The effect of anti-gravity treadmill training for prosthetic rehabilitation of a case with below-knee amputation

Prosthet Orthot Int. 2015 Dec;39(6):502-6. doi: 10.1177/0309364614532866. Epub 2014 May 12.

Abstract

Background: The aim of this case study was to verify the efficacy and safety of anti-gravity treadmill training for prosthetic rehabilitation following below-knee amputation.

Case description and methods: The patient underwent left below-knee amputation as a result of diabetic foot gangrene. Since his physical strength and vitality had declined during the perioperative period, anti-gravity treadmill training was introduced for his outpatient prosthetic rehabilitation.

Findings and outcomes: Stable prosthetic gait exercise could be carried out under guidance on the anti-gravity treadmill, quickly resulting in improved gait. Furthermore, the patient's self-efficacy and exercise tolerance were elevated after the period of anti-gravity treadmill training. At the final evaluation following 6 weeks of rehabilitation with the anti-gravity treadmill, he had acquired prosthetic gait with the assistance of a T-cane.

Conclusion: The anti-gravity treadmill was found to be a useful instrument for prosthetic rehabilitation following below-knee amputation.

Clinical relevance: Anti-gravity treadmill training has the potential to support the prosthetic rehabilitation of below-knee amputees, especially for patients whose physical strength and vitality are decreased.

Keywords: Anti-gravity treadmill; below-knee amputation; prosthetic rehabilitation.

Publication types

  • Case Reports
  • Review

MeSH terms

  • Aged
  • Amputation, Surgical / methods*
  • Amputation, Surgical / rehabilitation
  • Amputees / rehabilitation*
  • Artificial Limbs*
  • Diabetic Foot / surgery
  • Exercise Test / methods*
  • Exercise Tolerance / physiology
  • Follow-Up Studies
  • Humans
  • Hypogravity*
  • Male
  • Patient Satisfaction
  • Prosthesis Fitting / methods
  • Tibia / surgery
  • Treatment Outcome
  • Walking / physiology*