Torres Bryan T, Whitlock Dana, Reynolds Lisa R, Fu Yang-Chieh, Navik Judith A, Speas Abbie L, Sornborger Andrew, Budsberg Steven C
Department of Small Animal Medicine and Surgery, College of Veterinary Medicine, University of Georgia, Athens, GA 30602, USA.
Vet Surg. 2011 Aug;40(6):715-9. doi: 10.1111/j.1532-950X.2011.00852.x. Epub 2011 Jul 19.
Evaluate the effect of marker placement on kinematics of the canine stifle in 3 distinct hindlimb models.
In vivo biomechanical study.
Normal adult mixed-breed dogs (n=5).
Ten retroreflective markers were affixed to the skin on the right rear leg of each dog to establish normal stifle kinematics. Four additional markers were placed around the greater trochanter (GT), 2 m cranial, caudal, dorsal, and ventral to evaluate single marker placement variability on kinematic model data. Dogs were walked and trotted 5 times through the calibrated space. Sagittal flexion and extension angle waveforms were acquired during each trial with 3 models that were produced simultaneously during each gait. The GT marker was reassigned to 1 of the 4 additional locations (cranial, caudal, dorsal, and ventral) to alter the kinematic model. Comparison of sagittal flexion and extension angle waveforms was performed with Generalized Indicator Function Analysis.
Each model provided consistent equivalent sagittal flexion-extension data. Analysis revealed statistically significant differences between all GT locations. The differences were greatest in the cranial and caudal locations for all models.
Deviation of the GT marker in the cranial/caudal direction from an anatomically normal position produces a greater degree of difference than deviation in a dorsal/ventral direction.
评估在3种不同的后肢模型中标记物放置对犬膝关节运动学的影响。
体内生物力学研究。
正常成年混种犬(n = 5)。
在每只犬的右后腿皮肤上粘贴10个反光标记物,以建立正常的膝关节运动学模型。在大转子(GT)周围额外放置4个标记物,分别位于其头侧、尾侧、背侧和腹侧2 cm处,以评估单个标记物放置变化对运动学模型数据的影响。犬在经过校准的空间内行走和小跑5次。在每次试验中,通过3种在每个步态期间同时生成的模型采集矢状面屈伸角度波形。将GT标记物重新分配到4个额外位置(头侧、尾侧、背侧和腹侧)中的1个,以改变运动学模型。使用广义指标函数分析对矢状面屈伸角度波形进行比较。
每个模型均提供了一致的等效矢状面屈伸数据。分析显示,所有GT位置之间存在统计学上的显著差异。对于所有模型,头侧和尾侧位置的差异最大。
GT标记物在头侧/尾侧方向上偏离解剖学正常位置所产生的差异程度,比在背侧/腹侧方向上的偏离更大。