Department of Human Neuroscience, Sapienza University, Rome, Italy.
Department of Neuroscience, Genetics, Maternal and Child Health (DINOGMI), University of Genova, Genova, Italy.
Eur J Pain. 2020 May;24(5):956-966. doi: 10.1002/ejp.1545. Epub 2020 Feb 27.
In this neurophysiological study, we aimed at verifying the nociceptive selectivity of the new, micropatterned electrode (150IDE), recently designed to generate an electric field limited to the intraepidermal free nerve endings.
Using the new 150IDE, we recorded evoked potentials after stimulation of the face and hand dorsum in 22 healthy participants and in patients with exemplary conditions selectively affecting the nociceptive system. We also measured the peripheral conduction velocity at the upper arm and verified the nociceptive selectivity of 150IDE assessing the effect of a selective block of nociceptive nerve fibres of radial nerve with local anaesthetic infiltration. In healthy participants and in patients, we have also compared the 150IDE-evoked potentials with laser-evoked potentials.
In healthy participants, the 150IDE-evoked pinprick sensation and reproducible scalp potentials, with latency similar to laser-evoked potentials. The mean peripheral conduction velocity, estimated at the upper arm, was 12 m/s. The selective nociceptive fibre block of the radial nerve abolished the scalp potentials elicited by the 150IDE stimulation. In patients, the 150IDE-evoked potentials reliably detected the selective damage of the nociceptive system.
Our neurophysiological study shows that this new 150IDE provides selective information on nociceptive system.
150IDE is a promising new tool for investigating nociceptive system in patients with neuropathic pain.
在这项神经生理学研究中,我们旨在验证新的微图案电极(150IDE)的痛觉选择性,该电极最近被设计用于产生仅限于表皮内游离神经末梢的电场。
使用新的 150IDE,我们在 22 名健康参与者和有选择性地影响痛觉系统的典型病症的患者中记录了面部和手部背侧刺激后的诱发电位。我们还在上臂测量了外周传导速度,并通过用局部麻醉剂浸润阻滞桡神经的痛觉纤维来评估 150IDE 的痛觉选择性。在健康参与者和患者中,我们还比较了 150IDE 诱发的电位与激光诱发的电位。
在健康参与者中,150IDE 诱发的刺痛感和可重复的头皮电位,潜伏期与激光诱发电位相似。在上臂估计的平均外周传导速度为 12 m/s。桡神经的选择性痛觉纤维阻滞消除了 150IDE 刺激引起的头皮电位。在患者中,150IDE 诱发的电位可靠地检测到痛觉系统的选择性损伤。
我们的神经生理学研究表明,这种新的 150IDE 提供了关于痛觉系统的选择性信息。
150IDE 是一种有前途的新工具,可用于研究神经性疼痛患者的痛觉系统。