KOA is a degenerative joint disorder characterized by progressive cartilage breakdown, joint pain, stiffness, muscle weakness, and impaired functional mobility. One of the key biomechanical issues in KOA is increased medial compartment loading, which contributes to disease progression and functional limitations. Additionally, individuals with KOA commonly exhibit altered gait patterns and increased gait variability, reflecting impaired neuromuscular control and increased risk of falls.
Conservative management strategies for KOA primarily focus on pain reduction, improving joint function, and enhancing quality of life. Among these, biomechanical interventions such as knee off-loader braces aim to redistribute joint loading, while strengthening exercises target neuromuscular deficits. However, traditional weight-bearing exercises may increase joint stress and pain, making NWB strength training a safer and more effective alternative.
Knee and heel off-loader braces have been introduced as an advanced biomechanical intervention designed to reduce joint loading by altering lower limb alignment and redistributing forces away from the affected knee compartment. While these braces effectively address mechanical stress, they do not directly improve muscle strength and neuromuscular control. Conversely, NWB strength training improves muscular support and joint stability but does not correct abnormal loading patterns.
Despite the individual effectiveness of these interventions, limited research has explored their combined effect. Therefore, this study aims to evaluate the synergistic impact of combining knee and heel off-loader brace with NWB strength training on pain, gait variability, and functional outcome in KOA.
This study will adopt a single-blinded, two-arm parallel randomized controlled design. A total of 20 participants will be randomly allocated into two groups. The experimental group will receive a knee and heel off-loader brace along with a structured NWB strength training program, while the control group will receive a conventional knee off-loader brace with the same exercise protocol.
The intervention will be conducted over four weeks, with three sessions per week. Outcome measures will include the Numeric Pain Rating Scale (NPRS) for pain, the JACK scale for gait variability, and the Knee Injury and Osteoarthritis Outcome Score (KOOS) for functional assessment.
The study aims to determine whether combining biomechanical off-loading with neuromuscular strengthening provides superior clinical benefits. It is expected that this integrated approach will lead to greater pain reduction, improved gait stability, and enhanced functional performance, thereby contributing to evidence-based rehabilitation strategies for individuals with knee osteoarthritis.