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矢状面前蹄不均匀与矢状面和额状面前后肢不对称力向量有关。

Sagittal plane fore hoof unevenness is associated with fore and hindlimb asymmetrical force vectors in the sagittal and frontal planes.

机构信息

Centre for Applied Sport and Exercise Sciences, University of Central Lancashire, Preston, United Kingdom.

Department of Biology, University of Antwerp, Wilrijk, Belgium.

出版信息

PLoS One. 2018 Aug 29;13(8):e0203134. doi: 10.1371/journal.pone.0203134. eCollection 2018.

Abstract

Asymmetry in forelimb dorsal hoof wall angles, termed unevenness, is associated with forelimb gait asymmetries, but compensatory mechanisms and out of plane ground reaction forces (GRFs) due to unevenness have yet to be documented. The aim of this study was therefore to investigate the effects of fore hoof unevenness on contralateral fore and hind limb force vectors patterns, in both sagittal and frontal planes. A group of n = 34 riding horses were classified into four groups: hoof angle difference of more than 1.5 degrees (UNEVEN; n = 27), including higher left fore (HIGH-LF; n = 12), higher right fore (HIGH-RF; n = 15), and hoof angle difference of less than 1.5 degrees (EVEN; n = 7). Three dimensional ground reaction forces GRFs were collected during trotting. GRF summary vectors representing the magnitude (VecMag) and angular direction (VecAng) of the entire stance phase in the sagittal and the frontal plane were calculated. The effects of unevenness on GRF production were explored using linear regression, repeated measures ANOVA and statistical parametric mapping (SPM) with significance at (P<0.05). In all uneven groups, increasing unevenness affected sagittal VecAng values in the forelimbs, with more propulsive GRF in the high hoof. In the HIGH-RF group, medial GRFs were also found in the high RF hoof compared to lateral GRFs in the low LF hoof (RF VecAng: 0.97±1.64 (deg); LF VecAng: -0.64±1.19 (deg); P<0.05). In both HIGH groups, compensatory associations to increasing unevenness were only found in the RH, but also a significantly greater lateral VecAng was found in the LH (P<0.05) compared to the RH limb. No significant differences (P>0.05) were found between hindlimb pairs in the EVEN group. Unbalanced sagittal and increased frontal plane GRFs in uneven horses suggest that they have greater locomotory challenges, as the equine musculoskeletal system is not constructed to withstand movement and loading in the frontal plane as effectively as it is in the sagittal plane.

摘要

前肢背侧蹄壁角度的不对称性,称为不均匀性,与前肢步态的不对称性有关,但由于不均匀性而产生的补偿机制和非平面地面反作用力(GRF)尚未被记录下来。因此,本研究的目的是研究前蹄不均匀性对矢状面和额状面中对侧前肢和后肢力矢量模式的影响。一组 n = 34 匹骑乘马被分为四组:蹄角差大于 1.5 度(不均匀;n = 27),包括左前蹄较高(HIGH-LF;n = 12),右前蹄较高(HIGH-RF;n = 15),蹄角差小于 1.5 度(均匀;n = 7)。在小跑过程中收集三维地面反作用力 GRF。计算了矢状面和额状面整个站立阶段的大小(VecMag)和角向(VecAng)的 GRF 综合向量。使用线性回归、重复测量方差分析和统计参数映射(SPM)来探索不均匀性对 GRF 产生的影响,显著性水平为(P<0.05)。在所有不均匀组中,不均匀度的增加会影响前肢的矢状面 VecAng 值,高蹄产生更多的推进性 GRF。在 HIGH-RF 组中,与低 LF 蹄相比,高 RF 蹄的内侧 GRF 也被发现(RF VecAng:0.97±1.64(度);LF VecAng:-0.64±1.19(度);P<0.05)。在两个 HIGH 组中,只有在 RH 中才发现了与不均匀度增加的补偿关联,但也发现 LH 的外侧 VecAng 显著大于 RH (P<0.05)。在 EVEN 组中,后肢对之间没有发现显著差异(P>0.05)。不均匀马的不平衡矢状面和增加的额状面 GRF 表明它们面临更大的运动挑战,因为马的骨骼肌肉系统的构造不能像在矢状面那样有效地承受平面运动和加载。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce9b/6114892/15b401eead26/pone.0203134.g001.jpg

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