Department of Neurology, Washington University School of Medicine, Saint Louis, MO, USA.
Mallinckrodt Institute of Radiology, Washington University School of Medicine, Saint Louis, MO, USA.
Cereb Cortex. 2019 Mar 1;29(3):1174-1184. doi: 10.1093/cercor/bhy023.
Cortical resting state networks have been consistently identified in infants using resting state-functional connectivity magnetic resonance imaging (rs-fMRI). Comparable studies in adults have demonstrated cerebellar components of well-established cerebral networks. However, there has been limited investigation of early cerebellar functional connectivity. We acquired non-sedated rs-fMRI data in the first week of life in 57 healthy, term-born infants and at term-equivalent postmenstrual age in 20 very preterm infants (mean birth gestational age 27 ± 2 weeks) without significant cerebral or cerebellar injury. Seed correlation analyses were performed using regions of interests spanning the cortical and subcortical gray matter and cerebellum. Parallel analyses were performed using rs-fMRI data acquired in 100 healthy adults. Our results demonstrate that cortico-cerebellar functional connectivity is well-established by term. Intra- and cortico-cerebellar functional connectivity were largely similar in infants and adults. However, infants showed more functional connectivity structure within the cerebellum, including stronger homotopic correlations and more robust anterior-posterior anticorrelations. Prematurity was associated with reduced correlation magnitudes, but no alterations in intra- and cortico-cerebellar functional connectivity topography. These results add to the growing evidence that the cerebellum plays an important role in shaping early brain development during infancy.
皮质静息态网络在使用静息态功能磁共振成像(rs-fMRI)的婴儿中得到了一致的识别。在成人中进行的类似研究表明,小脑是成熟大脑网络的组成部分。然而,对早期小脑功能连接的研究有限。我们在 57 名健康足月出生的婴儿生命的第一周和 20 名非常早产儿(平均出生胎龄为 27 ± 2 周)生命的第一周采集了非镇静 rs-fMRI 数据,这些早产儿没有明显的大脑或小脑损伤。使用跨越皮质和皮质下灰质以及小脑的感兴趣区域进行种子相关分析。使用 100 名健康成年人的 rs-fMRI 数据进行平行分析。我们的结果表明,皮质小脑功能连接在足月时已经很好地建立。婴儿和成年人的内-皮质小脑功能连接非常相似。然而,婴儿的小脑内功能连接结构更多,包括更强的同型相关性和更稳健的前后反向相关性。早产儿与相关性幅度降低有关,但内-皮质小脑功能连接的拓扑结构没有改变。这些结果增加了越来越多的证据表明,小脑在塑造婴儿期早期大脑发育中起着重要作用。