Mendez-Angulo Jose L, Firshman Anna M, Groschen Donna M, Kieffer Philip J, Trumble Troy N
Department of Veterinary Population Medicine, College of Veterinary Medicine, University of Minnesota, Saint Paul, MN 55108, USA.
Am J Vet Res. 2013 Apr;74(4):557-66. doi: 10.2460/ajvr.74.4.557.
To determine the maximum amount of flexion and extension of the carpal, tarsal, metacarpophalangeal, and metatarsophalangeal joints and the percentage duration of the stance and swing phases of the stride for horses walking on an underwater treadmill in various water depths.
9 healthy adult horses.
Zinc oxide markers were placed on the forelimbs and hind limbs of the horses. Video was recorded of horses walking (0.9 m/s) on an underwater treadmill during baseline conditions (< 1 cm of water) or in various amounts of water (level of the metatarsophalangeal, tarsal, and stifle joints). Maximum amount of joint flexion and extension, range of motion (ROM), and the percentage durations of the stance and swing phases of the stride were determined with 2-D motion analysis software.
The ROM was greater for all evaluated joints in any amount of water versus ROM for joints in baseline conditions (primarily because of increases in amount of joint flexion). The greatest ROM for carpal joints was detected in a tarsal joint water depth, for tarsal joints in a stifle joint water depth, and for metacarpophalangeal and metatarsophalangeal joints in metatarsophalangeal and tarsal joint water depths. As water depth increased, the percentage durations of the stance and swing phases of the stride significantly decreased and increased, respectively.
Results of this study suggested that exercise on an underwater treadmill is useful for increasing the ROM of various joints of horses during rehabilitation and that the depth of water affects the amount of flexion and extension of joints.
确定在不同水深的水下跑步机上行走的马匹腕关节、跗关节、掌指关节和跖趾关节的最大屈伸量,以及步幅的站立期和摆动期的持续时间百分比。
9匹健康成年马。
在马的前肢和后肢放置氧化锌标记物。记录马在基线条件下(水深<1厘米)或在不同水深(跖趾关节、跗关节和膝关节水平)的水下跑步机上行走(0.9米/秒)的视频。使用二维运动分析软件确定关节最大屈伸量、活动范围(ROM)以及步幅的站立期和摆动期的持续时间百分比。
与基线条件下关节的ROM相比,在任何水深下所有评估关节的ROM都更大(主要是由于关节屈曲量增加)。腕关节的最大ROM在跗关节水深时检测到,跗关节的最大ROM在膝关节水深时检测到,掌指关节和跖趾关节的最大ROM在跖趾关节和跗关节水深时检测到。随着水深增加,步幅的站立期和摆动期的持续时间百分比分别显著降低和增加。
本研究结果表明,在水下跑步机上运动有助于在康复期间增加马的各种关节的ROM,并且水深会影响关节的屈伸量。