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电动跑步机和光学记录系统用于分析蝗虫的步态。

Motorized Treadmill and Optical Recording System for Gait Analysis of Grasshoppers.

机构信息

Department of Engineering Technology and Industrial Distribution, Texas A&M University, College Station, TX 77843, USA.

Department of Multidisciplinary Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

Sensors (Basel). 2021 Sep 5;21(17):5953. doi: 10.3390/s21175953.

Abstract

(1) Background: Insects, which serve as model systems for many disciplines with their unique advantages, have not been extensively studied in gait research because of the lack of appropriate tools and insect models to properly study the insect gaits. (2) Methods: In this study, we present a gait analysis of grasshoppers with a closed-loop custom-designed motorized insect treadmill with an optical recording system for quantitative gait analysis. We used the eastern lubber grasshopper, a flightless and large-bodied species, as our insect model. Gait kinematics were recorded and analyzed by making three grasshoppers walk on the treadmill with various speeds from 0.1 to 1.5 m/s. (3) Results: Stance duty factor was measured as 70-95% and decreased as walking speed increased. As the walking speed increased, the number of contact legs decreased, and diagonal arrangement of contact was observed at walking speed of 1.1 cm/s. (4) Conclusions: This pilot study of gait analysis of grasshoppers using the custom-designed motorized insect treadmill with the optical recording system demonstrates the feasibility of quantitative, repeatable, and real-time insect gait analysis.

摘要

(1) 背景:昆虫具有独特的优势,被广泛应用于多个学科的模型系统,但由于缺乏合适的工具和昆虫模型,昆虫步态研究尚未得到广泛开展。(2) 方法:本研究采用闭环定制电动昆虫跑步机和光学记录系统,对东方蝼蛄进行步态分析,以实现对昆虫步态的定量分析。我们选用不具备飞行能力且体型较大的东方蝼蛄作为昆虫模型。让三只东方蝼蛄以 0.1 至 1.5 m/s 的不同速度在跑步机上行走,记录并分析其运动学。(3) 结果:站立时相分数为 70-95%,随着行走速度的增加而降低。随着行走速度的增加,接触腿的数量减少,在 1.1 cm/s 的行走速度下观察到对角接触排列。(4) 结论:本研究使用定制的电动昆虫跑步机和光学记录系统对东方蝼蛄进行步态分析,证明了使用该系统进行定量、可重复和实时昆虫步态分析的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cfa/8434632/2c257082c593/sensors-21-05953-g001.jpg

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