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高水平盛装舞步赛马奔跑时胸腰荐区的差动旋转运动和对称性值。

Differential rotational movement and symmetry values of the thoracolumbosacral region in high-level dressage horses when trotting.

机构信息

Centaur Biomechanics, Moreton Morrell, Warwickshire, United Kingdom.

Department of Clinical Science and Services, The Royal Veterinary College, Hatfield, United Kingdom.

出版信息

PLoS One. 2021 May 6;16(5):e0251144. doi: 10.1371/journal.pone.0251144. eCollection 2021.

Abstract

High-level dressage horses regularly perform advanced movements, requiring coordination and force transmission between front and hind limbs across the thoracolumbosacral region. This study aimed at quantifying kinematic differences in dressage horses when ridden in sitting trot-i.e. with additional load applied in the thoracolumbar region-compared with trotting in-hand. Inertial sensors were glued on to the midline of the thoracic (T) and lumbar (L) spine at T5, T13, T18, L3 and middle of the left and right tubera sacrale of ten elite dressage horses (Mean±SD), age 11±1 years, height 1.70±0.10m and body mass 600±24kg; first trotted in-hand, then ridden in sitting trot on an arena surface by four Grand Prix dressage riders. Straight-line motion cycles were analysed using a general linear model (random factor: horse; fixed factor: exercise condition; covariate: stride time, Bonferroni post hoc correction: P<0.05). Differential roll, pitch and yaw angles between adjacent sensors were calculated. In sitting trot, compared to trotting in-hand, there was increased pitch (mean±S.D), (in-hand, 3.9 (0.5°, sitting trot 6.3 (0.3°, P = <0.0001), roll (in-hand, 7.7 (1.1°, sitting trot 11.6 (0.9°, P = 0.003) and heading values (in-hand, 4.2 (0.8), sitting trot 9.5 (0.6°, P = <0.0001) in the caudal thoracic and lumbar region (T18-L3) and a decrease in heading values (in-hand, 7.1 (0.5°, sitting trot 5.2 (0.3°, P = 0.01) in the cranial thoracic region (T5-T13). Kinematics of the caudal thoracic and lumbar spine are influenced by the rider when in sitting trot, whilst lateral bending is reduced in the cranial thoracic region. This biomechanical difference with the addition of a rider, emphasises the importance of observing horses during ridden exercise, when assessing them as part of a loss of performance assessment.

摘要

高水平盛装舞步马经常进行高级动作,需要在前肢和后肢之间协调力量传递,跨越胸腰椎区域。本研究旨在量化盛装舞步马在骑乘坐姿快步时(即胸腰椎区域施加额外负荷)与自由跑步时的运动学差异。惯性传感器被粘贴在 10 匹精英盛装舞步马的胸椎(T)和腰椎(L)脊柱中线的 T5、T13、T18、L3 和左侧和右侧骶骨结节中间(均数±标准差),年龄 11±1 岁,身高 1.70±0.10m,体重 600±24kg;首先自由跑步,然后由四位大奖赛盛装舞步骑手骑乘坐姿快步在竞技场表面跑步。使用一般线性模型(随机因子:马;固定因子:运动条件;协变量:步幅时间,Bonferroni 事后校正:P<0.05)分析直线运动周期。计算相邻传感器之间的差动滚动、俯仰和偏航角度。与自由跑步相比,坐姿快步时,相邻传感器之间的俯仰角(均数±标准差)增加(自由跑步,3.9(0.5°),坐姿快步 6.3(0.3°),P<0.0001),滚动角(自由跑步,7.7(1.1°),坐姿快步 11.6(0.9°),P=0.003)和头部角度(自由跑步,4.2(0.8°),坐姿快步 9.5(0.6°),P<0.0001)在尾胸和腰椎区(T18-L3),而头部角度减小(自由跑步,7.1(0.5°),坐姿快步 5.2(0.3°),P=0.01)在胸区(T5-T13)。坐姿快步时,骑手会影响尾胸和腰椎的运动学,而胸区的横向弯曲减少。在增加骑手的情况下,这种生物力学差异强调了在评估马匹作为运动性能下降评估的一部分时,在骑乘运动中观察马匹的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9159/8101941/2de706a41a0d/pone.0251144.g001.jpg

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