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探讨对角解离和速度适度变化对小跑马运动参数的影响。

An exploration of the influence of diagonal dissociation and moderate changes in speed on locomotor parameters in trotting horses.

作者信息

Hobbs Sarah Jane, Bertram John E A, Clayton Hilary M

机构信息

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

Department of Cell Biology and Anatomy, Cumming School of Medicine, University of Calgary , Calgary , Alberta , Canada.

出版信息

PeerJ. 2016 Jun 30;4:e2190. doi: 10.7717/peerj.2190. eCollection 2016.

Abstract

Background. Although the trot is described as a diagonal gait, contacts of the diagonal pairs of hooves are not usually perfectly synchronized. Although subtle, the timing dissociation between contacts of each diagonal pair could have consequences on gait dynamics and provide insight into the functional strategies employed. This study explores the mechanical effects of different diagonal dissociation patterns when speed was matched between individuals and how these effects link to moderate, natural changes in trotting speed. We anticipate that hind-first diagonal dissociation at contact increases with speed, diagonal dissociation at contact can reduce collision-based energy losses and predominant dissociation patterns will be evident within individuals. Methods. The study was performed in two parts: in the first 17 horses performed speed-matched trotting trials and in the second, five horses each performed 10 trotting trials that represented a range of individually preferred speeds. Standard motion capture provided kinematic data that were synchronized with ground reaction force (GRF) data from a series of force plates. The data were analyzed further to determine temporal, speed, GRF, postural, mass distribution, moment, and collision dynamics parameters. Results. Fore-first, synchronous, and hind-first dissociations were found in horses trotting at (3.3 m/s ± 10%). In these speed-matched trials, mean centre of pressure (COP) cranio-caudal location differed significantly between the three dissociation categories. The COP moved systematically and significantly (P = .001) from being more caudally located in hind-first dissociation (mean location = 0.41 ± 0.04) through synchronous (0.36 ± 0.02) to a more cranial location in fore-first dissociation (0.32 ± 0.02). Dissociation patterns were found to influence function, posture, and balance parameters. Over a moderate speed range, peak vertical forelimb GRF had a strong relationship with dissociation time (R = .594; P < .01) and speed (R = .789; P < .01), but peak vertical hindlimb GRF did not have a significant relationship with dissociation time (R = .085; P > 0.05) or speed (R = .223; P = .023). Discussion. The results indicate that at moderate speeds individual horses use dissociation patterns that allow them to maintain trunk pitch stability through management of the cranio-caudal location of the COP. During the hoof-ground collisions, reduced mechanical energy losses were found in hind-first dissociations compared to fully synchronous contacts. As speed increased, only forelimb vertical peak force increased so dissociations tended towards hind-first, which shifted the net COP caudally and balanced trunk pitching moments.

摘要

背景。尽管快步被描述为一种对角步态,但对角的蹄对接触通常并非完全同步。尽管很细微,但每对对角接触之间的时间差异可能会对步态动力学产生影响,并有助于深入了解所采用的功能策略。本研究探讨了个体速度匹配时不同对角差异模式的力学效应,以及这些效应如何与快步速度的适度自然变化相关联。我们预计,接触时后蹄先着地的对角差异会随着速度增加,接触时的对角差异可减少基于碰撞的能量损失,并且个体内主要的差异模式将很明显。方法。该研究分两部分进行:第一部分中,17匹马进行了速度匹配的快步试验;第二部分中,5匹马各自进行了10次快步试验,这些试验代表了一系列个体偏好的速度。标准运动捕捉提供了与来自一系列测力板的地面反作用力(GRF)数据同步的运动学数据。对数据进行进一步分析,以确定时间、速度、GRF、姿势、质量分布、力矩和碰撞动力学参数。结果。在以(3.3米/秒±10%)速度快步的马匹中发现了前蹄先着地、同步和后蹄先着地的差异。在这些速度匹配的试验中,三个差异类别之间的平均压力中心(COP)在颅尾位置上有显著差异。COP系统地且显著地(P = 0.001)从后蹄先着地时更靠尾侧的位置(平均位置 = 0.41±0.04)经过同步(0.36±0.02)移动到前蹄先着地时更靠颅侧的位置(0.32±0.02)。发现差异模式会影响功能、姿势和平衡参数。在适度的速度范围内,前肢垂直GRF峰值与差异时间(R = 0.594;P < 0.01)和速度(R = 0.789;P < 0.01)有很强的关系,但后肢垂直GRF峰值与差异时间(R = 0.085;P > 0.05)或速度(R = 0.223;P = 0.023)没有显著关系。讨论。结果表明,在适度速度下,个体马匹使用差异模式,通过管理COP的颅尾位置来维持躯干俯仰稳定性。在蹄与地面碰撞期间,与完全同步接触相比,后蹄先着地的差异中发现机械能损失减少。随着速度增加,只有前肢垂直峰值力增加,因此差异倾向于后蹄先着地,这使净COP向尾侧移动并平衡躯干俯仰力矩。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9847/4933092/c8c0e4674f4b/peerj-04-2190-g001.jpg

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