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一项研究蛇尾纲(棘皮动物门)二维手臂运动学的方法学探索。

A methodological exploration to study 2D arm kinematics in Ophiuroidea (Echinodermata).

作者信息

Goharimanesh Mona, Stöhr Sabine, Ghassemzadeh Fereshteh, Mirshamsi Omid, Adriaens Dominique

机构信息

Department of Biology, Ferdowsi University of Mashhad, Mashhad, Iran.

Research Group Evolutionary Morphology of Vertebrates, Ghent University, Ghent, Belgium.

出版信息

Front Zool. 2023 Apr 21;20(1):15. doi: 10.1186/s12983-023-00495-y.

Abstract

Brittle stars, unlike most other echinoderms, do not use their small tube feet for locomotion but instead use their flexible arms to produce a rowing or reverse rowing movement. They are among the fastest-moving echinoderms with the ability of complex locomotory behaviors. Considering the high species diversity and variability in morphotypes, a proper understanding of intra- and interspecies variation in arm flexibility and movement is lacking. This study focuses on the exploration of the methods to investigate the variability in brittle star locomotion and individual arm use. We performed a two-dimensional (2D) image processing on horizontal movement only. The result indicated that sinuosity, disc displacement and arm angle are important parameters to interpret ophiuroid locomotion. A dedicated Python script to calculate the studied movement parameters and visualize the results applicable to all 5-armed brittle stars was developed. These results can serve as the basis for further research in robotics inspired by brittle star locomotion.

摘要

与大多数其他棘皮动物不同,蛇尾不使用它们的小管足进行移动,而是利用其灵活的臂部产生划水或反向划水运动。它们是移动速度最快的棘皮动物之一,具有复杂的运动行为能力。考虑到蛇尾的高物种多样性和形态类型的变异性,目前缺乏对种内和种间臂部灵活性和运动变化的恰当理解。本研究聚焦于探索研究蛇尾运动变异性和单个臂部使用情况的方法。我们仅对水平运动进行了二维(2D)图像处理。结果表明,弯曲度、圆盘位移和臂角是解释蛇尾运动的重要参数。开发了一个专用的Python脚本,用于计算所研究的运动参数并可视化适用于所有五臂蛇尾的结果。这些结果可为受蛇尾运动启发的机器人技术的进一步研究提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4a1/10120178/533f6f15bea9/12983_2023_495_Fig1_HTML.jpg

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