Verónica Morales-Sánchez, Rafael E. Reigal, Raul Antunes, Rui Matos, Antonio Hernández-Mendo, Diogo Monteiro
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Of the twelve trials in each session, the first three and the last three were performed without feedback, and the intermediate six with feedback. The recording of muscle activity was performed using CY-351/2 Mioback equipment, which allowed the amplitude of the electromyographic signal to be evaluated. The results indicated that the sample analyzed reached greater amplitude during the biofeedback trials, both for the maximum (Z = −13.43, p < 0.001, Cohen’s d = 0.64, 95% CI (0.27, 1.01)) and mean (Z = −7.26, p < 0.001, Cohen’s d = 0.24, 95% CI (−0.12, 0.60)) values. The amplitude also increased throughout the ten sessions, both for the maximum (Z = −3.06, p < 0.01, Cohen’s d = 1.37, 95% CI (0.29, 2.45)) and mean (Z = −3.06, p < 0.01, Cohen’s d = 1.20, 95% CI (0.34, 2.08)) values. 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The results indicated that the sample analyzed reached greater amplitude during the biofeedback trials, both for the maximum (Z = −13.43, p < 0.001, Cohen’s d = 0.64, 95% CI (0.27, 1.01)) and mean (Z = −7.26, p < 0.001, Cohen’s d = 0.24, 95% CI (−0.12, 0.60)) values. The amplitude also increased throughout the ten sessions, both for the maximum (Z = −3.06, p < 0.01, Cohen’s d = 1.37, 95% CI (0.29, 2.45)) and mean (Z = −3.06, p < 0.01, Cohen’s d = 1.20, 95% CI (0.34, 2.08)) values. 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引用次数: 0
摘要
肌电生物反馈(Electromyographic biofeedback, EMG-BF)是一种在损伤后康复过程中有助于改善肌肉张力和控制的技术。本研究的目的是确定肌电- bf在膝关节损伤后增加股外侧肌电活动的有效性。样本包括四名接受手术或康复治疗的个体,以解决部分半月板撕裂或髌骨肌腱拉伤。干预包括一个10次肌电- bf工作的程序。每次进行12次试验,参与者被指示以未受伤的半侧肢体的股外侧肌产生的肌肉张力为目标。在每个阶段的12项试验中,前3项和后3项没有反馈,中间6项有反馈。使用CY-351/2 Mioback设备记录肌肉活动,该设备允许评估肌电信号的振幅。结果表明,在生物反馈试验中,所分析的样品达到更大的振幅,两者都达到最大值(Z = - 13.43, p <0.001, Cohen’s d = 0.64, 95% CI(0.27, 1.01))和mean (Z = - 7.26, p <0.001, Cohen’s d = 0.24, 95% CI(- 0.12, 0.60))值。振幅在10个疗程中也有所增加,均为最大值(Z = - 3.06, p <0.01, Cohen’s d = 1.37, 95% CI(0.29, 2.45))和mean (Z = - 3.06, p <0.01, Cohen’s d = 1.20, 95% CI(0.34, 2.08))值。因此,结果强调了这种技术在改善肌肉活动方面的功效,表明它是一种有用的损伤恢复治疗方法。
Efficacy of Electromyographic Biofeedback in the Recovery of the Vastus Lateralis after Knee Injury: A Single-Group Case Study
Electromyographic biofeedback (EMG-BF) is a technique that can contribute to the improvement of muscle tone and control in the rehabilitation process after injury. The aim of this research was to determine the effectiveness of EMG-BF in increasing the electromyographic activity of the vastus lateralis after knee injury. The sample consisted of four individuals who had undergone surgery or rehabilitation to resolve either a partial meniscal tear or a patellar tendon strain. The intervention consisted of a program of ten sessions of EMG-BF work. Twelve trials were performed in each session, in which participants were instructed to target the muscle tension produced by the vastus lateralis of the uninjured hemilateral limb. Of the twelve trials in each session, the first three and the last three were performed without feedback, and the intermediate six with feedback. The recording of muscle activity was performed using CY-351/2 Mioback equipment, which allowed the amplitude of the electromyographic signal to be evaluated. The results indicated that the sample analyzed reached greater amplitude during the biofeedback trials, both for the maximum (Z = −13.43, p < 0.001, Cohen’s d = 0.64, 95% CI (0.27, 1.01)) and mean (Z = −7.26, p < 0.001, Cohen’s d = 0.24, 95% CI (−0.12, 0.60)) values. The amplitude also increased throughout the ten sessions, both for the maximum (Z = −3.06, p < 0.01, Cohen’s d = 1.37, 95% CI (0.29, 2.45)) and mean (Z = −3.06, p < 0.01, Cohen’s d = 1.20, 95% CI (0.34, 2.08)) values. Thus, the results highlight the efficacy of this technique in improving muscle activity, suggesting that it is a useful therapeutic procedure in injury recovery.
期刊介绍:
MLTJ (Muscle, Ligaments and Tendons Journal) is an open access, peer-reviewed online journal that encompasses all aspects of clinical and basic research studies related to musculoskeletal, ligament, tendon, public health, exercise physiology and kinesiology issues. Muscle, Ligaments and Tendons Journal (MLTJ) provides the platform for exchange of new clinical and scientific information in the most precise and expeditious way to achieve timely dissemination of information and cross-fertilization of ideas. It is the official journal of the Italian Society of Muscles, Ligaments and Tendons (I.S.Mu.L.T.), Società Italiana Terapia con Onde D’urto (S.I.T.O.D.) and Società Italiana Studio Piede e Caviglia (S.I.S.P.E.C)