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眼直流电刺激对全视野视网膜电图的影响。

Effects of Ocular Direct Current Stimulation on Full Field Electroretinogram.

作者信息

Blum Maren-Christina, Solf Benjamin, Hunold Alexander, Klee Sascha

机构信息

Institute of Biomedical Engineering and Informatics, Technische Universität Ilmenau, Ilmenau, Germany.

出版信息

Front Neurosci. 2021 Feb 16;15:606557. doi: 10.3389/fnins.2021.606557. eCollection 2021.

Abstract

Studies on weak current stimulation (1-2 mA) examine effects on neuronal cells for the treatment of neurological diseases, like depression. Ocular current stimulation showed positive effects on retinal nerve cells which indicate that neurodegenerative ocular diseases, e.g., glaucoma, can be treated with current stimulation of the eye. However, up to now it remains unclear which exact retinal cells can be influenced. During an ocular direct current stimulation, a significant reduction of the characteristic P50 amplitude of a pattern-reversal electroretinogram (PERG) was found for an anodal and a cathodal stimulation. This current stimulation effect could originate from the modulation of pre-ganglion cell activity or by changes in local ON and OFF responses of ganglion cells. For clarification, we investigate acute direct current stimulation effects on a full field electroretinogram (ERG), which represents the activity of pre-ganglion cells (specifically cones and bipolar cells). The ERG from 15 subjects was evaluated before (ERG 1) and during (ERG 2) an ocular direct current stimulation with 800 μA over 5 min. The current was applied through a ring rubber electrode placed around the eye and a 25 cm rubber electrode placed at the ipsilateral temple. For ERG measurements, sintered Ag/AgCl skin-electrodes were positioned on the lower eyelid (active), the earlobe (reference), and the forehead (ground). The volunteers were stimulated in three independent sessions, each with a different current application (randomized order): cathodal polarity, anodal polarity (referred to the electrode around the eye), or sham stimulation. The changes between the two ERG measurements of the characteristic full field ERG amplitudes, a-wave, b-wave, and b'-wave (b-wave measured from zero line) were tested with the Wilcoxon signed-rank test (α = 0.05). Comparing before to during the current stimulation for all applications, the ERG waves showed no effects on amplitudes or latencies. Furthermore, no significant difference between the cathodal, anodal, and sham stimulation could be found by a Friedman test. These results indicate an unlikely contribution of pre-ganglion cells to the previously reported stimulation effect on PERG signals.

摘要

对弱电流刺激(1 - 2毫安)的研究旨在探究其对神经元细胞的作用,以用于治疗诸如抑郁症等神经疾病。眼电流刺激对视网膜神经细胞显示出积极效果,这表明神经退行性眼病,如青光眼,可通过眼部电流刺激进行治疗。然而,到目前为止,尚不清楚具体哪些视网膜细胞会受到影响。在眼直流电刺激过程中,发现阳极和阴极刺激均会使图形翻转视网膜电图(PERG)的特征性P50振幅显著降低。这种电流刺激效应可能源于节前细胞活动的调制,或者是神经节细胞局部开反应和关反应的变化。为了阐明这一点,我们研究了急性直流电刺激对全视野视网膜电图(ERG)的影响,全视野视网膜电图代表节前细胞(特别是视锥细胞和双极细胞)的活动。在15名受试者的眼部进行5分钟800微安的直流电刺激之前(ERG 1)和期间(ERG 2),对其ERG进行了评估。电流通过置于眼睛周围的环形橡胶电极和置于同侧太阳穴的25厘米橡胶电极施加。对于ERG测量,烧结Ag/AgCl皮肤电极分别置于下眼睑(活性电极)、耳垂(参考电极)和前额(接地电极)。志愿者在三个独立的时段接受刺激,每个时段采用不同的电流施加方式(随机顺序):阴极极性、阳极极性(相对于眼睛周围的电极)或假刺激。使用Wilcoxon符号秩检验(α = 0.05)对全视野ERG特征性振幅、a波、b波和b'波(b波从零线测量)的两次ERG测量之间的变化进行了测试。比较所有施加方式下电流刺激前后的情况,ERG波在振幅或潜伏期方面均未显示出影响。此外,通过Friedman检验发现阴极、阳极和假刺激之间没有显著差异。这些结果表明,节前细胞对先前报道的PERG信号刺激效应的贡献不大可能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77fd/7928396/4997c7d8056a/fnins-15-606557-g001.jpg

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