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微图案表面电极用于选择性刺激表皮内伤害感受纤维。

Micropatterned surface electrode for massive selective stimulation of intraepidermal nociceptive fibres.

机构信息

Department of Neuroscience, Rehabilitation Ophthalmology, Genetics, Maternal and Child Health (DINOGMI), University of Genova, L.go Daneo 3, 16132, Genova, Italy; Interuniversity Centre for Pain Neurophysiology (CIND), University of Genova, Via Dodecaneso 35, 16146, Genova, Italy.

Department of Neuroscience, Rehabilitation Ophthalmology, Genetics, Maternal and Child Health (DINOGMI), University of Genova, L.go Daneo 3, 16132, Genova, Italy; Interuniversity Centre for Pain Neurophysiology (CIND), University of Genova, Via Dodecaneso 35, 16146, Genova, Italy; Department of Neuroscience, Ospedale Policlinico San Martino, L.go R. Benzi 10, 16132, Genova, Italy.

出版信息

J Neurosci Methods. 2018 Jan 1;293:17-26. doi: 10.1016/j.jneumeth.2017.08.032. Epub 2017 Sep 9.

Abstract

BACKGROUND

No satisfactory neurophysiological test for nociceptive afferents is available to date. Laser stimuli present risks of skin damage, whilst electrical stimulation through specially designed electrodes is not selective enough.

NEW METHOD

We present a new electrode designed according to critical issues identified in preliminary computer simulations concerning electric field gradient through the skin. To provide selective stimulation the activating electric field must be limited to intraepidermal free nerve endings. To this end, a new interdigitated electrode (IDE) was made of conductive rails arranged in a comb-like micropattern, situated only 150μm apart from each other (150 IDE) and alternately connected to the opposite poles of the stimulator.

RESULTS

Evoked potentials recorded from the scalp were obtained after stimulation with the 150 IDE and with a similarly designed, but more widely spaced electrode (1000μm, or 1000 IDE). Small amplitude early and medium latency components were recorded with the 1000 IDE, suggesting activation of Aβ fibres. On the other hand, the 150 IDE only evoked late responses, confirming sufficient selectivity in small fibre activation.

COMPARISON WITH EXISTING METHOD(S): The main differences with existing electrodes are: 1) Microspaced interdigitated conductive rails. 2) The potentially unlimited surface of stimulation and high efficiency per surface unit, resulting in large numbers of activated nociceptors.

CONCLUSIONS

A new electrode providing selective stimulation of nociceptive nerve free endings is presented. It is non-invasive, and its surface can be enlarged at will. It is expected that it may greatly help in neurophysiological assessment of conditions affecting the nociceptive pathway.

摘要

背景

目前尚无令人满意的用于伤害性传入神经的神经生理学测试方法。激光刺激存在皮肤损伤的风险,而通过专门设计的电极进行电刺激则不够具有选择性。

新方法

我们提出了一种新的电极设计,该设计基于初步计算机模拟中确定的有关通过皮肤的电场梯度的关键问题。为了提供选择性刺激,激活电场必须限制在表皮内的游离神经末梢内。为此,我们制作了一种新型叉指电极(IDE),由排列成梳状微图案的导电轨组成,彼此之间仅相距 150μm(150 IDE),并交替连接到刺激器的相反电极。

结果

用 150 IDE 和设计类似但间隔更大(1000μm,或 1000 IDE)的电极刺激后,从头皮上记录到诱发电位。用 1000 IDE 记录到小幅度早期和中潜伏期成分,提示 Aβ纤维的激活。另一方面,150 IDE 仅诱发晚期反应,证实了小纤维激活的足够选择性。

与现有方法的比较

与现有电极的主要区别在于:1)微间距叉指式导电轨。2)潜在的无限制刺激表面和每个表面单位的高效率,导致大量激活的伤害感受器。

结论

提出了一种新的电极,可选择性刺激伤害性神经游离末梢。它是非侵入性的,其表面可以随意扩大。预计它可能会极大地帮助评估影响伤害性通路的条件的神经生理学。

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