诱导负重后肢跛行的马匹在跑步机上小跑时的代偿性负荷再分配

Compensatory load redistribution of horses with induced weightbearing hindlimb lameness trotting on a treadmill.

作者信息

Weishaupt M A, Wiestner T, Hogg H P, Jordan P, Auer J A

机构信息

Equine Hospital, Vetsuisse Faculty, University of Zurich, Winterthurerstrasse 260, CH-8057 Zurich, Switzerland.

出版信息

Equine Vet J. 2004 Dec;36(8):727-33. doi: 10.2746/0425164044848244.

Abstract

REASONS FOR PERFORMING STUDY

The compensatory mechanisms of horses with weightbearing hindlimb lameness are still not fully understood.

HYPOTHESIS

That weightbearing, unilateral hindlimb lameness would not only alter stride characteristics to diminish structural stress in the affected limb but also induce compensatory load adjustments in the other supporting limbs.

OBJECTIVE

To document the load and time shifting mechanisms of horses with unilateral weightbearing hindlimb lameness.

METHODS

Reversible lameness was induced in 8 clinically sound horses by applying a solar pressure model. Three degrees of lameness (subtle, mild and moderate) were induced and compared with the nonlame (sound) control measurement. Vertical ground reaction forces were recorded for all 4 limbs simultaneously on an instrumented treadmill.

RESULTS

Compared to the sound situation, moderate hindlimb hoof lameness induced a decrease in stride duration (-3.3%) and stride impulse (-3.1%). Diagonal impulse decreased selectively in the lame diagonal stance (-7.7%). Within the diagonal limb pair, vertical impulse was shifted to the forelimb during the lame diagonal stance (+6.5%) and to the hindlimb during the sound diagonal stance (+3.2%). Peak vertical force and vertical impulse decreased in the lame limb (-15%), but only vertical impulse increased in the contralateral hindlimb (+5.7%). Stance duration was prolonged in both hindlimbs (+2.5%). Suspension duration was reduced to a greater extent after push-off of the lame diagonal limb pair (-21%) than after the sound diagonal limb pair (-9.2%).

CONCLUSIONS

Four compensatory mechanisms could be identified that served to reduce structural stress, i.e. peak vertical force on the affected limb: 1) reduction of the total vertical impulse per stride; 2) diagonal impulse decreased selectively in the lame diagonal; 3) impulse was shifted within the lame diagonal to the forelimb and in the sound diagonal to the hindlimb; and 4) the rate of loading and peak forces were reduced by prolonging the stance duration.

POTENTIAL RELEVANCE

Load shifting mechanisms are not only effective in diminishing peak forces in the affected limb, but also suppress compensatory overload in other limbs. Selected force and time parameters allow the unequivocal identification of the lame limb. Future studies have to examine how far these compensatory mechanisms may be generalised for other defined orthopaedic problems in the hindlimb.

摘要

进行本研究的原因

负重后肢跛行马匹的代偿机制仍未完全明确。

假设

负重性单侧后肢跛行不仅会改变步幅特征以减轻患侧肢体的结构应力,还会在其他支撑肢体中引发代偿性负荷调整。

目的

记录单侧负重后肢跛行马匹的负荷和时间转移机制。

方法

对8匹临床健康的马匹应用蹄底压力模型诱导出可逆性跛行。诱导出三种程度的跛行(轻微、轻度和中度),并与非跛行(健康)对照测量进行比较。在装有仪器的跑步机上同时记录所有4条肢体的垂直地面反作用力。

结果

与健康状态相比,中度后肢蹄跛行导致步幅持续时间减少(-3.3%)和步幅冲量减少(-3.1%)。在跛行对角站立时,对角冲量选择性降低(-7.7%)。在对角肢体对中,垂直冲量在跛行对角站立时向前肢转移(+6.5%),在健康对角站立时向后肢转移(+3.2%)。患侧肢体的垂直峰值力和垂直冲量降低(-15%),但对侧后肢仅垂直冲量增加(+5.7%)。双后肢的站立持续时间延长(+2.5%)。与健康对角肢体对相比,跛行对角肢体对蹬离后悬停持续时间减少幅度更大(-21%)(-9.2%)。

结论

可识别出四种用于减轻结构应力(即患侧肢体的垂直峰值力)的代偿机制:1)每步总垂直冲量减少;2)跛行对角的对角冲量选择性降低;3)冲量在跛行对角内向前肢转移,在健康对角内向后肢转移;4)通过延长站立持续时间降低加载速率和峰值力。

潜在意义

负荷转移机制不仅能有效降低患侧肢体的峰值力,还能抑制其他肢体的代偿性过载。选定的力和时间参数能够明确识别跛行肢体。未来的研究必须考察这些代偿机制在多大程度上可推广应用于后肢其他特定的骨科问题。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索