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干扰电流和经皮电刺激神经频率的改变:对神经兴奋的影响。

Alteration of interferential current and transcutaneous electrical nerve stimulation frequency: effects on nerve excitation.

作者信息

Palmer S T, Martin D J, Steedman W M, Ravey J

机构信息

Department of Physiotherapy, Queen Margaret University College, Edinburgh, Scotland.

出版信息

Arch Phys Med Rehabil. 1999 Sep;80(9):1065-71. doi: 10.1016/s0003-9993(99)90062-x.

Abstract

OBJECTIVES

To investigate the effects of different interferential current (IC) and transcutaneous electrical nerve stimulation (TENS) frequencies on sensory, motor, and pain thresholds.

STUDY DESIGN

Single blind, repeated measures design.

SETTING

Laboratory.

PARTICIPANTS

Women students 18 to 30 years old (n = 24).

INTERVENTIONS

Premodulated IC and square-wave TENS pulses (125micros phase duration) were applied over the median nerve at a range of frequencies in all subjects.

MAIN OUTCOME MEASURES

The peak current (in milliamperes) was recorded twice at each threshold for each frequency, and averaged.

RESULTS

Both IC and TENS displayed a statistically significant effect of frequency for each threshold. However, frequency effects with IC were not well defined and were of small magnitude. Pure 4kHz current (0Hz amplitude modulated frequency) with IC did not produce effects different from those produced when an amplitude modulated frequency was included. With TENS, frequency effects were very clearly observed, with a distinct increase in the current intensity at each threshold as frequency decreased.

CONCLUSIONS

It is postulated that the medium frequency component of IC is the main parameter in stimulation, contrary to traditional claims of the amplitude modulated frequency being important. TENS was shown to be a more adaptable method of stimulating these nerve pathways than IC.

摘要

目的

探讨不同干扰电流(IC)和经皮电刺激神经疗法(TENS)频率对感觉、运动和疼痛阈值的影响。

研究设计

单盲、重复测量设计。

研究地点

实验室。

参与者

18至30岁的女学生(n = 24)。

干预措施

对所有受试者的正中神经施加预调制IC和方波TENS脉冲(相位持续时间125微秒),频率范围不同。

主要观察指标

每个频率下,在每个阈值处记录两次峰值电流(以毫安为单位),并求平均值。

结果

IC和TENS在每个阈值处均显示出频率的统计学显著效应。然而,IC的频率效应不明确且幅度较小。IC的纯4kHz电流(0Hz调幅频率)产生的效果与包含调幅频率时产生的效果没有差异。使用TENS时,频率效应非常明显,随着频率降低,每个阈值处的电流强度明显增加。

结论

据推测,与传统观点认为调幅频率很重要相反,IC的中频成分是刺激的主要参数。结果表明,与IC相比,TENS是一种更适合刺激这些神经通路的方法。

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