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神经进化证据表明灵长类动物大脑形状具有普适的分形特征。

Neuro-evolutionary evidence for a universal fractal primate brain shape.

机构信息

CNNP Lab (https://www.cnnp-lab.com), School of Computing, Newcastle University, Newcastle upon Tyne, United Kingdom.

Faculty of Medical Sciences, Newcastle University, Newcastle upon Tyne, United Kingdom.

出版信息

Elife. 2024 Sep 30;12:RP92080. doi: 10.7554/eLife.92080.

Abstract

The cerebral cortex displays a bewildering diversity of shapes and sizes across and within species. Despite this diversity, we present a universal multi-scale description of primate cortices. We show that all cortical shapes can be described as a set of nested folds of different sizes. As neighbouring folds are gradually merged, the cortices of 11 primate species follow a common scale-free morphometric trajectory, that also overlaps with over 70 other mammalian species. Our results indicate that all cerebral cortices are approximations of the archetypal fractal shape with a fractal dimension of = 2.5. Importantly, this new understanding enables a more precise quantification of brain morphology as a function of scale. To demonstrate the importance of this new understanding, we show a scale-dependent effect of ageing on brain morphology. We observe a more than fourfold increase in effect size (from two standard deviations to eight standard deviations) at a spatial scale of approximately 2 mm compared to standard morphological analyses. Our new understanding may, therefore, generate superior biomarkers for a range of conditions in the future.

摘要

大脑皮层在不同物种和同一物种内呈现出令人眼花缭乱的形状和大小多样性。尽管存在这种多样性,我们还是提出了一种普适的多尺度描述灵长类皮层的方法。我们表明,所有皮层形状都可以描述为一组不同大小的嵌套褶皱。随着相邻褶皱逐渐融合,11 种灵长类动物的皮层遵循一个共同的无标度形态测量轨迹,该轨迹也与 70 多种其他哺乳动物物种重叠。我们的研究结果表明,所有大脑皮层都是具有分形维数为 = 2.5 的原型分形形状的近似物。重要的是,这种新的认识可以更精确地量化大脑形态作为尺度的函数。为了证明这种新的认识的重要性,我们展示了年龄对大脑形态的尺度依赖性影响。与标准形态分析相比,我们观察到在大约 2 毫米的空间尺度上,效应大小(从两个标准差增加到八个标准差)增加了四倍以上。因此,我们的新认识可能会在未来为一系列疾病产生更好的生物标志物。

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