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Spatially distributed sequential stimulation reduces muscle fatigue during neuromuscular electrical stimulation

机译:空间分布顺序刺激可减轻神经肌肉电刺激过程中的肌肉疲劳

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A critical limitation with neuromuscular electrical stimulation (NMES) approach is the rapid onset of muscle fatigue during repeated contractions, which results in the muscle force decay and slowing of muscle contractile properties. In our previous study, we demonstrated that spatially distributed sequential stimulation (SDSS) show a drastically greater fatigue-reducing ability compared to a conventional, single active electrode stimulation (SES) with an individual with spinal cord injury when applied for plantar flexors. The purpose of the present study is to explore the fatigue-reducing ability of SDSS for major lower limb muscle groups in the able-bodied population as well as individuals with spinal cord injury (SCI). SDSS was delivered through four active electrodes applied to the muscle of interest, sending a stimulation pulse to each electrode one after another with 90° phase shift between successive electrodes. For comparison, SES was delivered through one active electrode. For both modes of stimulation, the resultant frequency to the muscle as a whole was 40 Hz. Using corresponding protocols for the fatiguing stimulation, we demonstrated the fatigue-reducing ability of SDSS by higher fatigue indices as compared with single active electrode setup for major leg muscles in both subject groups. The present work verifies and extends reported findings on the effectiveness of using spatially distributed sequential stimulation in the leg muscles to reduce muscle fatigue. Application of this technique can improve the usefulness of NMES during functional movements in the clinical setup.
机译:神经肌肉电刺激(NMES)方法的一个关键局限性是反复收缩过程中肌肉疲劳的快速发作,这会导致肌肉力量衰减和肌肉收缩特性减慢。在我们以前的研究中,我们证明,与传统的单活动电极刺激(SES)相比,当患者使用plant屈肌进行脊髓损伤时,空间分布连续刺激(SDSS)表现出极大的减轻疲劳能力。本研究的目的是探讨SDSS对身体健全的人群以及脊髓损伤(SCI)个体的主要下肢肌肉群的疲劳减轻能力。 SDSS通过施加到目标肌肉的四个有源电极传递,在每个连续电极之间相移90°的情况下,一个接一个地向每个电极发送刺激脉冲。为了比较,通过一个有源电极递送SES。对于这两种刺激方式,整个肌肉的合成频率为40 Hz。使用疲劳疲劳刺激的相应协议,我们与两个受试者组的主要腿部肌肉的单个活动电极设置相比,通过较高的疲劳指数证明了SDSS的疲劳减轻能力。本工作验证并扩展了在腿部肌肉中使用空间分布顺序刺激以减轻肌肉疲劳的有效性的报道发现。这项技术的应用可以提高NMES在临床功能性运动过程中的实用性。

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