Department of Biomedical Engineering, The City College of New York of CUNY, NY 10031, USA.
J Neurosci Methods. 2010 Jul 15;190(2):188-97. doi: 10.1016/j.jneumeth.2010.05.007. Epub 2010 May 19.
Transcutaneous electrical stimulation is applied in a range of biomedical applications including transcranial direct current stimulation (tDCS). tDCS is a non-invasive procedure where a weak direct current (<2 mA) is applied across the scalp to modulate brain function. High-definition tDCS (HD-tDCS) is a technique used to increase the spatial focality of tDCS by passing current across the scalp using <12 mm diameter electrodes. The purpose of this study was to design and optimize "high-definition" electrode-gel parameters for electrode durability, skin safety and subjective pain. Anode and cathode electrode potential, temperature, pH and subjective sensation over time were assessed during application of 2 mA direct current, for up to 22 min on agar gel or subject forearms. A selection of five types of solid-conductors (Ag pellet, Ag/AgCl pellet, rubber pellet, Ag/AgCl ring and Ag/AgCl disc) and seven conductive gels (Signa, Spectra, Tensive, Redux, BioGel, Lectron and CCNY-4) were investigated. The Ag/AgCl ring in combination with CCNY-4 gel resulted in the most favorable outcomes. Under anode stimulations, electrode potential and temperature rises were generally observed in all electrode-gel combinations except for Ag/AgCl ring and disc electrodes. pH remained constant for all solid-conductors except for both Ag and rubber pellet electrodes with Signa and CCNY-4 gels. Sensation ratings were independent of stimulation polarity. Ag/AgCl ring electrodes were found to be the most comfortable followed by Ag, rubber and Ag/AgCl pellet electrodes across all gels.
经皮电刺激在包括经颅直流电刺激(tDCS)在内的多种生物医学应用中得到应用。tDCS 是一种非侵入性程序,通过在头皮上施加弱直流电(<2 mA)来调节大脑功能。高清晰度 tDCS(HD-tDCS)是一种通过使用直径<12 毫米的电极在头皮上传递电流来提高 tDCS 空间聚焦的技术。本研究旨在设计和优化“高清晰度”电极-凝胶参数,以提高电极耐用性、皮肤安全性和主观疼痛。在琼脂凝胶或受试者前臂上施加 2 mA 直流电达 22 分钟的过程中,评估了阳极和阴极电极电位、温度、pH 值和随时间推移的主观感觉。研究了五种固体导体(Ag 小球、Ag/AgCl 小球、橡胶小球、Ag/AgCl 环和 Ag/AgCl 盘)和七种导电凝胶(Signa、Spectra、Tensive、Redux、BioGel、Lectron 和 CCNY-4)。Ag/AgCl 环与 CCNY-4 凝胶的组合产生了最有利的结果。在阳极刺激下,除了 Ag/AgCl 环和盘电极外,所有电极-凝胶组合中都观察到电极电位和温度升高。除了 Signa 和 CCNY-4 凝胶中的 Ag 和橡胶小球电极外,所有固体导体的 pH 值均保持不变。感觉评分与刺激极性无关。Ag/AgCl 环电极被发现是最舒适的,其次是 Ag、橡胶和 Ag/AgCl 小球电极,适用于所有凝胶。