Fractures in the Horse. Группа авторов

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Galante, J., Rostoker, W., and Ray, R.D. (1970). Physical properties of trabecular bone. Calcif. Tissue Int. 5: 236–246.

      46 46 Dempster, W.T. and Liddicoat, R.T. (1952). Compact bone as a non‐isotropic material. Am. J. Anat. 91: 331–362.

      47 47 Osterhoff, G., Morgan, E.F., Shefelbine, S.J. et al. (2016). Bone mechanical properties and changes with osteoporosis. Injury 47: S11–S20.

      48 48 Young, D.R., Nunamaker, D.M., and Markel, M.D. (1991). Quantitative evaluation of the remodeling response of the proximal sesamoid bones to training‐related stimuli in thoroughbreds. Am. J. Vet. Res. 52: 1350–1356.

      49 49 Thompson, K.N. and Cheung, T.K. (1994). A finite element model of the proximal sesamoid bones of the horse under different loading conditions. Vet. Comp. Orthop. Traumatol. 7: 35–39.

      50 50 Nixon, A.J. (2019). Phalanges and the metacarpophalangeal and metatarsophalangeal joints. In: Equine Surgery, 5e (eds. J.A. Auer, J.A. Stick, J.M. Kümmerle and T. Prange), 1587–1618. St. Louis, MO: Elsevier.

      51 51 Anthenill, L.A.S., Gardner, S.M., Hill, I.A. et al. (2006). Association between findings on palmarodorsal radiographic images and detection of a fracture in the proximal sesamoid bones of forelimbs obtained from cadavers of racing thoroughbreds. Am. J. Vet. Res. 67: 858–868.

      52 52 Sanders‐Shamis, M., Bramlage, L.R., and Gable, A.A. (1986). Radius fractures in the horse: a retrospective study of 47 cases. Equine Vet. J. 18: 432–437.

      53 53 Fürst, A., Oswald, S., Jäggin, S. et al. (2008). Fracture configurations of the equine radius and tibia after a simulated kick. Vet. Comp. Orthop. Traumatol. 21 (01): 49–58.

      54 54 Radcliffe, R.M., Lopez, M.J., Turner, T.A. et al. (2001). An in vitro biomechanical comparison of interlocking nail constructs and double plating for fixation of diaphyseal femur fractures in immature horses. Vet. Surg. 30: 179–190.

      55 55 Hance, S.R., Bramlage, L.R., Schneider, R.K., and Embertson, R.M. (1992). Retrospective study of 38 cases of femur fractures in horses less than one year of age. Equine Vet. J. 24: 357–363.

      56 56 Nixon, A.J., Bramlage, L.R., and Hance, S.R. (2019). Fractures of the femur. In: Equine Fracture Repair, 2e (ed. A.J. Nixon), 688–705. Hoboken, NJ: Wiley.

      57 57 McDuffee, L.A., Stover, S.M., Taylor, K.T., and Les, C.M. (1994). An in vitro biomechanical investigation of an interlocking nail for fixation of diaphyseal tibial fractures in adult horses. Vet. Surg. 23: 219–230.

      58 58 Nixon, A.J. and Watkins, J.P. (2019). Fractures of the Humerus. In: Equine Fracture Repair, 2e (ed. A.J. Nixon), 567–587. Hoboken, NJ: Wiley.

      59 59 Carter, B.G., Schneider, R.K., Hardy, J. et al. (1993). Assessment and treatment of equine humeral fractures: retrospective study of 54 cases (1972–1990). Equine Vet. J. 25: 203–207.

      60 60 Radtke, C.L., Danova, N.A., Scollay, M.C. et al. (2003). Macroscopic changes in the distal ends of the third metacarpal and metatarsal bones of Thoroughbred racehorses with condylar fractures. Am. J. Vet. Res. 64: 1110–1116.

      61 61 Le Jeune, S.S., Macdonald, M.H., Stover, S.M. et al. (2003). Biomechanical investigation of the association between suspensory ligament injury and lateral condylar fracture in Thoroughbred racehorses. Vet. Surg. 32: 585–597.

      62 62 Riggs, C. and Boyde, A. (1999). Effect of exercise on bone density in distal regions of the equine third metacarpal bone in 2‐year‐old thoroughbreds. Equine Vet. J. Suppl. 31: 555–560.

      63 63 Riggs, C.M., Whitehouse, G.H., and Boyde, A. (1999). Pathology of the distal condyles of the third metacarpal and third metatarsal bones of the horse. Equine Vet. J. 31: 140–148.

      64 64 Pinchbeck, G. and Murphy, D. (2001). Cervical vertebral fracture in three foals. Equine Vet. Educ. 13: 8–12.

      65 65 Ehrle, A., Jones, S., Klose, P., and Lischer, C. (2012). Atypical radiologic appearance of a second cervical vertebral fracture in a horse. J. Equine Vet. Sci. 32: 309–313.

      66 66 Muno, J., Samii, V., Gallatin, L. et al. (2009). Cervical vertebral fracture in a Thoroughbred filly with minimal neurological dysfunction. Equine Vet Educ. 21: 527–531.

      67 67 Firth, E., Rogers, C., Doube, M., and Jopson, N. (2005). Musculoskeletal responses of 2‐year‐old Thoroughbred horses to early training. 6. Bone parameters in the third metacarpal and third metatarsal bones. N. Z. Vet. J. 53: 101–112.

      68 68 Nixon, A.J., Stover, S.M., and Nunamaker, D.M. (2019). Third metacarpal dorsal stress fractures. In: Equine Fracture Repair, 2e (ed. A.J. Nixon), 452–464. Hoboken, NJ: Wiley.

      69 69 Nunamaker, D.M., Butterweck, D.M., and Provost, M.T. (1990). Fatigue fractures in Thoroughbred racehorses: relationships with age, peak bone strain, and training. J. Orthop. Res. 8: 604–611.

      70 70 Wirtz, D.C., Schiffers, N., Pandorf, T. et al. (2000). Critical evaluation of known bone material properties to realize anisotropic FE‐simulation of the proximal femur. J. Biomech. 33: 1325–1330.

      71 71 Keaveny, T.M. and Hayes, W.C. (1993). A 20‐year perspective on the mechanical properties of trabecular bone. J. Biomech. Eng. 115: 534–542.

      72 72 Keaveny, T. and Hayes, W. (1992). Mechanical properties of cortical and trabecular bone. In: Bone, 7e (ed. B. Hall), 285–344. Boca Raton, FL: CRC Press.

      73 73 Selker, F. and Carter, D.R. (1989). Scaling of long bone fracture strength with animal mass. J. Biomech. 22: 1175–1183.

      74 74 Sherman, K.M., Miller, G.J., Wronskl, T.J. et al. (1995). The effect of training on equine metacarpal bone breaking strength. Equine Vet. J. 27: 135–139.

      75 75 Dowthwaite, J.N., Flowers, P.P.E., Spadaro, J.A., and Scerpella, T.A. (2007). Bone geometry, density, and strength indices of the distal radius reflect loading via childhood gymnastic activity. J. Clin. Densitom. 10: 65–75.

      76 76 Daegling, D.J. (2002). Estimation of torsional rigidity in primate long bones. J. Hum. Evol. 43: 229–239.

      77 77 Edwards, W.B., Schnitzer, T.J., and Troy, K.L. (2013). Torsional stiffness and strength of the proximal tibia are better predicted by finite element models than DXA or QCT. J. Biomech. 46: 1655–1662.

      78 78 Haider, I.T., Schneider, P., Michalski, A., and Edwards, W.B. (2018). Influence of geometry on proximal femoral shaft strains: implications for atypical femoral fracture. Bone 110: 295–303.

      79 79 Setterbo, J.J., Garcia, T.C., Campbell, I.P. et al. (2009). Hoof accelerations and ground reaction forces of Thoroughbred racehorses measured on dirt, synthetic, and turf track surfaces. Am. J. Vet. Res. 70: 1220–1229.

      80 80 Malekipour, F., Hitchens, P.L., Whitton, R.C., and Lee, P.V.‐S. (2020). Effects of in vivo fatigue‐induced subchondral bone microdamage on the mechanical response of cartilage‐bone under a single impact compression. J. Biomech. 100: 109–594.

      81 81 Davies, H.M.S., McCarthy, R.N., and Jeffcott, L.B. (1993). Surface strain on the dorsal metacarpus of thoroughbreds at different speeds and gaits. Cells Tissues Organs 146: 148–153.

      82 82 Evans, G.P., Behiri, J.C., Vaughan, L.C., and Bonfield, W. (1992). The response of equine cortical bone to loading at strain rates experienced in vivo by the galloping horse. Equine Vet. J. 24: 125–128.

      83 83 Kulin, R.M., Jiang, F., and Vecchio, K.S. (2011).

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