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Locomotor head movements and semicircular canal morphology in primates.

机译:灵长类动物的运动头部运动和半规管形态。

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摘要

Animal locomotion causes head rotations, which are detected by the semicircular canals of the inner ear. Morphologic features of the canals influence rotational sensitivity, and so it is hypothesized that locomotion and canal morphology are functionally related. Most prior research has compared subjective assessments of animal "agility" with a single determinant of rotational sensitivity: the mean canal radius of curvature (R). In fact, the paired variables of R and body mass are correlated with agility and have been used to infer locomotion in extinct species. To refine models of canal functional morphology and to improve locomotor inferences for extinct species, we compare 3D vector measurements of head rotation during locomotion with 3D vector measures of canal sensitivity. Contrary to the predictions of conventional models that are based upon R, we find that axes of rapid head rotation are not aligned with axes of either high or low sensitivity. Instead, animals with fast head rotations have similar sensitivities in all directions, which they achieve by orienting the three canals of each ear orthogonally (i.e., along planes at 90° angles to one another). The extent to which the canal configuration approaches orthogonality is correlated with rotational head speed independent of body mass and phylogeny, whereas R is not.
机译:动物的运动引起头部旋转,这种旋转被内耳的半圆形通道检测到。运河的形态特征会影响旋转敏感性,因此可以假设运动和运河形态在功能上相关。大多数先前的研究已经将对动物“敏捷性”的主观评估与旋转敏感性的一个决定因素:平均管曲率半径(R)进行了比较。实际上,成对的R和体重变量与敏捷性相关,已被用于推断灭绝物种的运动。为了完善运河功能形态模型并改善绝种物种的运动推断,我们将运动过程中头部旋转的3D矢量测量与3D矢量测量的运河敏感性进行了比较。与基于R的传统模型的预测相反,我们发现头部快速旋转的轴与高灵敏度或低灵敏度的轴均不对齐。取而代之的是,具有快速头旋转的动物在所有方向上都具有相似的敏感性,这是通过使每只耳朵的三个耳道正交(即沿彼此成90°角的平面)定向来实现的。根管构型接近正交的程度与旋转头速度相关,而独立于体重和系统发育,而R则不然。

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