Bramlage L R, Schneider R K, Gabel A A
Department of Veterinary Clinical Sciences, College of Veterinary Medicine, Ohio State University, Columbus 43210, USA.
Equine Vet J Suppl. 1988 Sep(6):12-8. doi: 10.1111/j.2042-3306.1988.tb04642.x.
Clinical experience continues to expand our understanding of the pathophysiology of pain and injury within the carpal joints. The anatomical and physiological capacity of the equine carpus to neutralise loading stress plays a significant role in the prevention of carpal injury. The ability of joint surfaces to dissipate axial force by transfer to the interosseous ligaments is the principal means by which carpal injury is avoided. In the medial aspect of the intercarpal joint and the dorsal aspect of the radial carpal joint, however, the effects of chronic maximal stress and isolated acute supraphysiological loads cannot be neutralised. Progressive osseous remodelling and stress induced changes within the bone, which outstrip its ability to accommodate increasing loads, lead to the loss of structural integrity and fracture in horses in training.
临床经验不断拓展我们对腕关节疼痛和损伤病理生理学的认识。马的腕骨中和负荷应力的解剖学和生理学能力在预防腕骨损伤方面起着重要作用。关节面通过向骨间韧带传递来消散轴向力的能力是避免腕骨损伤的主要方式。然而,在腕骨间关节的内侧和桡腕关节的背侧,慢性最大应力和孤立的急性超生理负荷的影响无法被中和。骨骼内渐进性的骨质重塑和应力诱导的变化超过了其适应不断增加负荷的能力,导致训练中的马匹结构完整性丧失和骨折。