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Low-frequency electrical stimulation with variable intensity preserves torque

机译:具有可变强度的低频电刺激保留扭矩

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摘要

The neuromuscular electrical stimulation (NMES) parameters that optimally modulate torque output during prolonged stimulation protocols are not well-established. The purpose of this study was to compare torque output between low-frequency and high-frequency NMES protocols while increasing stimulation intensity. Eleven healthy young individuals received a repetitive, intermittent low-frequency (20?Hz) and high-frequency (60?Hz) NMES over the quadriceps muscles. Stimulation intensity was increased throughout the protocol to achieve a submaximal target torque output. Mean torque, peak torque and torque-time integral (TTI) were measured. The 20?Hz protocol produced a higher mean torque (P?=?0.001) and TTI (P?=?0.008) compared to the 60?Hz protocol. The stimulation intensity required to achieve target torque during NMES was not different between frequencies (P?>?0.0001). When the goal is to optimize torque output during prolonged submaximal NMES, such as during functional electrical stimulation, low-frequency stimulation may be preferred.
机译:在长期刺激协议期间最佳地调制扭矩输出的神经肌肉电刺激(NMES)参数不是很好的。本研究的目的是在增加刺激强度的同时比较低频和高频NMES协议之间的扭矩输出。 11个健康的年轻人在Quaddriceps肌肉上获得重复,间歇的低频(20次Hz)和高频(60?Hz)NMES。在整个方案中增加了刺激强度,以实现潜水部目标扭矩输出。测量平均扭矩,峰值扭矩和扭矩 - 时间积分(TTI)。与60·Hz协议相比,20·Hz协议产生更高的平均扭矩(P?= 0.001)和TTI(P?= 0.008)。在NMES期间实现目标扭矩所需的刺激强度在频率之间没有差异(P?> 0.0001)。当目标是在长期的潜水线NMES期间优化扭矩输出时,例如在功能电刺激期间,可能优选低频刺激。

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