1Center for Neural Engineering.
Departments of2Engineering Science and Mechanics.
J Neurosurg Pediatr. 2021 Jul 9;28(4):458-468. doi: 10.3171/2021.2.PEDS201006. Print 2021 Oct 1.
The study of brain size and growth has a long and contentious history, yet normal brain volume development has yet to be fully described. In particular, the normal brain growth and cerebrospinal fluid (CSF) accumulation relationship is critical to characterize because it is impacted in numerous conditions of early childhood in which brain growth and fluid accumulation are affected, such as infection, hemorrhage, hydrocephalus, and a broad range of congenital disorders. The authors of this study aim to describe normal brain volume growth, particularly in the setting of CSF accumulation.
The authors analyzed 1067 magnetic resonance imaging scans from 505 healthy pediatric subjects from birth to age 18 years to quantify component and regional brain volumes. The volume trajectories were compared between the sexes and hemispheres using smoothing spline ANOVA. Population growth curves were developed using generalized additive models for location, scale, and shape.
Brain volume peaked at 10-12 years of age. Males exhibited larger age-adjusted total brain volumes than females, and body size normalization procedures did not eliminate this difference. The ratio of brain to CSF volume, however, revealed a universal age-dependent relationship independent of sex or body size.
These findings enable the application of normative growth curves in managing a broad range of childhood diseases in which cognitive development, brain growth, and fluid accumulation are interrelated.
脑容量和生长的研究历史悠久,充满争议,但正常脑容量的发育仍未得到充分描述。特别是正常脑生长和脑脊液(CSF)积累之间的关系至关重要,因为它会受到许多早期儿童疾病的影响,如感染、出血、脑积水以及广泛的先天性疾病。本研究旨在描述正常脑容量的增长,特别是在 CSF 积累的情况下。
作者分析了 505 名健康儿科受试者从出生到 18 岁的 1067 次磁共振成像扫描,以量化脑的各组成部分和区域的体积。使用平滑样条方差分析比较了性别和半球之间的体积轨迹。使用位置、比例和形状的广义加性模型来开发群体生长曲线。
脑容量在 10-12 岁达到峰值。男性的全脑体积比女性大,而身体大小的归一化处理并不能消除这种差异。然而,脑与 CSF 体积的比例揭示了一种普遍的与年龄相关的关系,与性别或身体大小无关。
这些发现使我们能够在管理广泛的儿童疾病时应用正常生长曲线,这些疾病的认知发展、脑生长和液体积累是相互关联的。