Kwon Soo Hyun, Scheinost Dustin, Lacadie Cheryl, Sze Gordon, Schneider Karen C, Dai Feng, Constable R Todd, Ment Laura R
Department of Pediatrics, Yale School of Medicine, New Haven, CT, USA.
Department of Diagnostic Radiology, Yale School of Medicine, New Haven, CT, USA.
Neuroimage. 2015 Mar;108:144-50. doi: 10.1016/j.neuroimage.2014.12.032. Epub 2014 Dec 17.
Preterm birth results in alterations in neural connectivity, but the impact of prematurity on the functional organization of the developing brain has yet to be explored. To test the hypothesis that preterm birth alters cortical organization during the late second and third trimesters of gestation, we interrogated cerebral lateralization at rest in 26 very preterm subjects (birth weight 500-1500g) with no evidence of brain injury and 25 healthy term control subjects at term equivalent age. Employing an unbiased voxel-based measure of functional connectivity, these data demonstrated that cerebral lateralization is impaired in the prematurely-born. At term equivalent age, preterm neonates showed significantly less lateralization in regions subserving both receptive and expressive language, left Brodmann (BA) areas insula-BA22-BA21 and L BA45-BA47 (p<0.05 corrected for multiple comparisons for both). Exploratory region of interest analyses demonstrated significantly less inter-hemispheric connectivity from L BA22 to R BA22 in preterm infants compared to term controls (p<0.005) and from R BA22 to its homolog (p<0.005). L BA22, Wernicke's area, was more strongly connected to R BA39, foreshadowing neural networks for language in preterm subjects at school age, adolescence and young adulthood. For these very preterm neonates born at less than 30weeks' PMA, the degree of prematurity had no influence on lateralization in these differential regions.
早产会导致神经连接的改变,但早产对发育中大脑功能组织的影响尚未得到探索。为了验证早产会在妊娠晚期第二个和第三个三个月期间改变皮质组织这一假设,我们对26名无脑损伤证据的极早产受试者(出生体重500 - 1500克)和25名足月健康对照受试者在足月等效年龄时的静息脑侧化进行了研究。利用基于体素的无偏功能连接测量方法,这些数据表明早产婴儿的脑侧化受损。在足月等效年龄时,早产新生儿在负责接受性和表达性语言的区域,即左布罗德曼(BA)区岛叶 - BA22 - BA21和左BA45 - BA47,显示出明显较少的侧化(两者经多重比较校正后p<0.05)。探索性感兴趣区域分析表明,与足月对照组相比,早产儿从左BA22到右BA22的半球间连接明显较少(p<0.005),从右BA22到其同源区域的连接也明显较少(p<0.005)。左BA22,即韦尼克区,与右BA39的连接更强,这预示着早产受试者在学龄期、青春期和成年早期的语言神经网络。对于这些孕龄小于30周出生的极早产新生儿,早产程度对这些差异区域的侧化没有影响。