Schiefer Matthew A, Polasek Katharine H, Triolo Ronald J, Pinault Gilles C, Tyler Dustin J
Department of Biomedical Engineering at Case Western Reserve University (CWRU), Cleveland, OH 44106 USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:610-3. doi: 10.1109/IEMBS.2009.5332757.
We have tested the hypothesis that the Flat Interface Nerve Electrode (FINE) can selectively stimulate each muscle innervated by the common femoral nerve of the human, near the inguinal ligament in a series of intraoperative trials. During routine vascular surgeries, an 8-contact FINE was placed around the common femoral nerve between the inguinal ligament and the first branching point. The efficacy of the FINE to selectively recruit muscles innervated by the femoral nerve was determined from electromyograms (EMGs) recorded in response to electrical stimulation. At least four of the six muscles innervated by the femoral nerve were selectively recruited in all subjects. Of these, at least one muscle was a hip flexor and two muscles were knee extensors. Results from the intraoperative experiments were used to estimate the potential for the electrode to restore knee extension and hip flexion through Functional Electrical Stimulation (FES). Normalized EMGs and biomechanical simulations were used to estimate joint moments and functional efficacy. Estimated knee extension moments exceed the threshold required for the sit-to-stand transition.
扁平界面神经电极(FINE)能够在腹股沟韧带附近,选择性地刺激由人股总神经支配的每一块肌肉。在常规血管手术期间,将一个8触点的FINE放置在腹股沟韧带和第一分支点之间的股总神经周围。通过记录电刺激响应的肌电图(EMG)来确定FINE选择性募集股神经支配肌肉的功效。在所有受试者中,股神经支配的六块肌肉中至少有四块被选择性募集。其中,至少有一块肌肉是髋屈肌,两块肌肉是膝伸肌。术中实验结果用于评估该电极通过功能性电刺激(FES)恢复膝关节伸展和髋关节屈曲的潜力。使用标准化的EMG和生物力学模拟来估计关节力矩和功能功效。估计的膝关节伸展力矩超过了从坐姿到站立姿势转换所需的阈值。