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Cognitive and behavioral correlates of caudate subregion shape variation in fragile X syndrome

机译:脆性X综合征尾状分区形状变化的认知和行为相关性

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Individuals with fragile X syndrome (FXS) exhibit frontal lobe-associated cognitive and behavioral deficits, including impaired general cognitive abilities, perseverative behaviors, and social difficulties. Neural signals related to these functions are communicated through frontostriatal circuits, which connect with distinct regions of the caudate nucleus (CN). Enlargement of the CN is the most robust and reproduced neuroanatomical abnormality in FXS, but very little is known on how this affects behavioral/cognitive outcomes in this condition. Here, we investigated topography within focal regions of the CN associated with prefrontal circuitry and its link with aberrant behavior and intellect in FXS. Imaging data were acquired from 48 individuals with FXS, 28 IQ-matched controls without FXS (IQ-CTL), and 36 typically developing controls (TD-CTL). Of the total participant count, cognitive and behavioral assessment data were obtained from 44 individuals with FXS and 27 participants in the IQ-CTL group. CN volume and topography were compared between groups. Correlations were performed between CN topography and cognitive as well as behavioral measures within FXS and IQ-CTL groups. As expected, the FXS group had larger CN compared with both IQ-CTL and TD-CTL groups. Correlations between focal CN topography and frontal lobe-associated cognitive and behavioral deficits in the FXS group supported the hypothesis that CN enlargement is related to abnormal orbitofrontal-caudate and dorsolateral-caudate circuitry in FXS. These findings deepen our understanding of neuroanatomical mechanisms underlying cognitive-behavioral problems in FXS and hold promise for informing future behavioral and psychopharmacological interventions targeting specific neural pathways.
机译:患有脆性X综合征(FXS)的人表现出额叶相关的认知和行为缺陷,包括一般认知能力受损,顽强的行为和社会困难。与这些功能有关的神经信号通过前额叶电路传递,该电路与尾状核(CN)的不同区域相连。 CN的扩大是FXS中最健壮和可复制的神经解剖异常,但在这种情况下如何影响行为/认知结果知之甚少。在这里,我们调查了与前额叶电路相关的CN焦点区域内的地形,及其与FXS中异常行为和智力的联系。成像数据来自48位有FXS的个体,28位无FXS的IQ匹配对照(IQ-CTL)和36位典型的发育对照(TD-CTL)。在参与者总数中,认知和行为评估数据来自FXS的44位个体和IQ-CTL组的27位参与者。比较两组之间的CN体积和地形。在FXS和IQ-CTL组中,CN地形与认知以及行为测量之间进行了相关性。不出所料,与IQ-CTL和TD-CTL组相比,FXS组的CN更大。 FXS组的局灶性CN形貌与额叶相关的认知和行为缺陷之间的相关性支持以下假说,即CN增大与FXS的眶额尾状尾叶和背外侧尾状电路异常有关。这些发现加深了我们对FXS认知行为问题背后的神经解剖学机制的理解,并有望为将来针对特定神经通路的行为和心理药物干预提供信息。

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