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ACS Applied Materials and Interfaces, 2023
Recently, interest in transparent electrodes has been increasing in biomedical engineering applications for such as electro-optical hybrid neuro-technologies.
Duhee Kim+8 more
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Recently, interest in transparent electrodes has been increasing in biomedical engineering applications for such as electro-optical hybrid neuro-technologies.
Duhee Kim+8 more
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Mobile biomedical sensing with dry electrodes
2008 International Conference on Intelligent Sensors, Sensor Networks and Information Processing, 2008Monitoring patients continuously while they go about their daily activities is a challenging goal. It requires long-term recording of cardiovascular and other electrophysiological signals and contextual information such as body motion. Here we present a small, battery powered, user customisable, portable monitor capable of recording three-axial ...
Gargiulo G+5 more
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Tissue‐Matchable and Implantable Batteries Toward Biomedical Applications
Small Methods, 2023Implantable electronic devices can realize real‐time and reliable health monitoring, diagnosis, and treatment of human body, which are expected to overcome important bottlenecks in the biomedical field.
Bingzhen Yan, Yang Zhao, Huisheng Peng
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Manganese dioxide depolarizer for biomedical electrodes
Medical & Biological Engineering, 1970The electrochemical and toxicological characteristics of manganese dioxide (MnO2) have been described. Details of the construction and testing of surface MnO2 electrode are presented. The reported data and the results of tests confirm that a MnO2 electrode sufficiently stable and free from polarization effects can be constructed.
E. Pasquali, R. Nencini
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ACS Applied Materials and Interfaces, 2022
On-skin electrodes with high air permeability, low thickness, low elastic modulus, and high adhesion are essential for biomedical signal recordings, which provide data for sports management and biomedical applications.
Yan Liu+4 more
semanticscholar +1 more source
On-skin electrodes with high air permeability, low thickness, low elastic modulus, and high adhesion are essential for biomedical signal recordings, which provide data for sports management and biomedical applications.
Yan Liu+4 more
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Development of a miniaturepCO2 electrode for biomedical applications
Medical & Biological Engineering, 1975A miniaturepCO2 electrode for possible CO2 measurement in a biological system was constructed and evaluated. ThepCO2 electrode employed a miniature pH glass electrode and the Severinghaus configuration. The electrode was evaluated in both gas and liquid phases. A good linear relation existed between the measured electrode potential of thepCO2 electrode
Michael R. Neuman+4 more
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Materials and Biomedical Applications of Implantable Electronic Devices
Advanced Materials & Technologies, 2022The implantable electronic devices have attracted great attention for solving clinical problems ranging from monitoring psychological states to electro‐organ transplantation.
Yiqun Liu, Qi Yu, Li Yang, Yue Cui
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Impedance Characterization and Modeling of Electrodes for Biomedical Applications
A low electrode-electrolyte impedance interface is critical in the design of electrodes for biomedical applications. To design low-impedance interfaces a complete understanding of the physical processes contributing to the impedance is required. In this work a model describing these physical processes is validated and extended to quantify the effect of
W. Franks+3 more
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3D Electrodes for Bioelectronics
Advances in Materials, 2021In recent studies related to bioelectronics, significant efforts have been made to form 3D electrodes to increase the effective surface area or to optimize the transfer of signals at tissue–electrode interfaces. Although bioelectronic devices with 2D and
Y. Cho+3 more
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Mechanical characterization of biomedical electrode on knit textile
2016 Symposium on Design, Test, Integration and Packaging of MEMS/MOEMS (DTIP), 2016The wearable biomedical devices require mechanical stretchability to follow the motion of the human body. We have developed highly stretchable electrode made of knit textile. In this report, we investigated the stretchability of the knit biomedical electrode.
Toshihiro Itoh, Seiichi Takamatsu
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