...
首页> 外文期刊>Journal of Neuroscience Methods >Nearly automatic motion capture system for tracking octopus arm movements in 3D space.
【24h】

Nearly automatic motion capture system for tracking octopus arm movements in 3D space.

机译:几乎自动的运动捕捉系统,用于跟踪章鱼手臂在3D空间中的运动。

获取原文
获取原文并翻译 | 示例
           

摘要

Tracking animal movements in 3D space is an essential part of many biomechanical studies. The most popular technique for human motion capture uses markers placed on the skin which are tracked by a dedicated system. However, this technique may be inadequate for tracking animal movements, especially when it is impossible to attach markers to the animal's body either because of its size or shape or because of the environment in which the animal performs its movements. Attaching markers to an animal's body may also alter its behavior. Here we present a nearly automatic markerless motion capture system that overcomes these problems and successfully tracks octopus arm movements in 3D space. The system is based on three successive tracking and processing stages. The first stage uses a recently presented segmentation algorithm to detect the movement in a pair of video sequences recorded by two calibrated cameras. In the second stage, the results of the first stage are processed to produce 2D skeletal representations of the moving arm. Finally, the 2D skeletons are used to reconstruct the octopus arm movement as a sequence of 3D curves varying in time. Motion tracking, segmentation and reconstruction are especially difficult problems in the case of octopus arm movements because of the deformable, non-rigid structure of the octopus arm and the underwater environment in which it moves. Our successful results suggest that the motion-tracking system presented here may be used for tracking other elongated objects.
机译:在3D空间中跟踪动物运动是许多生物力学研究的重要组成部分。人体动作捕捉的最流行技术是使用放置在皮肤上的标记,这些标记可以通过专用系统进行跟踪。但是,此技术可能不足以跟踪动物的运动,尤其是当由于其大小或形状或由于动物进行运动的环境而无法将标记物附着到动物身上时。将标记物附着到动物的身体上也可能会改变其行为。在这里,我们提出了一种几乎自动的无标记运动捕获系统,该系统克服了这些问题并成功地跟踪了章鱼手臂在3D空间中的运动。该系统基于三个连续的跟踪和处理阶段。第一阶段使用最近提出的分割算法来检测由两个校准摄像机记录的一对视频序列中的运动。在第二阶段中,处理第一阶段的结果以生成运动臂的2D骨骼表示。最后,将2D骨骼用于重建章鱼手臂的运动,使其成为随时间变化的3D曲线序列。在章鱼手臂运动的情况下,运动追踪,分割和重建是特别困难的问题,因为章鱼手臂的变形,非刚性结构以及它在其中运动的水下环境。我们的成功结果表明,此处介绍的运动跟踪系统可用于跟踪其他细长对象。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号