首页> 外文期刊>Neuropsychologia >Occipital cortical thickness in very low birth weight born adolescents predicts altered neural specialization of visual semantic category related neural networks
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Occipital cortical thickness in very low birth weight born adolescents predicts altered neural specialization of visual semantic category related neural networks

机译:出生体重非常低的青少年的枕叶皮质厚度预测与视觉语义类别相关的神经网络的神经专长将发生改变

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Very low birth weight (VLBW) premature born infants have a high risk to develop visual perceptual and learning deficits as well as widespread functional and structural brain abnormalities during infancy and childhood. Whether and how prematurity alters neural specialization within visual neural networks is still unknown. We used functional and structural brain imaging to examine the visual semantic system of VLBW born ( < 1250 g, gestational age 25-32 weeks) adolescents (13-15 years, n = 11, 3 males) and matched term born control participants (13-15 years, n = 11, 3 males). Neurocognitive assessment revealed no group differences except for lower scores on an adaptive visuomotor integration test. All adolescents were scanned while viewing pictures of animals and tools and scrambled versions of these pictures. Both groups demonstrated animal and tool category related neural networks. Term born adolescents showed tool category related neural activity, i.e. tool pictures elicited more activity than animal pictures, in temporal and parietal brain areas. Animal category related activity was found in the occipital, temporal and frontal cortex. VLBW born adolescents showed reduced tool category related activity in the dorsal visual stream compared with controls, specifically the left anterior intraparietal sulcus, and enhanced animal category related activity in the left middle occipital gyms and right lingual gyms. Lower birth weight of VLBW adolescents correlated with larger thickness of the pericalcarine gyms in the occipital cortex and smaller surface area of the superior temporal gyrus in the lateral temporal cortex. Moreover, larger thickness of the pericalcarine gyms and smaller surface area of the superior temporal gyms correlated with reduced tool category related activity in the parietal cortex. Together, our data suggest that very low birth weight predicts alterations of higher order visual semantic networks, particularly in the dorsal stream. The differences in neural specialization may be associated with aberrant cortical development of areas in the visual system that develop early in childhood. (c) 2014 Elsevier Ltd. All rights reserved.
机译:极低的出生体重(VLBW)早产婴儿在婴儿期和儿童期出现视觉知觉和学习障碍以及广泛的功能和结构性脑部异常的风险很高。早熟是否以及如何改变视觉神经网络内的神经专长仍然未知。我们使用功能和结构性脑成像检查了出生(<1250 g,胎龄25-32周)青少年(13-15岁,n = 11,3男性)和匹配的足月出生对照参与者(13的VLBW)的视觉语义系统-15岁,n = 11,男性3。神经认知评估显示,除适应性视觉运动整合测试的较低分数外,没有其他组别差异。在查看所有动物和工具的图片以及这些图片的混乱版本时,对所有青少年进行了扫描。两组都展示了与动物和工具类别相关的神经网络。足月出生的青少年表现出与工具类别有关的神经活动,即在颞部和顶脑区域,工具图片比动物图片引起更多的活动。在枕骨,颞叶和额叶皮层中发现了与动物类别相关的活动。与对照组相比,VLBW出生的青少年在背侧视觉流中显示出与工具类别相关的活动减少,尤其是左前顶壁沟,而在左中枕骨体育馆和右语言体育馆中,动物类别相关的活动增强。 VLBW青少年的较低出生体重与枕叶皮层的骨ical肉体育馆的厚度较大和颞侧皮层的颞上回的较小表面积有关。此外,黄ical肉体育馆的较大厚度和高级颞体育馆的较小表面积与顶叶皮层中与工具类别有关的活动减少有关。总之,我们的数据表明出生时体重很轻,可以预测高阶视觉语义网络的变化,尤其是在背流中。神经专长的差异可能与儿童早期发育的视觉系统区域的皮质发育异常有关。 (c)2014 Elsevier Ltd.保留所有权利。

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