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检查小鼠特定 litter 变异性及其对神经发育研究的影响。

Examining litter specific variability in mice and its impact on neurodevelopmental studies.

机构信息

Integrated Program in Neuroscience, McGill University, Montreal, QC, Canada; Computional Brain Anatomy Laboratory, Cerebral Imaging Centre, Douglas Mental Health University Institute, Montreal, QC, Canada.

Integrated Program in Neuroscience, McGill University, Montreal, QC, Canada; Computional Brain Anatomy Laboratory, Cerebral Imaging Centre, Douglas Mental Health University Institute, Montreal, QC, Canada; Section On Developmental Neurogenomics, National Institute of Mental Health, Bethesda, MD, USA.

出版信息

Neuroimage. 2023 Apr 1;269:119888. doi: 10.1016/j.neuroimage.2023.119888. Epub 2023 Jan 19.

Abstract

Our current understanding of litter variability in neurodevelopmental studies using mice may limit translation of neuroscientific findings. Higher variance of measures across litters than within, often termed intra-litter likeness, may be attributable to both pre- and postnatal environment. This study aimed to assess the litter-effect within behavioral assessments (2 timepoints) and anatomy using T1-weighted magnetic resonance images across 72 brain region volumes (4 timepoints) (36 C57bl/6J inbred mice; 7 litters: 19F/17M). Between-litter comparisons of brain and behavioral measures and their associations were evaluated using univariate and multivariate techniques. A power analysis using simulation methods was then performed on modeled neurodevelopment and to evaluate trade-offs between number-of-litters, number-of-mice-per-litter, and sample size. Our results show litter-specific developmental effects, from the adolescent period to adulthood for brain structure volumes and behaviors, and for their associations in adulthood. Our power simulation analysis suggests increasing the number-of-litters in experimental designs to achieve the smallest total sample size necessary for detecting different rates of change in specific brain regions. Our results demonstrate how litter-specific effects may influence development and that increasing the litters to the total sample size ratio should be strongly considered when designing neurodevelopmental studies.

摘要

我们目前对使用小鼠进行神经发育研究中 litter 变异性的理解可能限制了神经科学发现的转化。在跨 litter 测量中比 within litter 测量具有更高的方差,通常称为 litter 内相似性,这可能归因于产前和产后环境。本研究旨在使用 T1 加权磁共振成像评估行为评估(2 个时间点)和解剖学中的 litter 效应,跨越 72 个脑区体积(4 个时间点)(36 只 C57bl/6J 近交系小鼠;7 窝:19 只 F/17 只 M)。使用单变量和多变量技术评估了 brain 和 behavioral 测量值及其关联的 litter 间比较。然后使用模拟方法对建模的神经发育进行了功效分析,以评估 litter 数量、每窝小鼠数量和样本大小之间的权衡。我们的结果显示了 litter 特异性的发育效应,从青春期到成年期,涉及脑结构体积和行为,以及成年期的关联。我们的功效模拟分析表明,在实验设计中增加 litter 的数量,可以实现检测特定脑区不同变化率所需的最小总样本量。我们的结果表明 litter 特异性效应如何影响发育,并且在设计神经发育研究时,应强烈考虑将 litter 增加到总样本大小的比例。

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