Ward Alex R, Robertson Valma J, Ioannou Harry
Department of Human Physiology and Anatomy, School of Human Biosciences, La Trobe University, Bundoora, Melbourne, Vic. 3086, Australia.
Med Eng Phys. 2004 Sep;26(7):569-79. doi: 10.1016/j.medengphy.2004.04.007.
We investigated the frequency and duty cycle dependence of maximal electrically induced torque (MEIT) of the wrist extensors. Fifty hertz burst modulated sinusoidal alternating current (AC) in the frequency range 0.5-20 kHz was used, with duty cycles ranging from a minimum (one cycle) to maximum (continuous AC). MEITs were similar at low frequencies but decreased markedly above 2.5 kHz. MEITs also decreased markedly above a 20% duty cycle. Subjective reports of discomfort were fewest at 4 kHz and at duty cycles in the range 20-25%. Our conclusion is that for maximum torque production, a frequency of 1 kHz and a duty cycle of 20% are indicated. When comfort is a major consideration, a frequency of 2.5 kHz provides an acceptable trade-off between MEIT and comfort. The findings also suggest that low duty cycle, burst modulated AC stimulation may be more effective than stimulation using conventional low-frequency pulsed current.
我们研究了腕伸肌最大电诱发扭矩(MEIT)对频率和占空比的依赖性。使用频率范围为0.5 - 20 kHz的50赫兹猝发调制正弦交流电(AC),占空比从最小值(一个周期)到最大值(连续AC)。低频时MEIT相似,但在2.5 kHz以上显著下降。占空比高于20%时MEIT也显著下降。在4 kHz以及20 - 25%的占空比范围内,不适的主观报告最少。我们的结论是,为了产生最大扭矩,建议频率为1 kHz,占空比为20%。当舒适性是主要考虑因素时,2.5 kHz的频率在MEIT和舒适性之间提供了可接受的权衡。研究结果还表明,低占空比的猝发调制AC刺激可能比使用传统低频脉冲电流的刺激更有效。