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自粘附可生物降解明胶基水凝胶电极用于心电图监测。

Self-Adherent Biodegradable Gelatin-Based Hydrogel Electrodes for Electrocardiography Monitoring.

机构信息

Department of Biomaterials Science (BK21 Four Program), College of Natural Resources & Life Science, Pusan National University, Miryang 50463, Korea.

出版信息

Sensors (Basel). 2020 Oct 9;20(20):5737. doi: 10.3390/s20205737.

Abstract

Patch-type hydrogel electrodes have received increasing attention in biomedical applications due to their high biocompatibility and conformal adherence. However, their poor mechanical properties and non-uniform electrical performance in a large area of the hydrogel electrode should be improved for use in wearable devices for biosignal monitoring. Here, we developed self-adherent, biocompatible hydrogel electrodes composed of biodegradable gelatin and conductive polymers for electrocardiography (ECG) measurement. After incorporating conductive poly(3,4-ethylenedioxythiophene):poly(4-styrenesulfonate) (PEDOT:PSS) into gelatin hydrogels crosslinked by natural crosslinkers (genipin), the mechanical properties and electrical conductivity of the hydrogel electrodes were improved and additionally optimized by adjusting the amounts of crosslinker and PEDOT:PSS, respectively. Furthermore, the effect of dimethyl sulfoxide, as a dopant, on the conductivity of hydrogels was investigated. The gelatin-based, conductive hydrogel patch displayed self-adherence to human skin with an adhesive strength of 0.85 N and achieved conformal contact with less skin irritation compared to conventional electrodes with a chemical adhesive layer. Eyelet-type hydrogel electrodes, which were compatible with conventional ECG measurement instruments, exhibited a comparable performance in 12-lead human ECG measurement with commercial ECG clinical electrodes (3M Red Dot). These self-adherent, biocompatible, gelatin-based hydrogel electrodes could be used for monitoring various biosignals, such as in electromyography and electroencephalography.

摘要

贴片式水凝胶电极因其高生物相容性和良好的贴合性,在生物医学应用中受到越来越多的关注。然而,为了将其应用于可穿戴生物信号监测设备,水凝胶电极仍需要改善其较差的机械性能和大面积下不均匀的电学性能。在这里,我们开发了由可生物降解明胶和导电聚合物组成的自粘附、生物相容的水凝胶电极,用于心电图(ECG)测量。在将导电聚合物聚(3,4-亚乙基二氧噻吩):聚(4-苯乙烯磺酸盐)(PEDOT:PSS)掺入由天然交联剂(京尼平)交联的明胶水凝胶后,水凝胶电极的机械性能和导电性分别通过调整交联剂和 PEDOT:PSS 的用量得到了改善和进一步优化。此外,还研究了二甲基亚砜(DMSO)作为掺杂剂对水凝胶导电性的影响。基于明胶的导电水凝胶贴片具有自粘附性,可与人皮肤牢固贴合,粘附强度为 0.85 N,与具有化学粘附层的传统电极相比,对皮肤的刺激性更小,贴合更紧密。与传统 ECG 测量仪器兼容的孔状水凝胶电极在与商业 ECG 临床电极(3M Red Dot)进行 12 导联人体 ECG 测量时表现出相当的性能。这些自粘附、生物相容的基于明胶的水凝胶电极可用于监测各种生物信号,如肌电图和脑电图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f2d/7601183/21e11c068788/sensors-20-05737-g001.jpg

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