Page 28 - Zoo Animal Learning and Training
P. 28

Chapter 2: Orthopedic Implants in Neurosurgery  19

                3 Lewis DD, Cross AR, Carmichael S, Anderson MA. Recent advances in external   29  Battula S, Schoenfeld A, Vrabec G, Njus GO. Experimental evaluation of the hold-
                 skeletal fixation. J Small Anim Pract 2001;42:103–112.  ing power/stiffness of the self‐tapping bone screws in normal and osteoporotic
                4 Eriksson A, Albrektsson T, Grane B, McQueen D. Thermal injury to bone. Int J Oral   bone material. Clin Biomech 2006;21:533–537.
                 Surg 1982;11:115–121.                            30  Heidemann W, Terheyden H, Gerlach KL. Analysis of the osseous/metal interface
                5 Egger EL, Histand MB, Blass CE, Powers BE. Effect of fixation pin insertion on the   of drill free screws and self‐tapping screws. J Maxillofac Surg 2001;29:69–74.
                 bone–pin interface. Vet Surg 1986;15:246–252.    31  Sowden D, Schmitz JP. AO self‐drilling and self‐tapping screws in rat calvarial
                6 Gumbs JM, Brinker WO, DeCamp CE, Schaeffer R, Kaneene JB, Soutas‐Little RW.   bone: an ultrastructural study of the implant interface.  J Oral Maxillofac Surg
                 Comparison of acute and chronic pull‐out resistance of pins used with the external   2002;60:294–299.
                 fixator (Kirschner splint). J Am Anim Hosp Assoc 1988;24:231–234.  32  Cronier P, Pietu G, Dujardin C, Bigorre N, Ducellier F, Gerard R. The concept of
                7 Matthews LS, Green CA, Goldstein SA. The thermal effects of skeletal fixation‐pin   locking plates. Orthop Traumatol Surg Res 2010;96(4):S17–S36.
                 insertion in bone. J Bone Joint Surg Am 1984;66:1077–1083.  33  Miller DL, Goswami T. A review of locking compression plate biomechanics and
                8 Clary EM, Roe SC. In vitro biomechanical and histological assessment of pilot hole   their advantages as internal fixators in fracture healing.  Clin Biomech
                 diameter for positive‐profile external skeletal fixation pins in canine tibiae. Vet Surg   2007;22:1049–1062.
                 1996;25:453–462.                                 34  Matthews SJE, Nikolaou VS, Giannoudis PV. Innovations in osteosynthesis and
                9 Dernell WS, Harari J, Blackketter DM. A comparison of acute pull‐out strength   fracture care. Injury 2008;39:827–838.
                 between two‐way and one‐way transfixation pin insertion for external skeletal fixa-  35  Perren SM. Evolution of the internal fixation of long bone fractures. The scientific
                 tion in canine bone. Vet Surg 1993;22:110–114.     basis of biological internal fixation: choosing a new balance between stability and
               10  Oliphant BW, Kim H, Osgood GM et al. Predrilling does not improve the pullout strength   biology. J Bone Joint Surg Br 2002;84:1093–1110.
                 of external fixator pins: a biomechanical study. J Orthop Trauma 2013;27:e25–e30.  36  Roush JK, Wilson JW. Effects of plate luting on cortical vascularity and develop-
               11  Sener BC, Dergin G, Gursoy B, Kelesoglu E, Slih I. Effects of irrigation temperature on   ment of cortical porosity in canine femurs. Vet Surg 1990;19:208–214.
                 heat control in vitro at different drilling depths. Clin Oral Implants Res 2009;20:294–298.  37  Wilson JW. Blood supply to developing, mature, and healing bone. In: Sumner‐
               12  Erikssons AR, Albrektsson T, Albrektsson B. Heat caused by drilling cortical bone:   Smith G (ed.)  Bone in Clinical Orthopedics, 2nd edn. Stuttgart: Thieme, AO
                 temperature measured in vivo in patients and animals.  Acta Orthop Scand   Publishing, 2002: 23–116.
                 1984;55:629–631.                                 38  Miranda MA. Locking plate technology and its role in osteoporotic fractures. Injury
               13  Hitchon PW, Brenton MD, Coppes JK, From AM, Torner JC. Factors affecting the   2007;38(Suppl 3):S35–S39.
                 pullout  strength of self‐drilling and self‐tapping anterior  cervical  screws.  Spine   39  Zindrick MR, Wiltse LL, Widell EH et al. A biomechanical study of intrapeduncu-
                 2003;28:9–13.                                      lar screw fixation in the lumbosacral spine.  Clin Orthop Related Res
               14  Blass CE, Seim III HB. Spinal fixation in dogs using Steinmann pins and methyl-  1986;203:99–112.
                 methacrylate. Vet Surg 1984;13:203–210.          40  Corlazzoli D. Bicortical implant insertion in caudal cervical spondylomyelopathy:
               15  Beaver DP, MacPhersont GC, Muir P, Johnson KA. Methyl‐methacrylate and bone   a computed tomography simulation in affected Doberman Pinschers.  Vet Surg
                 screw repair of seventh lumbar vertebral fracture‐luxations in dogs. J Small Anim   2008;37:178–185.
                 Pract 1996;37:381–386.                           41  Hettlich BF, Allen MJ, Pascetta D, Fosgate GT, Litsky AS. Biomechanical comparison
               16  Garcia JN, Milthorpe BK, Russell D, Johnson KA. Biomechanical study of canine   between bicortical pin and monocortical screw/polymethylmethacrylate constructs
                 spinal fracture fixation using pins or bone screws with polymethylmethacrylate. Vet   in the cadaveric canine cervical vertebral column. Vet Surg 2013;42:693–700.
                 Surg 1994;23:322–329.                            42  Agnello KA, Kapatkin AS, Garcia TC, Hayashi K, Welihozkiy AT, Stover SM.
               17  Ahmed AM, Raab S, Miller JE, Miller E. Metal/cement interface strength in   Intervertebral biomechanics of locking compression plate monocortical fixation of
                 cemented stem fixation. J Orthopaed Res 1984;2:105–118.  the canine cervical spine. Vet Surg 2010;39:991–1000.
               18  Stone MH, Wilkinson R, Stother IG. Some factors affecting the strength of the   43  Bergman RL, Levine JM, Coates JR, Bahr A, Hettlich BF, Kerwin SC. Cervical spi-
                 cement–metal interface. J Bone Joint Surg Br 1989;71:217–221.  nal locking plate in combination with cortical ring allograft for a one level fusion in
               19  Collinge C, Hartigan B, Lautenschlager EP. Effects of surgical errors on small frag-  dogs with cervical spondylotic myelopathy. Vet Surg 2008;37:530–536.
                 ment screw fixation. J Orthop Trauma 2006;20:410–413.  44  Dickomeit M, Alves L, Pekarkova M, Gorgas D, Forterre F. Use of a 1.5 mm but-
               20  Pitzen T, Franta F, Barbier D, Steudel W‐I. Insertion torque and pullout force of   terfly locking plate for stabilization of atlantoaxial pathology in three toy breed
                 rescue screws for anterior cervical plate fixation in a fatigued initial pilot hole.   dogs. Vet Comp Orthop Traumatol 2011;24:246–251.
                 J Neurosurg Spine 2004;1:198–201.                45  Steffen F, Voss K, Morgan JP. Distraction‐fusion for caudal cervical spondylomye-
               21  Wall SJ, Soin SP, Knight TA, Mears SC, Belkoff SM. Mechanical evaluation of a 4‐  lopathy using an intervertebral cage and locking plates in 14 dogs.  Vet Surg
                 mm cancellous “rescue” screw in osteoporotic cortical bone: a cadaveric study.   2011;40:743–752.
                 J Orthop Trauma 2010;24:379–382.                 46  Trotter EJ. Cervical spine locking plate fixation for treatment of cervical spondy-
               22  Griffon DJ, Stoller A, Schaeffer DJ, Seddighi MR, Johnson AL, Kurath P. Evaluation   lotic myelopathy in large breed dogs. Vet Surg 2009;38:705–718.
                 of 2 cement techniques for augmentation of stripped 1.5 mm screw sites in the dis-  47  Voss K, Steffen F, Montavon PM. Use of the ComPact UniLock System for ventral
                 tal metaphysis of feline radii. Vet Surg 2005;34:223–230.  stabilization procedures of the cervical spine: a retrospective study.  Vet Comp
               23  Sarzier JS, Evans AJ, Cahill DW. Increased pedicle screw pullout strength with vertebro-  Orthop Traumatol 2006;19:21–28.
                 plasty augmentation in osteoporotic spines. J Neurosurg 2002;96(3 Suppl):309–312.  48  Boudreau B, Benamou J, von Pfeil DJF, Guillou RP, Beckett C, Déjardin LM. Effect
               24  Hearn T, Surowiak J, Schatzker J, Hearn T, Surowiak J, Schatzker J. Effects of tap-  of screw insertion torque on mechanical properties of four locking systems. Vet
                 ping on  the holding strength of cancellous bone  screws.  Vet Comp Orthop   Surg 2013;42:535–543.
                 Traumatol 1992;5:14–16.                          49  Rose SA, Bruecker KA, Petersen SW, Uddin N. Use of locking plate and screws for
               25  Chapman JR, Harrington RM, Lee KM, Anderson PA, Tencer AF, Kowalski D.   triple pelvic osteotomy. Vet Surg 2012;41:114–120.
                 Factors affecting the pullout strength of cancellous bone screws. J Biomech Eng   50  Blake CA, Boudrieau RJ, Torrance BS et al. Single cycle to failure in bending of
                 1996;118:391–398.                                  three standard and five locking plates and plate constructs.  Vet Comp Orthop
               26  Baumgart FW, Cordey J, Morikawa K et al. AO/ASIF self‐tapping screws (STS).   Traumatol 2011;24:408–417.
                 Injury 1993;24(Suppl 1):S1–S17.                  51  Cabassu JB, Kowaleski MP, Shorinko JK, Blake CA, Gaudette GR, Boudrieau RJ.
               27  Andrea CR, Stover SM, Galuppo LD, Taylor KT, Rakestraw PC. Comparison of   Single cycle to failure in torsion of three standard and five locking plate constructs.
                 insertion time and pullout strength between self‐tapping and non‐self‐tapping AO   Vet Comp Orthop Traumatol 2011;24:418–425.
                 4.5‐mm cortical bone screws in adult equine third metacarpal bone.  Vet  Surg   52  DeTora M, Kraus K. Mechanical testing of 3.5 mm locking and non‐locking bone
                 2002;31:189–194.                                   plates. Vet Comp Orthop Traumatol 2008;21:318–322.
               28  Murphy TP, Hill CM, Kapatkin AS, Radin A, Shofer FS, Smith GK. Pullout proper-  53  McKee WM, Downes CJ. Vertebral stabilisation and selective decompression for
                 ties of 3.5‐mm AO/ASIF self‐tapping and cortex screws in a uniform synthetic   the management of triple thoracolumbar disc protrusions.  J Small Anim Pract
                 material and in canine bone. Vet Surg 2001;30:253–260.  2008;49:536–539.
   23   24   25   26   27   28   29   30   31   32   33