The effects of progressive neuromuscular exercise program and taping on muscle strength and pain in patellofemoral pain. A randomized controlled blind study.
Pinar Basbug, Rabia Tugba Kilic, Ahmet Ozgur Atay, Volga Bayrakcı Tunay
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引用次数: 3
Abstract
Purpose: To investigate the effects of corrective kinesio taping applied on patellofemoral and foot joint in addition to a progressive neuromuscular exercise program in women with Patellofemoral Pain (PFP) on knee pain and muscle strength.
Methods: Thirty females (20-45 years), diagnosed with unilateral PFP were randomly divided into two groups: the exercise (n = 15) and the exercise and taping (n = 15). Both groups performed three-stage progressive neuromuscular exercises for 12 weeks as home exercises. Plantar and knee corrective taping was additionally applied to the exercise and taping group. The knee pain was measured using the Visual Analogue Scale (VAS) during stair ascending and descending. Isokinetic dynamometer was used to evaluate the isokinetic muscle strength of the hamstring and quadriceps femoris muscles. All assessments were conducted before the treatment, at the end of the 6th-week treatment, and at the end of the 12th week of the treatment.
Results: After intervention, pain, and muscles peak torque were improved in all groups (p ˂ 0.05). The decrease in pain and the increase in quadriceps and hamstring muscle peak tork were found to be significant for both groups (p < 0.05). In the taping group, the decrease in pain during stair descending and the increase in hamstring muscle tork were higher than that of the exercise group (p < 0.05).
Conclusion: In order to reduce pain in a short time and control it in the long term, it will be beneficial to tape the knee and foot in addition to neuromuscular exercises.
期刊介绍:
Somatosensory & Motor Research publishes original, high-quality papers that encompass the entire range of investigations related to the neural bases for somatic sensation, somatic motor function, somatic motor integration, and modeling thereof. Comprising anatomical, physiological, biochemical, pharmacological, behavioural, and psychophysical studies, Somatosensory & Motor Research covers all facets of the peripheral and central processes underlying cutaneous sensation, and includes studies relating to afferent and efferent mechanisms of deep structures (e.g., viscera, muscle). Studies of motor systems at all levels of the neuraxis are covered, but reports restricted to non-neural aspects of muscle generally would belong in other journals.