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Electrical neurostimulation for chronic pain: On selective relay of sensory neural activities in myelinated nerve fibers

机译:慢性疼痛的电源神经刺激:骨髓神经纤维中感觉神经活动的选择性继电器

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Chronic pain affects about 100 million adults in the US. Despite their great need, neuropharmacology and neurostimulation therapies for chronic pain have been associated with suboptimal efficacy and limited long-term success, as their mechanisms of action are unclear. Yet current computational models of pain transmission suffer from several limitations. In particular, dorsal column models do not include the fundamental underlying sensory activity traveling in these nerve fibers. We developed a (simple) simulation test bed of electrical neurostimulation of myelinated nerve fibers with underlying sensory activity. This paper reports our findings so far. Interactions between stimulation-evoked and underlying activities are mainly due to collisions of action potentials and losses of excitability due to the refractory period following an action potential. In addition, intuitively, the reliability of sensory activity decreases as the stimulation frequency increases. This first step opens the door to a better understanding of pain transmission and its modulation by neurostimulation therapies.
机译:慢性疼痛对美国约有1亿成年人影响。尽管他们有着巨大的需求,但慢性疼痛的神经药物和神经刺激疗法已经与次优疗效和有限的长期成功相关,因为它们的行为机制尚不清楚。然而,目前的疼痛传输计算模型遭受了几个限制。特别地,背部柱模型不包括在这些神经纤维中行驶的基本潜在的感官活动。我们开发了一种(简单的)模拟试验床的肌肉神经纤维的电气神经刺激,具有潜在的感官活动。本文向目前介绍了我们的调查结果。刺激诱发和潜在活动之间的相互作用主要是由于行动潜力后耐火期由于耐火期导致的行动潜力和兴奋损失的碰撞。另外,直观地,随着刺激频率的增加,感觉活动的可靠性降低。第一个步骤打开大门以更好地了解疼痛传播及其通过神经刺激疗法的调节。

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