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外部机械扰动会挑战犬类的姿势稳定性。

External mechanical perturbations challenge postural stability in dogs.

作者信息

Lutonsky Christiane, Peham Christian, Mucha Marion, Reicher Bianca, Gaspar Rita, Tichy Alexander, Bockstahler Barbara

机构信息

Department of Companion Animals and Horses, University Clinic for Small Animals, Small Animal Surgery, Section of Physical Therapy, University of Veterinary Medicine, Vienna, Austria.

Department of Companion Animals and Horses, University Clinic for Horses, Movement Science Group, University of Veterinary Medicine, Vienna, Austria.

出版信息

Front Vet Sci. 2023 Sep 18;10:1249951. doi: 10.3389/fvets.2023.1249951. eCollection 2023.

Abstract

This study aimed to explore the effect of external mechanical perturbations on postural stability (PS) in dogs using the body center of pressure (COP). Thirteen sound adult dogs were included in this study. PS was tested during quiet standing on a pressure measurement plate. The conditions included a standard standing measurement and external mechanical perturbations conducted using six settings on a motorized training platform with different intensities of speed and amplitude. Measurement conditions were compared using linear mixed-effects models, followed by multiple comparisons using Sidak's alpha correction procedure. Compared with the standing measurement, external mechanical perturbations resulted in a significant increase in almost all COP parameters, indicating a challenge for the PS. Furthermore, an increase in amplitude had a greater effect than an increase in speed, whereas the combination of the highest intensities of amplitude and speed was not well tolerated by the dogs. The mediolateral COP displacement was significantly greater than the craniocaudal COP displacement during standing measurement and conditions with a small amplitude, whereas no significant difference was observed during settings with an increased amplitude. To the best of our knowledge, this is the first study to demonstrate the effects of a balance training device in dogs. Therefore, the intensity of the training programs on motorized platforms or similar devices can be controlled by the wobbling amplitude of the platform.

摘要

本研究旨在利用压力中心(COP)探讨外部机械扰动对犬姿势稳定性(PS)的影响。本研究纳入了13只健康成年犬。在压力测量板上安静站立期间对PS进行测试。测试条件包括标准站立测量以及在电动训练平台上使用六种不同速度和幅度强度设置进行的外部机械扰动。使用线性混合效应模型比较测量条件,随后使用Sidak's α校正程序进行多重比较。与站立测量相比,外部机械扰动几乎导致所有COP参数显著增加,表明对PS构成挑战。此外,幅度增加比速度增加的影响更大,而幅度和速度的最高强度组合犬不能很好耐受。在站立测量和小幅度条件下,COP的内外侧位移显著大于前后位移,而在幅度增加的设置中未观察到显著差异。据我们所知,这是第一项证明平衡训练装置对犬影响的研究。因此,电动平台或类似装置上训练计划的强度可通过平台的摆动幅度来控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e678/10544342/89e65bba5906/fvets-10-1249951-g001.jpg

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