Department of Human Evolution, Max Planck Institute for Evolutionary Anthropology, Deutscher Platz 6, 04103 Leipzig, Germany.
Centre de Recherches sur la Paléobiodiversité et les Paléoenvironnements (CR2P, UMR 7207), Sorbonne Universités-MNHN, CNRS, UPMC-Paris6, Muséum national d'Histoire naturelle, CP38, 57 rue Cuvier, F-75005, Paris, France.
Sci Rep. 2016 Sep 8;6:32772. doi: 10.1038/srep32772.
The semicircular duct system is part of the sensory organ of balance and essential for navigation and spatial awareness in vertebrates. Its function in detecting head rotations has been modelled with increasing sophistication, but the biomechanics of actual semicircular duct systems has rarely been analyzed, foremost because the fragile membranous structures in the inner ear are hard to visualize undistorted and in full. Here we present a new, easy-to-apply and non-invasive method for three-dimensional in-situ visualization and quantification of the semicircular duct system, using X-ray micro tomography and tissue staining with phosphotungstic acid. Moreover, we introduce Ariadne, a software toolbox which provides comprehensive and improved morphological and functional analysis of any visualized duct system. We demonstrate the potential of these methods by presenting results for the duct system of humans, the squirrel monkey and the rhesus macaque, making comparisons with past results from neurophysiological, oculometric and biomechanical studies. Ariadne is freely available at http://www.earbank.org.
半规管系统是平衡感觉器官的一部分,对于脊椎动物的导航和空间感知至关重要。人们已经越来越深入地研究其检测头部旋转的功能,但是很少对实际的半规管系统的生物力学进行分析,这主要是因为内耳的脆弱膜状结构很难进行未失真的完整三维可视化。在这里,我们提出了一种新的、易于应用和非侵入性的三维原位可视化和定量分析半规管系统的方法,使用 X 射线微断层扫描和磷钨酸组织染色。此外,我们引入了一个名为 Ariadne 的软件工具箱,它为任何可视化的管道系统提供了全面和改进的形态和功能分析。我们通过展示人类、松鼠猴和恒河猴的管道系统的结果,并与神经生理学、眼动测量和生物力学研究的过去结果进行比较,展示了这些方法的潜力。Ariadne 可在 http://www.earbank.org 免费获取。