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在行走昆虫的所有腿部关节中进行计算机辅助的 3D 运动学分析。

Computer-assisted 3D kinematic analysis of all leg joints in walking insects.

机构信息

Department of Biology, Case Western Reserve University, Cleveland, Ohio, United States of America.

出版信息

PLoS One. 2010 Oct 26;5(10):e13617. doi: 10.1371/journal.pone.0013617.

Abstract

High-speed video can provide fine-scaled analysis of animal behavior. However, extracting behavioral data from video sequences is a time-consuming, tedious, subjective task. These issues are exacerbated where accurate behavioral descriptions require analysis of multiple points in three dimensions. We describe a new computer program written to assist a user in simultaneously extracting three-dimensional kinematics of multiple points on each of an insect's six legs. Digital video of a walking cockroach was collected in grayscale at 500 fps from two synchronized, calibrated cameras. We improved the legs' visibility by painting white dots on the joints, similar to techniques used for digitizing human motion. Compared to manual digitization of 26 points on the legs over a single, 8-second bout of walking (or 106,496 individual 3D points), our software achieved approximately 90% of the accuracy with 10% of the labor. Our experimental design reduced the complexity of the tracking problem by tethering the insect and allowing it to walk in place on a lightly oiled glass surface, but in principle, the algorithms implemented are extensible to free walking. Our software is free and open-source, written in the free language Python and including a graphical user interface for configuration and control. We encourage collaborative enhancements to make this tool both better and widely utilized.

摘要

高速视频可以提供动物行为的细粒度分析。然而,从视频序列中提取行为数据是一项耗时、繁琐且主观的任务。在需要分析三维空间中的多个点来获得准确的行为描述的情况下,这些问题会更加严重。我们描述了一个新的计算机程序,用于协助用户同时提取昆虫六条腿上多个点的三维运动学。使用两个同步校准的摄像机以 500 fps 的速度采集灰度级行走蟑螂的数字视频。我们通过在关节上绘制白色圆点来提高腿部的可见度,类似于用于数字化人体运动的技术。与手动数字化单个 8 秒行走过程中的 26 个腿部点(或 106496 个单独的 3D 点)相比,我们的软件在劳动量减少 90%的情况下达到了大约 90%的准确性。我们的实验设计通过系住昆虫并允许其在涂有轻油的玻璃表面上原地行走,从而减少了跟踪问题的复杂性,但原则上,所实现的算法可扩展到自由行走。我们的软件是免费的开源软件,用免费语言 Python 编写,并包含用于配置和控制的图形用户界面。我们鼓励协作增强功能,使这个工具更好用且被广泛使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d99c/2964314/bc2d74be1a98/pone.0013617.g001.jpg

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