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马匹跨越横杆小跑时的摆动期运动学

Swing phase kinematics of horses trotting over poles.

作者信息

Brown S, Stubbs N C, Kaiser L J, Lavagnino M, Clayton H M

机构信息

McPhail Equine Performance Center, College of Veterinary Medicine, Michigan State University, East Lansing, USA.

出版信息

Equine Vet J. 2015 Jan;47(1):107-12. doi: 10.1111/evj.12253. Epub 2014 Apr 9.

Abstract

REASONS FOR PERFORMING STUDY

Trotting over poles is used therapeutically to restore full ranges of limb joint motion. The mechanics of trotting over poles have not yet been described, hence quantitative evidence for the presumed therapeutic effects is lacking.

OBJECTIVES

To compare limb kinematics in horses trotting over level ground, over low poles and over high poles to determine changes in joint angulations and hoof flight arcs.

STUDY DESIGN

Repeated measures experimental study in sound horses.

METHODS

Standard motion analysis procedures with skin-fixed reflective markers were used to measure swing phase kinematics from 8 horses trotting on level ground, over low (11 cm) and high (20 cm) poles spaced 1.05 ± 0.05 m apart. Spatiotemporal variables and peak swing phase joint flexion angles were compared using repeated measures ANOVA (P<0.05) with Bonferroni correction for pairwise post hoc testing.

RESULTS

Peak heights of the fore and hind hooves increased significantly and progressively from no poles (fore: 13.8 ± 3.8 cm; hind: 10.8 ± 2.4 cm) to low poles (fore: 30.9 ± 4.9 cm; hind: 24.9 ± 3.7 cm) and to high poles (fore: 41.0 ± 3.9 cm; hind: 32.7 ± 4.0 cm). All joints of the fore- and hindlimbs contributed to the increase in hoof height through increased swing phase flexion. The hooves cleared the poles due to increases in joint flexion rather than by raising the body higher during the suspension phases of the stride.

CONCLUSIONS

The increases in swing phase joint flexions indicate that trotting over poles is effective for activating and strengthening the flexor musculature. Unlike the use of proprioceptive stimulation devices in which the effects decrease over time due to habituation, the horse is required to elevate the hooves to ensure clearance whenever poles are present. The need to raise the limbs sufficiently to clear the poles and place the hooves accurately requires visuomotor coordination, which may be useful in the rehabilitation of neurological cases. The Summary is available in Chinese - see Supporting information.

摘要

开展本研究的原因

跨越横杆小跑被用于治疗性恢复肢体关节的全范围活动。然而,跨越横杆小跑的力学原理尚未得到描述,因此缺乏关于假定治疗效果的定量证据。

目的

比较马匹在平地上、低横杆和高横杆上小跑时的肢体运动学,以确定关节角度和蹄飞行弧线的变化。

研究设计

对健康马匹进行重复测量的实验研究。

方法

采用带有皮肤固定反光标记的标准运动分析程序,测量8匹马在平地上、间距为1.05±0.05米的低(11厘米)横杆和高(20厘米)横杆上小跑时的摆动相运动学。使用重复测量方差分析(P<0.05)并采用Bonferroni校正进行两两事后检验,比较时空变量和摆动相峰值关节屈曲角度。

结果

前蹄和后蹄的峰值高度从无横杆(前蹄:13.8±3.8厘米;后蹄:10.8±2.4厘米)到低横杆(前蹄:30.9±4.9厘米;后蹄:24.9±3.7厘米)再到高横杆(前蹄:41.0±3.9厘米;后蹄:32.7±4.0厘米)显著且逐步增加。前肢和后肢的所有关节通过增加摆动相屈曲来促成蹄高度的增加。蹄子越过横杆是由于关节屈曲增加,而非在步幅的悬垂阶段将身体抬得更高。

结论

摆动相关节屈曲的增加表明跨越横杆小跑对于激活和加强屈肌肌群是有效的。与本体感觉刺激装置的使用不同,后者的效果会因习惯化而随时间降低,只要有横杆存在,马匹就需要抬高蹄子以确保越过。充分抬高肢体以越过横杆并准确放置蹄子的需求需要视觉运动协调,这可能对神经病例的康复有用。中文摘要见补充信息。

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