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A real-time platform for studying the modulatory capacity of epidural stimulation after spinal cord injury

机译:研究脊髓损伤后硬膜外刺激调节能力的实时平台

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Epidural electrical stimulation (EES) showed promises to improve standing and walking after neurological disorders. To date, EES has been delivered continuously, although time-dependent stimulations would likely be more efficient to activate specific subsets of sensorimotor circuits with the appropriate timing. To address this issue, we developed a real-time stimulation platform that allows to trigger EES during pre-defined phases of the gait cycle in freely walking rats. We leveraged this platform to demonstrate the ability of time-dependent EES to modulate key aspects of locomotor kinematics in rats with complete spinal cord transection. This platform will support the development of personalized stimulation strategies that can be tailored to the need of individual subjects.
机译:硬膜外电气刺激(EES)表明,有望改善神经系统障碍后的站立和行走。迄今为止,EES已经连续交付,尽管随着时间依赖的刺激可能更有效地使用适当的定时激活感官电路电路的特定子集。为了解决这个问题,我们开发了一个实时刺激平台,允许在自由行走大鼠的步态周期的预定阶段期间触发EES。我们利用该平台来证明时间依赖EES在具有完全脊髓横断调的大鼠中调节运动运动学的关键方面的能力。该平台将支持开发个人化刺激策略,这些策略可以根据个人科目的需要量身定制。

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