Nearly one out of every two Americans will develop knee osteoarthritis by age 85. Over 20 million Americans, including nearly three million Veterans, currently have painful knee arthritis that limits their daily activity or recreation. The vast majority of those individuals will be prescribed anti-inflammatory drugs that provide some pain relief but do not slow the progression of the disease. Often people with knee arthritis are told they must live with the pain until they become appropriate candidates for knee replacement surgery, but that can require tolerating the pain and limiting function for many years. Because of other health issues, some individuals are never acceptable surgery candidates. What is desperately needed are better conservative approaches for treating these patients. Two such approaches will be tested and compared in this study.
This study is a randomized controlled trial to investigate conservative treatments for individuals with painful knee osteoarthritis (OA). The study will recruit participants who have isolated, medial compartment knee OA. Subjects will be assigned to one of two gait training groups. Both groups will undergo gait analysis to determine their foot progression angle at their comfortable walking speed. Both groups will receive personalized gait retraining to either alter their foot progression angle or to achieve consistency of their natural foot progression angle. Gait retraining will consist of once a week sessions for six weeks. The gait training will use a fading feedback approach, where the percentage of each weekly session during which feedback is used is decreased from week to week until no feedback is used by the last training session. Throughout the six-week training period subjects will be encouraged to practice their gait for at least ten minutes per day. Subjects will continue to practice their gait throughout the remainder of the 52-week intervention. Subjects will have their walking activity recorded using a 3-axis pedometer. Compared to their baseline walking activity, participants will be instructed to increase their daily walking by ten minutes per day throughout the 52-week intervention. All subjects will receive monthly phone calls to encourage maintaining a regular walking regimen. Walking activity will be monitored periodically using a pedometer. Subjects will receive knee MRIs and weight-bearing knee radiographs at the start and end of the study. All participants will complete pain evaluations and clinical knee score questionnaires during the study. The investigators expect that subjects in both groups will have a reduction in knee pain over the course of the 52-week intervention. The primary objective of the study it to determine if the change in pain between baseline and week 52 is different between the two groups.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
TREATMENT
Masking
SINGLE
Enrollment
68
Participants will receive personalized gait training while walking on a treadmill with real-time, haptic feedback to encourage them to adopt a new foot progression angle. Participants will walk for an additional ten minutes per day to internalize their new foot progression angle over 52 weeks.
Participants will receive personalized gait training while walking on a treadmill with haptic feedback to encourage them to maintain a consistent foot progression angle. Participants will walk an additional ten minutes per day to internalize the consistency of their foot progression angle over 52 weeks.
VA Palo Alto Health Care System, Palo Alto, CA
Palo Alto, California, United States
Stanford University, Depts: Bioengineering; Orthopaedics
Stanford, California, United States
Change in Medial Knee Pain
Change in medial knee pain between baseline and week 52 using an 11-point Numeric Rating Scale (NRS) to assess average medial knee pain over the past 7 day period. Possible scores range from 0 (no pain) to 10 (worst pain imaginable). Change = (Week 52 score - Baseline score).
Time frame: Baseline and Week 52
Change in Knee Adduction Moment
Change in magnitude of the more prominent peak in the knee adduction moment (KAM), a surrogate measure for medio-lateral load distribution in the knee, between baseline and week 52. A reduction in KAM indicates a shift in loading from the medial to the lateral compartment of the knee. Change = (Week 52 - Baseline).
Time frame: Baseline and Week 52
Change in Medial T1rho Relaxation Time
Change in T1rho relaxation time measured from quantitative MRI in the medial compartment of the knee between baseline and week 52. T1ρ relaxation time is sensitive to changes in proteoglycan content in the articular cartilage. Increased values of T1rho indicate increased depletion of proteoglycans and increased cartilage degeneration. Change = (Week 52 - Baseline).
Time frame: Baseline and Week 52
Change in Medial T2 Relaxation Time
Change in T2 relaxation time measured from quantitative MRI in the medial compartment of the knee between baseline and week 52. T2 relaxation time is sensitive to changes in water content and collagen matrix integrity of the articular cartilage. Increased values of T2 indicate increased cartilage degeneration. Change = (Week 52 - Baseline).
Time frame: Baseline and Week 52
Change in Lateral T1rho Relaxation Time
Change in T1rho relaxation time measured from quantitative MRI in the lateral compartment of the knee between baseline and week 52. T1ρ relaxation time is sensitive to changes in proteoglycan content in the articular cartilage. Increased values of T1rho indicate increased depletion of proteoglycans and increased cartilage degeneration. Change = (Week 52 - Baseline).
Time frame: Baseline and Week 52
Change in Lateral T2 Relaxation Time
Change in T2 relaxation time measured from quantitative MRI in the lateral compartment of the knee between baseline and week 52. T2 relaxation time is sensitive to changes in water content and collagen matrix integrity of the articular cartilage. Increased values of T2 indicate increased cartilage degeneration. Change = (Week 52 - Baseline).
Time frame: Baseline and Week 52
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