Sikorska Urszula, Maśko Małgorzata, Rey Barbara, Domino Małgorzata
Department of Animal Breeding, Institute of Animal Science, Warsaw University of Life Sciences (WULS-SGGW), 02-787 Warsaw, Poland.
Scientific Circle of Biotechnologists KNBiotech, Warsaw University of Life Sciences (WULS-SGGW), 02-787 Warsaw, Poland.
Animals (Basel). 2025 Aug 1;15(15):2266. doi: 10.3390/ani15152266.
Water treadmill (WT) exercise is used for horses' rehabilitation and training. Given that each training needs to be individualized for each horse, the goal is to assess whether infrared thermography (IRT) can serve as a non-invasive tool for daily monitoring of individual training and rehabilitation progress in horses undergoing WT exercise. Fifteen Polish Warmblood school horses were subjected to five WT sessions: dry treadmill, fetlock-depth water, fetlock-depth water with artificial river (AR), carpal-depth water, and carpal-depth water with AR. IRT images, collected pre- and post-exercise, were analyzed for the mean temperature (Tmean) and maximal temperature (Tmax) across 14 regions of interest (ROIs) representing the body surface overlying specific superficial muscles. While on a dry treadmill, Tmean and Tmax increased post-exercise in all ROIs; wetting of the hair coat limited surface temperature analysis in ROIs annotated on limbs. Tmax over the , , , and increased during walking in carpal-depth water, which therefore may be suggested as an indirect indicator of increased activity related to forelimb protraction and flexion-extension of the limb joints. Tmax over the and increased during carpal-depth WT exercise with active AR mode, which may be suggested as an indicator of increased workload including vertical displacement of the trunk.
水跑步机(WT)运动用于马匹的康复和训练。鉴于每次训练都需要针对每匹马进行个性化定制,目标是评估红外热成像(IRT)是否可以作为一种非侵入性工具,用于日常监测接受WT运动的马匹的个体训练和康复进展。15匹波兰温血学校马接受了5次WT训练:干跑步机训练、球节深度水训练、带人工河(AR)的球节深度水训练、腕关节深度水训练和带AR的腕关节深度水训练。在运动前和运动后收集IRT图像,分析代表覆盖特定浅层肌肉的体表的14个感兴趣区域(ROI)的平均温度(Tmean)和最高温度(Tmax)。在干跑步机上时,所有ROI的Tmean和Tmax在运动后均升高;被毛湿润限制了标注在四肢上的ROI的表面温度分析。在腕关节深度水中行走时, 、 、 和 上的Tmax升高,因此这可能被认为是与前肢伸展和肢体关节屈伸相关活动增加的间接指标。在带主动AR模式的腕关节深度WT运动期间, 和 上的Tmax升高,这可能被认为是工作量增加的指标,包括躯干的垂直位移。