Avian telencephalon and cerebellum volumes can be accurately estimated from digital brain endocasts.

IF 2.8 2区 生物学 Q2 BIOLOGY Biology Letters Pub Date : 2025-01-01 Epub Date: 2025-01-22 DOI:10.1098/rsbl.2024.0596
Aubrey R Keirnan, Felipe Cunha, Sara Citron, Gavin Prideaux, Andrew N Iwaniuk, Vera Weisbecker
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Abstract

For studies of the evolution of vertebrate brain anatomy and potentially associated behaviours, reconstructions of digital brain endocasts from computed tomography scans have revolutionized our capacity to collect neuroanatomical data. However, measurements from digital endocasts must be validated as reflecting actual brain anatomy, which is difficult because the collection of soft tissue information through histology is laborious and time-consuming. In birds, the reliability of digital endocast measurements as volume proxies for the two largest brain regions-the telencephalon and cerebellum-remains to be validated despite their use as proxies, e.g. of cognitive performance or flight ability. We here use the largest dataset of histology and digital endocasts to date, including 136 species from 25 avian orders, to compare digital endocast surface area measurements with actual brain volumes of the telencephalon, cerebellum and whole-brain endocast. Using linear and phylogenetically informed regression analyses, we demonstrate that endocast surfaces are strongly correlated with their brain volume counterparts for both absolute and relative size. This provides empirical support for using endocast-derived cerebellar and telencephalic surface areas in existing and future studies of living and extinct birds, with potential to expand to the dinosaur-bird transition in the future.

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鸟类端脑和小脑的体积可以通过数字脑内模准确估计。
为了研究脊椎动物大脑解剖学的进化和潜在的相关行为,通过计算机断层扫描重建数字大脑模型已经彻底改变了我们收集神经解剖学数据的能力。然而,来自数字模型的测量必须被验证为反映实际的大脑解剖结构,这是困难的,因为通过组织学收集软组织信息是费力和耗时的。在鸟类中,数字内胆测量作为两个最大的大脑区域——端脑和小脑——体积代理的可靠性仍有待验证,尽管它们被用作代理,例如认知表现或飞行能力。我们使用迄今为止最大的组织学和数字内质模型数据集,包括来自25个鸟类目的136个物种,将数字内质模型表面积测量值与端脑、小脑和全脑内质模型的实际脑体积进行比较。使用线性和系统发育信息回归分析,我们证明了内质表面在绝对和相对大小上与它们的脑容量密切相关。这为在现有和未来对现存和已灭绝鸟类的研究中使用内源性细胞衍生的小脑和端脑表面积提供了经验支持,并有可能在未来扩展到恐龙-鸟类的过渡。
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来源期刊
Biology Letters
Biology Letters 生物-进化生物学
CiteScore
5.50
自引率
3.00%
发文量
164
审稿时长
1.0 months
期刊介绍: Previously a supplement to Proceedings B, and launched as an independent journal in 2005, Biology Letters is a primarily online, peer-reviewed journal that publishes short, high-quality articles, reviews and opinion pieces from across the biological sciences. The scope of Biology Letters is vast - publishing high-quality research in any area of the biological sciences. However, we have particular strengths in the biology, evolution and ecology of whole organisms. We also publish in other areas of biology, such as molecular ecology and evolution, environmental science, and phylogenetics.
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