共振成像 认知 默认模式网络 年轻人 心理学 大脑活动与冥想 神经科学 抑制性控制 抑制性突触后电位 听力学 医学 发展心理学 脑电图
作者
Benedikt Sundermann,Stefan Garde,Mahboobeh Dehghan Nayyeri,J. Weglage,Johanna Maria Helena Rau,Bettina Pfleiderer,Reinhold Feldmann
出处
期刊:European Journal of Neuroscience [Wiley]
卷期号:52 (8): 3951-3962 被引量:15
标识
DOI:10.1111/ejn.14738
摘要

Abstract Subtle executive function deficits, particularly regarding inhibitory control, have been reported in patients with phenylketonuria (PKU) despite early dietary treatment. Purpose of this study was to assess whether young female adults with PKU exhibit altered neural activity underlying such deficits, particularly in a fronto‐parietal cognitive control network (CCN). Behavioural data and functional magnetic resonance imaging (fMRI) data were acquired during a Go‐NoGo task in 16 young adult patients with PKU and 17 control subjects. Hypothesis‐driven analyses of behavioural and fMRI data in the CCN were supplemented by exploratory whole brain activation analyses. PKU patients exhibited a trend towards higher errors of commission. Patients exhibited marginally increased activation associated with inhibitory control in only one CCN core region (right middle frontal gyrus, p = .043). Whole brain analyses revealed widespread relatively increased activation in adults with PKU in the main task contrast (NoGo > Go). This increased activation was mainly observed outside the CCN and largely overlapped with the default mode network (DMN). In conclusion, only subtle inhibitory control deficits and associated brain activity differences were observed in young adults with PKU. Thus, this work adds to the notion that this particular population seems to be only slightly affected by such cognitive deficits. While there were also only minimal increases when compared to healthy subjects in brain activity in a cognitive control network, we observed more widespread activation increases outside this network. These results support the assumption of DMN dysfunction in PKU.

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