Striatal subregional functional connectivity and its association with sustained attention in adults with attention deficit hyperactivity disorder.

IF 1.4 4区 医学 Q4 NEUROSCIENCES
Muhammad Abdullah, Li-Chung Huang, Shih-Hsien Lin, Yen Kuang Yang
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引用次数: 0

Abstract

The functional connectivity (FC) of striatal subregions is correlated with cognitive functions in child attention deficit hyperactivity disorder (ADHD). However, increasing age changes the pattern of cognitive functions and clinical presentation. The changes in the pattern of cognitive functions may be associated with underlying age‑dependent striatal subregional FC alterations. We attempted to explore aberrancies in FC in striatal subregions and their associations with a predominant cognitive symptom (inattention) in adult ADHD. The FCs of ten bilateral subregions (seeds) of the striatum along with the whole brain were investigated, and FC maps of adults with ADHD (N=15) and healthy controls (N=15) were compared. Finally, we evaluated the associations of striatal subregional FCs with cognitive functions. Case‑control differences in striatal subregional FC were not significant; however, attention scores were marginally significantly positively correlated with FC between the right dorsal‑caudal putamen and right‑superior temporal gyrus in the ADHD group. Our results suggested that cognitive deficits (inattention) may be associated with FC aberrancy in a substriatal connection (between the right dorsal‑caudal putamen and right‑superior temporal gyrus) in adult ADHD.

注意缺陷多动障碍成人纹状体分区域功能连通性及其与持续注意的关系。
纹状体亚区功能连通性与儿童注意缺陷多动障碍(ADHD)的认知功能相关。然而,随着年龄的增长,认知功能和临床表现的模式发生了变化。认知功能模式的改变可能与潜在的年龄依赖性纹状体分区域FC改变有关。我们试图探索纹状体亚区FC异常及其与成人ADHD主要认知症状(注意力不集中)的关系。研究了纹状体的10个双侧亚区(种子区)和整个大脑的FC,并比较了ADHD成人(N=15)和健康对照(N=15)的FC图谱。最后,我们评估纹状体分区域fc与认知功能的关系。纹状体分区域FC的病例对照差异不显著;然而,ADHD组的注意得分与右侧背尾壳核和右侧颞上回之间的FC呈微显著正相关。我们的研究结果表明,成人ADHD患者的认知缺陷(注意力不集中)可能与基底连接(右侧背尾壳核和右侧颞上回之间)的FC异常有关。
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来源期刊
CiteScore
2.20
自引率
7.10%
发文量
40
审稿时长
>12 weeks
期刊介绍: Acta Neurobiologiae Experimentalis (ISSN: 0065-1400 (print), eISSN: 1689-0035) covers all aspects of neuroscience, from molecular and cellular neurobiology of the nervous system, through cellular and systems electrophysiology, brain imaging, functional and comparative neuroanatomy, development and evolution of the nervous system, behavior and neuropsychology to brain aging and pathology, including neuroinformatics and modeling.
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