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Variation in avian brain shape: Relationship with size and orbital shape

机译:禽脑形状的变化:与大小和眼眶形状的关系

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There is wide variation in brain shape among birds. Differences in brain dimensions reflect species-specific sensory capacities and behavioral repertoires that are shaped by environmental and biological factors during evolution. Most previous studies aimed at defining factors impacting brain shape have used volumetric or linear measurements. However, few have explored the quantitative indices of three-dimensional (3D) brain geometry that are absolutely imperative to understanding avian evolutionary history. This study aimed: (i) to explore the relationship between brain shape and overall brain size; and (ii) to assess the relationship between brain shape and orbital shape. Avian brain endocasts were reconstructed from computed tomography images and analyzed using 3D geometric morphometrics. Principal component analysis revealed dominant regional variations in avian brain shape and shape correlations between the telencephalon and cerebellum, between the cerebellum and myelencephalon, and between the diencephalon and optic tectum. Brain shape changes relative to total brain size were determined by multivariate regression analysis. Larger brain size was associated with a relatively slender telencephalon and differences in brain orientation. The correlation between brain shape and orbital shape was assessed by two-block partial least-squares analysis. Relatively round brains with a ventrally flexed brain base were associated with rounder orbits, while narrower brains with a flat brain base were associated with more elongated orbits. The shapes of functionally associated avian brain regions are correlated, and orbital size and shape are dominant factors influencing the overall shape of the avian brain.
机译:鸟类之间的大脑形状差异很大。脑尺寸的差异反映了物种特定的感觉能力和行为方式,这些方式在进化过程中受环境和生物因素的影响。以前大多数旨在定义影响大脑形状的因素的研究都使用了体积或线性测量。但是,很少有人探索三维(3D)大脑几何结构的定量指标,这些指标对于理解禽类的进化史绝对必要。这项研究的目的是:(i)探索大脑形状与整体大脑大小之间的关系; (ii)评估大脑形状与眼眶形状之间的关系。从计算机断层扫描图像重建禽类脑内窥镜,并使用3D几何形态计量学进行分析。主成分分析显示,禽脑形状以及端脑与小脑之间,小脑与髓脑​​之间以及中脑与视神经顶盖之间的形状相关性存在显着区域差异。通过多元回归分析确定相对于总大脑大小的大脑形状变化。较大的大脑大小与相对细长的脑神经和大脑方向的差异有关。通过两段式偏最小二乘分析评估大脑形状与眼眶形状之间的相关性。脑基部呈圆形的相对圆形的大脑与较圆的轨道相关,而脑基部较平坦的较窄的大脑与较细长的轨道相关。功能相关的禽脑区域的形状是相关的,并且轨道大小和形状是影响禽脑整体形状的主要因素。

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