Zena-Giménez Victor, Garcia-Casado Javier, Ye-Lin Yiyao, Garcia-Breijo Eduardo, Prats-Boluda Gema
Centro de Investigación e Innovación en Bioingeniería, Universitat Politècnica de València, Valencia 46022, Spain.
Instituto Interuniversitario de Investigación de Reconocimiento Molecular y Desarrollo Tecnológico, Universitat Politècnica de València, Valencia 46022, Spain.
Sensors (Basel). 2018 Jan 30;18(2):396. doi: 10.3390/s18020396.
Developing new types of optimized electrodes for specific biomedical applications can substantially improve the quality of the sensed signals. Concentric ring electrodes have been shown to provide enhanced spatial resolution to that of conventional disc electrodes. A sensor with different electrode sizes and configurations (monopolar, bipolar, etc.) that provides simultaneous records would be very helpful for studying the best signal-sensing arrangement. A 5-pole electrode with an inner disc and four concentric rings of different sizes was developed and tested on surface intestinal myoelectrical recordings from healthy humans. For good adaptation to a curved body surface, the electrode was screen-printed onto a flexible polyester substrate. To facilitate clinical use, it is self-adhesive, incorporates a single connector and can perform dry or wet (with gel) recordings. The results show it to be a versatile electrode that can evaluate the optimal configuration for the identification of the intestinal slow wave and reject undesired interference. A bipolar concentric record with an outer ring diameter of 30 mm, a foam-free adhesive material, and electrolytic gel gave the best results.
开发适用于特定生物医学应用的新型优化电极可显著提高传感信号的质量。同心环电极已被证明能提供比传统圆盘电极更高的空间分辨率。一种具有不同电极尺寸和配置(单极、双极等)且能同时记录的传感器,对于研究最佳信号传感布局将非常有帮助。一种带有内盘和四个不同尺寸同心环的五极电极被开发出来,并在健康人体的肠道表面肌电记录中进行了测试。为了更好地适应弯曲的身体表面,该电极被丝网印刷在柔性聚酯基板上。为便于临床使用,它具有自粘性,包含一个单一连接器,并且可以进行干式或湿式(使用凝胶)记录。结果表明,它是一种多功能电极,能够评估用于识别肠道慢波和抑制不期望干扰的最佳配置。外径为30毫米的双极同心记录、无泡沫粘合材料和电解凝胶给出了最佳结果。