Birenbaum Nathan K, MacEwan Matthew R, Ray Wilson Z
Department of Biomedical Engineering, Washington University in St. Louis, St. Louis, MO, USA.
Department of Neurosurgery, Washington University School of Medicine, St. Louis, MO, USA.
Neural Regen Res. 2017 Jun;12(6):906-909. doi: 10.4103/1673-5374.208565.
Macro-sieve electrodes were implanted in the sciatic nerve of five adult male Lewis rats following spinal cord injury to assess the ability of the macro-sieve electrode to interface regenerated peripheral nerve fibers post-spinal cord injury. Each spinal cord injury was performed right lateral hemisection of the cord at the T site. Five months post-implantation, the ability of the macro-sieve electrode to interface the regenerated nerve was assessed by stimulating through the macro-sieve electrode and recording both electromyography signals and evoked muscle force from distal musculature. Electromyography measurements were recorded from the tibialis anterior and gastrocnemius muscles, while evoked muscle force measurements were recorded from the tibialis anterior, extensor digitorum longus, and gastrocnemius muscles. The macro-sieve electrode and regenerated sciatic nerve were then explanted for histological evaluation. Successful sciatic nerve regeneration across the macro-sieve electrode interface following spinal cord injury was seen in all five animals. Recorded electromyography signals and muscle force recordings obtained through macro-sieve electrode stimulation confirm the ability of the macro-sieve electrode to successfully recruit distal musculature in this injury model. Taken together, these results demonstrate the macro-sieve electrode as a viable interface for peripheral nerve stimulation in the context of spinal cord injury.
在五只成年雄性Lewis大鼠的脊髓损伤后,将宏观筛孔电极植入坐骨神经,以评估宏观筛孔电极与脊髓损伤后再生的周围神经纤维连接的能力。每次脊髓损伤均在T节段进行脊髓右侧半横切。植入五个月后,通过宏观筛孔电极进行刺激,并记录肌电图信号以及来自远端肌肉组织的诱发肌肉力量,以此评估宏观筛孔电极与再生神经连接的能力。从胫骨前肌和腓肠肌记录肌电图测量值,同时从胫骨前肌、趾长伸肌和腓肠肌记录诱发肌肉力量测量值。然后取出宏观筛孔电极和再生的坐骨神经进行组织学评估。在所有五只动物中均观察到脊髓损伤后坐骨神经成功通过宏观筛孔电极界面再生。通过宏观筛孔电极刺激获得的记录的肌电图信号和肌肉力量记录证实了宏观筛孔电极在该损伤模型中成功募集远端肌肉组织的能力。综上所述,这些结果表明宏观筛孔电极是脊髓损伤情况下周围神经刺激的可行界面。