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30 2 Objective Gait Analysis
Duerr, F.M., Pauls, A., Kawcak, C. et al. (2016). Evaluation of inertial measurement units as a novel
method for kinematic gait evaluation in dogs. Vet. Comp. Orthop. Traumatol. 29 (6): 475–483.
Grood, E.S. and Suntay, W.J. (1983). A joint coordinate system for the clinical description of three‐
dimensional motions: application to the knee. J. Biomech. Eng. 105 (2): 136–144.
Hans, E.C., Zwarthoed, B., Seliski, J. et al. (2014). Variance associated with subject velocity and trial
repetition during force platform gait analysis in a heterogeneous population of clinically normal
dogs. Vet. J. 202 (3): 498–502.
Kapatkin, A.S., Kim, J.Y., Garcia‐Nolan, T.C. et al. (2014). Modification of the contact area of a
standard force platform and runway for small breed dogs. Vet. Comp. Orthopaed. 27 (4): 257–262.
Kim, S.‐Y., Torres, B.T., Sandberg, G.S., and Budsberg, S.C. (2017). Effect of limb position at the time of
skin marker application on sagittal plane kinematics of the dog. Vet. Comp. Orthop. Traumatol. 30
(06): 438–443.
Kirtley, C. (2006). Clinical Gait Analysis: Theory and Practice. Edinburgh: Elsevier Health Sciences.
Lascelles, B.D., Roe, S.C., Smith, E. et al. (2006). Evaluation of a pressure walkway system for
measurement of vertical limb forces in clinically normal dogs. Am. J. Vet. Res. 67 (2): 277–282.
Phelps, H.A., Ramos, V., Shires, P.K., and Werre, S.R. (2007). The effect of measurement method on
static weight distribution to all legs in dogs using the quadruped biofeedback system. Vet. Comp.
Orthop. Traumatol. 20 (2): 108–112.
Torres, B.T. (2018). Gait analysis. In: Veterinary Surgery: Small Animal (eds. S.A. Johnston and
K. Tobias), 1385–1396. St. Louis: Elsevier.