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不同速度直线行走的鹅头颈运动特征研究

Study on the characteristics of head and neck movements of geese walking in a straight line at different speeds.

作者信息

Wang Jiajia, Zhang Zheng, Jiang Xinming, Huang Dongyan, Song Wei, Zhang Fu, Qian Zhihui, Ren Lei, Ren Luquan

机构信息

College of Engineering and Technology, Jilin Agricultural University, Changchun, China.

College of Agricultural Equipment Engineering, Henan University of Science and Technology, Luoyang, China.

出版信息

Front Vet Sci. 2025 May 30;12:1554240. doi: 10.3389/fvets.2025.1554240. eCollection 2025.

Abstract

BACKGROUND

The avian cervical spine, a crucial anatomical structure connecting the cephalic and thoracic regions, serves a critical function in maintaining visual stability during locomotion. Extensive studies have documented characteristic head-bobbing behavior in small-bodied avian species (e.g., and ) during terrestrial movement. However, the kinematic patterns of during ambulation across varying velocity parameters remain unexplored in current literature.

OBJECTIVE

To investigate whether head bobbing occurs during head and neck movements; to analyze differences between head and neck movement characteristics under different walking speeds.

METHODS

High-speed photography equipment was used to obtain images of domestic geese in different linear walking states (slow walking, normal walking, and fast walking) and to analyze gait changes and head-neck movement characteristics under varying movement states.

RESULT

The results demonstrate that domestic geese exhibit nodding behavior similar to other birds, comprising thrust and hold phases. During a full nodding cycle, the thrust phase lasted significantly longer than the hold phase. Furthermore, the closer a goose's neck joint is to the trunk, the greater the joint angle variation observed across three motion states. This indicates that neck nodding depends on lower cervical joint motion. Concurrent analysis of head trajectories revealed horizontal stability during locomotion, with vertical fluctuation amplitude progressively decreasing as movement speed increased.

摘要

背景

鸟类颈椎是连接头部和胸部区域的关键解剖结构,在运动过程中对维持视觉稳定性起着至关重要的作用。大量研究记录了小型鸟类物种(如……)在陆地移动时典型的头部摆动行为。然而,目前文献中尚未探讨……在不同速度参数下行走时的运动模式。

目的

研究头部和颈部运动时是否会出现头部摆动;分析不同步行速度下头部和颈部运动特征的差异。

方法

使用高速摄影设备获取家鹅在不同直线行走状态(慢走、正常行走和快走)下的图像,并分析不同运动状态下的步态变化和头颈运动特征。

结果

结果表明,家鹅表现出与其他鸟类相似的点头行为,包括前推和保持阶段。在一个完整的点头周期中,前推阶段持续时间明显长于保持阶段。此外,鹅的颈部关节离躯干越近,在三种运动状态下观察到的关节角度变化就越大。这表明颈部点头依赖于下颈椎关节的运动。对头部轨迹的同步分析显示,运动过程中水平方向稳定,垂直波动幅度随着运动速度的增加而逐渐减小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c624/12162510/a0bf2bdcd1f9/fvets-12-1554240-g0001.jpg

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