Vet Comp Orthop Traumatol 1990; 01(01): 02-09
DOI: 10.1055/s-0038-1633221
Original Research
Schattauer GmbH

The Energy Absorption Capacity of Equine Support Bandages

Part I: Comparison between Bandages Placed in Various Configurations and Tensions
W. H. Crawford
1   From the Department of Surgical Sciences, School of Veterinary Medicine, University of Wisconsin – Madison, Madison, WI 53706, USA
,
R. Vanderby Jr.
1   From the Department of Surgical Sciences, School of Veterinary Medicine, University of Wisconsin – Madison, Madison, WI 53706, USA
,
D. Neirby
1   From the Department of Surgical Sciences, School of Veterinary Medicine, University of Wisconsin – Madison, Madison, WI 53706, USA
,
E. V. Nordheim
1   From the Department of Surgical Sciences, School of Veterinary Medicine, University of Wisconsin – Madison, Madison, WI 53706, USA
,
C. J. Libbey
1   From the Department of Surgical Sciences, School of Veterinary Medicine, University of Wisconsin – Madison, Madison, WI 53706, USA
› Author Affiliations
Further Information

Publication History

Publication Date:
10 February 2018 (online)

Summary

Support bandages are placed on the distal limbs of horses to provide protection to the flexor tendons and suspensory ligaments during athletic activity. In this study, an equine cadaver leg model was used to measure the energy absorption capacity and the rate of energy absorption capacity loss of support bandages. Five different configurations of bandages were applied to the limb at two degrees of applications tension. In all configurations and at both tensions, bandaged legs absorbed significantly more energy than non-bandaged legs. Significant differences existed between bandage configurations in their ability to absorb energy. In addition, the effect of application tension on the energy absorption capacity of a bandage was found to be highly significant. The ability of a bandage to absorb energy declined over a 45 cycle trial. However, significant differences between bandage configurations in this respect were not found unless the bandage material was applied at full stretch tension. When the bandages were constructed with higher application tensions the rate of lost energy absorption capacity of the bandages was increased. The importance of bandage configuration and application tension for clinical use is discussed.

An equine cadaver leg model was used to measure the energy absorption capacity and the rate of energy absorption capacity loss of support bandages.

 
  • References

  • 1 Harrison J C. Care and training of the pacer and trotter. The United States Trotting Association; Columbus, Ohio: 1968
  • 2 Crawford W H, Nordheim E V, Vanderby R, Neirby D, Libbey C J. An equine cadaver leg model designed for testing bandage materials. Vet Comp Ortho Traum. 1989 2. (4) accepted for publication.
  • 3 Ott L. An introduction to statistical methods and data analysis. 2nd ed.. Boston: Duxbury Press; 1984
  • 4 Mechanics of knee and ankle bandages. Viljakka T. Acta Orthop Scand 1986; 57 (01) 54-8.
  • 5 Compression bandage in the treatment of ankle sprains. A comparative prospective study. Linde F, Hvass I, Jurgensen U, Madsen F. Scand J Rehabil Med 1984; 16 (04) 177-9.
  • 6 DeLacerda F. Ankle taping. Athletic Journ 1975; 56: 28.
  • 7 Rovere G D, Clarke T J, Yates C S, Burley K. Retrospective comparison of taping and ankle stabilizers in preventing ankle injuries. Amer Journ Sports Med 1988; 16 (03) 228-33.
  • 8 Unpublished data. Wann R J. 3M Corporate Research Analytical Service; St Paul, MN.:
  • 9 Crawford W H, Vanderby R, Neirby D, Libbey C J, Nordheim E V. The energy absorption capacity of equine support bandages. II: A comparion between bandages constructed from various materials. Vet Comp Ortho Traum. 1990 3. (2) accepted for publication.
  • 10 Thorsson O, Hemdal B, Lilja B, Westlin N. The effect of external pressure on intramuscular blood flow at rest and after running. Med Sci Sports Exerc (UNITED STATES) 1987; 19 (05) 469-73.
  • 11 Yamaguchi K, Gans H, Yamaguchi Y, Hagisawa S. External compression with elastic bandages: its effect on the peripheral blood circulation during skin traction. Arch Phys Med Rehabil 1986; 67 (05) 326-31.
  • 12 Hagenouw R R, Bridenbaugh P O, van Egmond J, Stuebing R. Tourniquet pain: a volunteer study. Anesth Analg 1986; 65 (11) 1175-80.
  • 13 McLaren A C, Rorabeck C H. The pressure distribution under tourniquets. J Bone Joint Surg [Am] 1985; 67 (03) 433-8.