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Titlebook: Stretchable Bioelectronics for Medical Devices and Systems; John A. Rogers,Roozbeh Ghaffari,Dae-Hyeong Kim Book 2016 Springer Internationa

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Soft Biosensor Systems Using Flexible and Stretchable Electronics Technologyof thin-film, ultraflexible electronics comprising ultrasoft gel electrodes, thin-film amplifier, Si-LSI wireless platform, thin-film battery, and information engineering, which are imperceptible active sensors. Here we would like to demonstrate the applications of the patch-type wearable biosignal
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Multifunctional Epidermal Sensor Systems with Ultrathin Encapsulation Packaging for Health Monitorinsorders, neurological and movement disorders, diabetes, and pain. However, conventional wearable devices are typically comprised of rigid, packaged electronics, which may compromise overall signal fidelity and wearer comfort during activities of daily living and sleep. In this chapter, we present re
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Laser-Enabled Fabrication Technologies for Low-Cost Flexible/Conformal Cutaneous Wound Interfacesation of flexible sensors and microsystems. Such devices are uniquely suited for cutaneous wound interfaces in which one has to sense multiple parameters and deliver drugs using a disposable low-cost platform. In this chapter, we discuss our recent efforts towards using laboratory scale CO. lasers t
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Nanomaterials-Based Skin-Like Electronics for the Unconscious and Continuous Monitoring of Body Statin-like stretchable and flexible electrodes have been highly required and diverse electrodes have been developed. However, these electrodes have limits such as lower electrical property, biocompatibility, and discomfort to patients. To address these challenges, nanomaterial-based electronic devices
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Materials and Designs for Multimodal Flexible Neural Probesre standard indicators enable to display neural activities as action potentials. The action potentials are typically measured by the change of voltage or current from ion channels in the neurons. Usually, conductive electrodes formed on injectable probes that can be penetrated into deep brain tissue
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