感觉阈下经皮电神经刺激对实验性膝关节疼痛患者的疼痛感知和步态模式的疗效。

Efficacy of Sensory Transcutaneous Electrical Nerve Stimulation on Perceived Pain and Gait Patterns in Individuals With Experimental Knee Pain.

作者信息

Son S Jun, Kim Hyunsoo, Seeley Matthew K, Hopkins J Ty

机构信息

Department of Exercise Sciences, Human Performance Research Center, Brigham Young University, Provo, UT.

Department of Kinesiology, Sturzebecker Health Sciences Center, West Chester University, West Chester, PA.

出版信息

Arch Phys Med Rehabil. 2017 Jan;98(1):25-35. doi: 10.1016/j.apmr.2016.05.022. Epub 2016 Jun 23.

Abstract

OBJECTIVES

To examine the effect of experimental knee pain on perceived knee pain and gait patterns and to examine the efficacy of transcutaneous electrical nerve stimulation (TENS) on perceived knee pain and pain-induced knee gait mechanics.

DESIGN

Crossover trial.

SETTING

Biomechanics laboratory.

PARTICIPANTS

Recreationally active, individuals without musculoskeletal pain aged 18 to 35 years (N=30).

INTERVENTIONS

Thirty able-bodied individuals were assigned to either a TENS (n=15) or a placebo (n=15) group. All participants completed 3 experimental sessions in a counterbalanced order separated by 2 days: (1) hypertonic saline infusion (5% NaCl); (2) isotonic saline infusion (0.9% NaCl); and (3) control. Each group received sensory electrical stimulation or placebo treatment for 20 minutes, respectively.

MAIN OUTCOME MEASURES

Perceived pain was collected every 2 minutes using a 10-cm visual analog scale (VAS) for 50 minutes and analyzed using a mixed model analysis of covariance with repeated measures. Gait analyses were performed at baseline, infusion, and treatment. Sagittal and frontal knee angles and internal net joint torque across the entire stance were analyzed using a functional data analysis approach.

RESULTS

Hypertonic saline infusion increased perceived pain (4/10cm on a VAS; P<.05) and altered right knee angle (more flexion and less abduction; P<.05) and internal net joint torque (less extension and greater abduction; P<.05) across various stance phases. TENS treatment reduced perceived pain and improved right sagittal gait abnormalities as compared with placebo treatment (P<.05).

CONCLUSIONS

This pain model increases perceived pain and induces compensatory gait patterns in a way that indicates potential quadriceps weakness. However, TENS treatment effectively reduces perceived pain and restores pain-induced gait abnormalities in sagittal knee mechanics.

摘要

目的

研究实验性膝关节疼痛对感知膝关节疼痛和步态模式的影响,并探讨经皮电刺激神经疗法(TENS)对感知膝关节疼痛和疼痛诱发的膝关节步态力学的疗效。

设计

交叉试验。

地点

生物力学实验室。

参与者

18至35岁、无肌肉骨骼疼痛、有休闲活动习惯的个体(N = 30)。

干预措施

30名身体健全的个体被分为TENS组(n = 15)或安慰剂组(n = 15)。所有参与者以平衡顺序完成3次实验,每次间隔2天:(1)高渗盐水输注(5%氯化钠);(2)等渗盐水输注(0.9%氯化钠);(3)对照。每组分别接受20分钟的感觉电刺激或安慰剂治疗。

主要观察指标

使用10厘米视觉模拟量表(VAS)每2分钟收集一次感知疼痛,持续50分钟,并采用重复测量的协方差混合模型分析进行分析。在基线、输注和治疗时进行步态分析。使用功能数据分析方法分析整个站立期的矢状面和额状面膝关节角度以及内部净关节扭矩。

结果

高渗盐水输注增加了感知疼痛(VAS评分为4/10厘米;P <.05),并改变了不同站立阶段的右膝角度(更多屈曲和更少外展;P <.05)和内部净关节扭矩(更少伸展和更大外展;P <.05)。与安慰剂治疗相比,TENS治疗减轻了感知疼痛并改善了右矢状面步态异常(P <.05)。

结论

这种疼痛模型增加了感知疼痛,并以表明股四头肌潜在无力的方式诱发了代偿性步态模式。然而,TENS治疗有效地减轻了感知疼痛,并恢复了疼痛诱发的膝关节矢状面力学步态异常。

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