Pardey David, Tabor Gillian, Oxley James Andrew, Wills Alison P
Animal Welfare Research and Knowledge Exchange Arena, Department of Animal and Agriculture, Hartpury University Centre, Gloucester, UK.
Independent Researcher, Measham, Swadlincote, UK.
Vet Rec. 2018 Jun 23;182(25):716. doi: 10.1136/vr.104788. Epub 2018 Apr 5.
Many dog owners allow their pets to jump out of a car boot; however, to date, there has been no study that has investigated whether this places dogs at risk of injury. The aim of this study was to investigate the relationship between height and peak vertical ground reaction force (vGRF) in static start jumps. Fifteen healthy adult dogs performed three jumps from a platform that represented common vehicle boot sill heights (0.55, 0.65, 0.75 m), landing on a single force platform. Kinetic data (mediolateral (Fx), craniocaudal (Fy) and vertical (Fz)) were normalised for body weight and analysed via a one-way repeated analysis of variance (ANOVA) and pairwise post hoc tests with a Bonferroni correction applied. There was a significant difference in peak forelimb vGRF between both the 0.55 m (27.35±4.14 N/kg) and the 0.65 m (30.84±3.66 N/kg) platform (P=0.001) and between the 0.65 and 0.75 m (34.12±3.63 N/kg) platform (P=0.001). There was no significant difference in mediolateral or craniocaudal forces between the heights examined. These results suggest that allowing dogs to jump from bigger cars with a higher boot sill may result in augmented levels of loading on anatomical structures. Further research is required to investigate the kinematic effects of height on static jump-down and how peak forelimb vGRF relates to anatomical loading and subsequent injury risk.
许多狗主人会让他们的宠物从汽车后备箱跳出去;然而,迄今为止,尚无研究调查过这样做是否会使狗面临受伤风险。本研究的目的是调查静态起跳中高度与垂直地面峰值反作用力(vGRF)之间的关系。15只健康成年犬从代表常见汽车后备箱门槛高度(0.55、0.65、0.75米)的平台上进行三次跳跃,落在单个测力平台上。将动力学数据(内外侧(Fx)、头尾向(Fy)和垂直方向(Fz))进行体重归一化,并通过单因素重复方差分析(ANOVA)和采用Bonferroni校正的成对事后检验进行分析。在0.55米(27.35±4.14牛/千克)和0.65米(30.84±3.66牛/千克)平台之间(P=0.001)以及0.65米和0.75米(34.12±3.63牛/千克)平台之间(P=0.001),前肢vGRF峰值存在显著差异。在所检查的高度之间,内外侧或头尾向力没有显著差异。这些结果表明,允许狗从后备箱门槛较高的较大汽车上跳下,可能会导致解剖结构上的负荷增加。需要进一步研究来调查高度对静态跳下的运动学影响,以及前肢vGRF峰值与解剖学负荷和后续受伤风险之间的关系。