Vet Comp Orthop Traumatol 1998; 11(04): 185-189
DOI: 10.1055/s-0038-1632544
Original Research
Schattauer GmbH

The Use of Surgical Bone Staples to Stabilise Corrective Osteotomies of the Radius in Four Dogs

M. J. Thomson1
1   From the Division of Veterinary and Biomedical Sciences, Murdoch University, Perth, Western Australia, Australia
,
R. A. Read
1   From the Division of Veterinary and Biomedical Sciences, Murdoch University, Perth, Western Australia, Australia
,
J. Yovich
1   From the Division of Veterinary and Biomedical Sciences, Murdoch University, Perth, Western Australia, Australia
,
C. Eger
1   From the Division of Veterinary and Biomedical Sciences, Murdoch University, Perth, Western Australia, Australia
,
T. Lindsay2
1   From the Division of Veterinary and Biomedical Sciences, Murdoch University, Perth, Western Australia, Australia
› Author Affiliations
Further Information

Publication History

Received:24 July 1997

Accepted:28 November 1994

Publication Date:
10 February 2018 (online)

Summary

Orthopaedic staples were used to stabilise corrective closing wedge osteotomies of the distal radius in four dogs with forelimb angular deformity. External coaptation was used for four to six weeks. All of the dogs had excellent limb function and cosmetic appearance of the limb. Evidence of implant failure was not observed. Surgical staples were a reliable implant for the stabilisation of radial wedge osteotomies, and particularly useful in cases where the osteotomy is distally located resulting in a short distal radial fragment.

Four dogs with premature closure of the distal ulnar growth plate or lateral aspect of the distal radial physis were treated by corrective radial cuneiform osteotomies which were stabilised with orthopaedic surgical staples and short term external coaptation. All of the dogs had an excellent functional and cosmetic result.

1 Present addresses: Comparative Oncology Unit, Colorado State University


2 Baldivis Veterinary Clinic, Perth, Western Australia


 
  • REFERENCES

  • 1 Egger EL. Fractures of the radius and ulna. In Textbook of Small Animal Surgery 1993, 2nd Edn Ed Slatter DH. Philadelphia: WB Saunders; p 1741
  • 2 Forrel EB, Schwarz PD. Use of external skeletal fixation for treatment of angular deformity secondary to premature distal ulnar physeal closure. J Am Anim Hosp Assoc 1993; 29: 460-76.
  • 3 Fox SM. Premature closure of the distal radial and ulnar physes in the dog Part 1. Pathogenesis and diagnosis. Comp Cont Ed 1984; 6: 128-38.
  • 4 Fox SM. Premature closure of the distal radial and ulnar physes in the dog Part 2. Treatment. Comp Cont Ed 1984; 6: 212-20.
  • 5 Fox SM, Bray JC, Guerin SR, Burbridge HM. Antebrachial deformities in the dog: Treatment with external fixation. J Small Anim Pract 1995; 36: 315-20.
  • 6 Johnson AL. Correction of radial and ulnar growth deformities resulting from premature physeal closure. In Current Techniques in Small Animal Surgery 1990. 3rd Edn Ed Bojrab MJ. Lea & Febiger; p 79.
  • 7 Morgan PW, Miller CW. Osteotomy for correction of premature growth plate closure in 24 dogs. Vet Comp Orthop Traumatol 1994; 7: 129-35.
  • 8 Shields Henney LH, Gambardella PC. Premature closure of the ulnar physis in the dog: A retrospective clinical study. J Am Anim Hosp Assoc 1989; 25: 573-81.
  • 9 Thomson MJ, Read RA, Day R. The comparative strengths of orthopaedic staples versus a 2.7 mm T plate in the stabilisation of distal radial osteotomies. Accepted for publication, Vet Comp Orthop Traumatol 1998
  • 10 Wallace MK, Boudrieau RJ, Hyodo K, Torzilli PA. Mechanical evaluation of three methods of plating distal radial osteotomies. J Vet Surg 1992; (21) 99-106.
  • 11 Weigel JP. Growth deformities, Vet Clin North Am Small Anim Pract. 1987; 17: 905-22.