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首页> 外文期刊>BMC Veterinary Research >Kinematic adaptions to induced short-term pelvic limb lameness in trotting dogs
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Kinematic adaptions to induced short-term pelvic limb lameness in trotting dogs

机译:运动学适应小跑犬短期盆腔四肢la行

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Lameness due to paw injuries is common in the clinical practice. Although many studies investigated gait adaptations to diseases or injuries, mainly of the hip and knee, our understanding of the biomechanical coping mechanisms that lame dogs utilize is limited. Therefore, this study evaluated the kinematic changes associated with an induced, load-bearing pelvic limb lameness in healthy dogs trotting on a treadmill. Kinematic analysis included spatio-temporal comparisons of limb, joint and segment angles of all limbs. Key parameters compared between sound and lame conditions were: angles at touch-down and lift-off, minimum and maximum joint angles and range of motion. Significant differences were identified in each limb during both stance and swing phases. The most pronounced differences concerned the affected pelvic limb, followed by the contralateral pelvic limb, the contralateral thoracic limb and, to the least degree, the ipsilateral thoracic limb. The affected limb was retracted more, while the contralateral limb was protracted more, consistent with this limb bearing more body weight in lame dogs. Kinematic adaptations involved almost all segment and joint angles in the pelvic limbs, while they exclusively concerned distal parts of the thoracic limbs. Comparisons with tripedal locomotion reveal several striking similarities, implying that dogs use similar principles to cope with a partial or a total loss in limb function. Because kinematic alterations occurred in all limbs and not just the affected one, all limbs should be included in routine follow-ups and be part of the diagnostic and therapeutic care of canine patients.
机译:在临床实践中,由于脚掌受伤而导致me行很常见。尽管许多研究调查了步态对疾病或损伤(主要是髋部和膝盖)的适应性,但我们对la狗利用的生物力学应对机制的理解仍然有限。因此,本研究评估了在跑步机上小跑的健康犬中与诱发的负重骨盆四肢me行相关的运动学变化。运动学分析包括所有肢体的肢体,关节和节段角的时空比较。声音和la腿状况之间比较的关键参数是:着陆和抬离时的角度,最小和最大关节角度以及运动范围。在站立和摆动阶段,每个肢体都发现了显着差异。最明显的差异涉及受影响的骨盆肢体,其次是对侧骨盆肢体,对侧胸骨肢体,以及同等程度的同侧胸骨肢体。患肢更多地缩回,而对侧肢体更多地伸出,这与la脚犬的这种体重更大有关。运动学适应几乎涉及到骨盆四肢的所有节段和关节角度,而它们只涉及胸肢的远端。与三重运动的比较显示出一些惊人的相似之处,这意味着狗使用相似的原理来应对肢体功能的部分或全部丧失。因为运动学改变发生在所有肢体中,而不仅仅是受影响的肢体,所以所有肢体都应包括在常规随访中,并且应作为犬类患者诊断和治疗的一部分。

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