Selkowitz David M, Rossman Erin G, Fitzpatrick Shawn
Department of Physical Therapy Education, Western University of Health Sciences, Pomona, California 91767-3929, USA.
Am J Phys Med Rehabil. 2009 Dec;88(12):973-8. doi: 10.1097/PHM.0b013e3181c1eda5.
To investigate the effects of medium frequency burst-modulated alternating current on the current amplitude necessary to produce maximally tolerated electrically stimulated quadriceps femoris isometric knee extension torque.
Ten healthy volunteers participated in this study. Neuromuscular electrical stimulation was applied to the quadriceps femoris at two different carrier frequencies: 2500 and 5000 Hz. All subjects received both frequencies in a random order. Maximum voluntary isometric contraction torque of knee extension was measured. The current amplitude (in milliamperes) required to produce maximally tolerated isometric contraction knee extension torque at both carrier frequencies was recorded.
The mean maximally tolerated isometric contraction torque (in %maximum voluntary isometric contraction) was 37.6% (SD, +/-20.9) for 2500 Hz and 37.2% (SD, +/-20.9) for 5000 Hz. These values were not significantly different (P = 0.944). However, the mean current amplitude required to produce maximally tolerated isometric contraction torque with 2500 Hz was 91.9 (SD, +/-23.1) mA and with 5000 Hz it was 167.4 (SD, +/-34.5) mA (P < 0.001).
A carrier frequency of 2500 Hz is nearly twice as efficient for generating quadriceps femoris knee extension torque as one at 5000 Hz. Using lower medium frequency burst-modulated alternating current carrier frequencies will allow lower current amplitudes to be used to generate maximum-tolerated contraction torque, and will limit the possibility of reaching the upper limits of current amplitude on an electrotherapeutic device before reaching an individual's maximum tolerable contraction torque.
探讨中频脉冲调制交流电对产生最大耐受电刺激股四头肌等长膝关节伸展扭矩所需电流幅度的影响。
10名健康志愿者参与了本研究。以两种不同的载波频率(2500Hz和5000Hz)对股四头肌施加神经肌肉电刺激。所有受试者均以随机顺序接受这两种频率的刺激。测量膝关节伸展的最大自主等长收缩扭矩。记录在两种载波频率下产生最大耐受等长收缩膝关节伸展扭矩所需的电流幅度(以毫安为单位)。
2500Hz时,平均最大耐受等长收缩扭矩(占最大自主等长收缩的百分比)为37.6%(标准差,±20.9),5000Hz时为37.2%(标准差,±20.9)。这些值无显著差异(P = 0.944)。然而,2500Hz时产生最大耐受等长收缩扭矩所需的平均电流幅度为91.9(标准差,±23.1)mA,5000Hz时为167.4(标准差,±34.5)mA(P < 0.001)。
2500Hz的载波频率在产生股四头肌膝关节伸展扭矩方面的效率几乎是5000Hz的两倍。使用较低的中频脉冲调制交流电载波频率将允许使用较低的电流幅度来产生最大耐受收缩扭矩,并将限制在达到个体最大耐受收缩扭矩之前在电疗设备上达到电流幅度上限的可能性。