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Pressure and force on the canine neck when exercised using a collar and leash

机译:用项圈和皮带锻炼时对犬脖子的压力和作用力

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The aim of this study was to assess the pressure and force applied to the canine neck at walk when using collars of different material. Three different collars of equal size but different construction were used. A double-layer polyester and nylon weave (DN), a single layer nylon weave (SN), and a single layer canvas (SC). Eight dogs wore all three types of collar and were led in a randomized order through a course containing straight, clockwise and counterclockwise sections. Force and pressure were measured and recorded using a Tekscansup?/sup F-Scan In-shoe system and analyzed using SPSS statistical software. Peak force and contact pressure were significantly higher under DN collar when compared with the others ( p ??0.0005 and p ?=?0.001, respectively). Whilst differences in mean force were not observed between collars, there were significant differences depending on the direction of travel of the dog ( p ??0.0005), being highest in a counter-clockwise direction, and lowest in a straight line. Peak contact pressure was not significantly different in any condition. Results suggest that collar construction material will alter contact pressures and peak force exerted on the neck, and that a double layer nylon weave collar with ethylene-vinyl acetate cushioning has a higher contact pressure than either a single layer nylon or canvas construction, which may be contrary to an owners expectations when purchasing a collar. Furthermore, forces will vary depending on the direction of travel in relation to the handler.
机译:这项研究的目的是评估使用不同材质的项圈时在步行时对犬颈施加的压力和作用力。使用了三个大小相同但结构不同的不同项圈。双层聚酯和尼龙编织(DN),单层尼龙编织(SN)和单层帆布(SC)。八只狗都穿着这三种类型的项圈,并以随机的顺序被引导通过一个包含笔直,顺时针和逆时针部分的路线。使用Tekscan ? F-Scan鞋内系统测量和记录力和压力,并使用SPSS统计软件进行分析。与其他相比,DN套环下的峰值力和接触压力明显更高(分别为p 0.0005和p <= 0.001)。虽然在项圈之间没有观察到平均力的差异,但是根据狗的行进方向存在显着差异(p≤<0.0005),在逆时针方向上最高,而在直线上最低。在任何情况下,峰值接触压力均无显着差异。结果表明,领子结构材料将改变施加在脖子上的接触压力和峰值力,并且带有乙烯-醋酸乙烯酯缓冲层的双层尼龙编织衣领比单层尼龙或帆布结构具有更高的接触压力。与业主购买衣领时的期望相反。此外,力将根据相对于处理器的行进方向而变化。

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