Electrical, Computer, and Biomedical Engineering Department, University of Rhode Island, 4 East Alumni Avenue, Kingston, RI 02881, USA.
Ann Biomed Eng. 2010 Mar;38(3):1111-8. doi: 10.1007/s10439-009-9891-y. Epub 2010 Jan 20.
Surface electrodes are commonly used electrodes clinically, in applications such as functional electrical stimulation for the restoration of motor functions, pain relief, transcutaneous electrical nerve stimulation, electrocardiographic monitoring, defibrillation, surface cardiac pacing, and advanced drug delivery systems. Common to these applications are occasional reports of pain, tissue damage, rash, or burns on the skin at the point where electrodes are placed. In this study, we quantitatively analyzed the effects of acute noninvasive electrical stimulation from concentric ring electrodes (CRE) to determine the maximum safe current limit. We developed a three-dimensional multi-layer model and calculated the temperature profile under the CRE and the corresponding energy density with electrical-thermal coupled field analysis. Infrared thermography was used to measure skin temperature during electrical stimulation to verify the computer simulations. We also performed histological analysis to study cell morphology and characterize any resulting tissue damage. The simulation results are accurate for low energy density distributions. It can also be concluded that as long as the specified energy density applied is kept below 0.92 (A2/cm4.s(-1)), the maximum temperature will remain within the safe limits. Future work should focus on the effects of the electrode paste.
表面电极在临床上被广泛应用,如功能性电刺激恢复运动功能、缓解疼痛、经皮神经电刺激、心电图监测、除颤、表面心脏起搏和先进的药物输送系统等。这些应用中偶尔会出现电极放置部位皮肤疼痛、组织损伤、皮疹或灼伤的报告。在这项研究中,我们定量分析了同心环电极(CRE)产生的急性非侵入性电刺激的影响,以确定最大安全电流限制。我们开发了一个三维多层模型,并通过电-热耦合场分析计算了 CRE 下的温度分布和相应的能量密度。我们使用红外热像仪测量电刺激过程中的皮肤温度,以验证计算机模拟。我们还进行了组织学分析,以研究细胞形态和特征性的组织损伤。对于低能量密度分布,模拟结果是准确的。还可以得出结论,只要应用的指定能量密度保持在 0.92(A2/cm4.s(-1))以下,最大温度将保持在安全范围内。未来的工作应集中在电极膏的影响上。