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Altered excitability of small cutaneous nerve fibers during cooling assessed with the perception threshold tracking technique

机译:感知阈值跟踪技术评估冷却过程中皮肤神经小纤维兴奋性的变化

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摘要

BackgroundThere is a need for new approaches to increase the knowledge of the membrane excitability of small nerve fibers both in healthy subjects, as well as during pathological conditions. Our research group has previously developed the perception threshold tracking technique to indirectly assess the membrane properties of peripheral small nerve fibers. In the current study, a new approach for studying membrane excitability by cooling small fibers, simultaneously with applying a slowly increasing electrical stimulation current, is evaluated. The first objective was to examine whether altered excitability during cooling could be detected by the perception threshold tracking technique. The second objective was to computationally model the underlying ionic current that could be responsible for cold induced alteration of small fiber excitability. The third objective was to evaluate whether computational modelling of cooling and electrical simulation can be used to generate hypotheses of ionic current changes in small fiber neuropathy.
机译:背景技术需要新的方法来增加健康受试者以及病理状况期间小神经纤维的膜兴奋性的知识。我们的研究小组以前已经开发了感知阈值跟踪技术,以间接评估周围小神经纤维的膜特性。在当前的研究中,评估了一种通过冷却小纤维同时施加缓慢增加的电刺激电流来研究膜兴奋性的新方法。第一个目标是检查感知阈值跟踪技术是否可以检测到冷却过程中改变的兴奋性。第二个目标是对潜在的离子电流进行计算建模,该离子电流可能是冷诱导的小纤维兴奋性改变的原因。第三个目标是评估冷却和电模拟的计算模型是否可用于生成小纤维神经病中离子电流变化的假设。

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