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足月儿的孕周与新生儿脑微结构:一项出生队列研究。

Gestational age and neonatal brain microstructure in term born infants: a birth cohort study.

作者信息

Broekman Birit F P, Wang Changqing, Li Yue, Rifkin-Graboi Anne, Saw Seang Mei, Chong Yap-Seng, Kwek Kenneth, Gluckman Peter D, Fortier Marielle V, Meaney Michael J, Qiu Anqi

机构信息

Department of Psychological Medicine, Yong Loo Lin School of Medicine, National University of Singapore, National University Health System, Singapore, Singapore; Singapore Institute for Clinical Sciences, the Agency for Science, Technology and Research, Singapore, Singapore.

Department of Biomedical Engineering, National University of Singapore, Singapore, Singapore.

出版信息

PLoS One. 2014 Dec 23;9(12):e115229. doi: 10.1371/journal.pone.0115229. eCollection 2014.

Abstract

OBJECTIVE

Understanding healthy brain development in utero is crucial in order to detect abnormal developmental trajectories due to developmental disorders. However, in most studies neuroimaging was done after a significant postnatal period, and in those studies that performed neuroimaging on fetuses, the quality of data has been affected due to complications of scanning during pregnancy. To understand healthy brain development between 37-41 weeks of gestational age, our study assessed the in utero growth of the brain in healthy term born babies with DTI scanning soon after birth.

METHODS

A cohort of 93 infants recruited from maternity hospitals in Singapore underwent diffusion tensor imaging between 5 to 17 days after birth. We did a cross-sectional examination of white matter microstructure of the brain among healthy term infants as a function of gestational age via voxel-based analysis on fractional anisotropy.

RESULTS

Greater gestational age at birth in term infants was associated with larger fractional anisotropy values in early developing brain regions, when corrected for age at scan. Specifically, it was associated with a cluster located at the corpus callosum (corrected p<0.001), as well as another cluster spanning areas of the anterior corona radiata, anterior limb of internal capsule, and external capsule (corrected p<0.001).

CONCLUSIONS

Our findings show variation in brain maturation associated with gestational age amongst 'term' infants, with increased brain maturation when born with a relatively higher gestational age in comparison to those infants born with a relatively younger gestational age. Future studies should explore if these differences in brain maturation between 37 and 41 weeks of gestational age will persist over time due to development outside the womb.

摘要

目的

了解子宫内健康大脑发育对于检测发育障碍导致的异常发育轨迹至关重要。然而,在大多数研究中,神经影像学检查是在出生后的一段重要时期之后进行的,而在那些对胎儿进行神经影像学检查的研究中,由于孕期扫描的并发症,数据质量受到了影响。为了了解孕37 - 41周之间的健康大脑发育情况,我们的研究通过对出生后不久的健康足月儿进行弥散张量成像(DTI)扫描,评估了大脑在子宫内的生长情况。

方法

从新加坡的妇产医院招募了93名婴儿,在出生后5至17天进行弥散张量成像。我们通过基于体素的分数各向异性分析,对健康足月儿大脑白质微观结构进行了横断面检查,将其作为胎龄的函数。

结果

在对扫描时的年龄进行校正后,足月儿出生时胎龄越大,早期发育脑区的分数各向异性值越大。具体而言,它与位于胼胝体的一个簇相关(校正后p<0.001),以及另一个跨越放射冠前部、内囊前肢和外囊区域的簇相关(校正后p<0.001)。

结论

我们的研究结果表明,“足月儿”中与胎龄相关的大脑成熟存在差异,与胎龄相对较小的婴儿相比,胎龄相对较大时出生的婴儿大脑成熟度更高。未来的研究应探讨孕37至41周之间大脑成熟度的这些差异是否会由于子宫外的发育而随时间持续存在。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c529/4275243/4c333fc118f4/pone.0115229.g001.jpg

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