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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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发表于 2025-3-26 21:05:19 | 显示全部楼层
Soft Biosensor Systems Using Flexible and Stretchable Electronics Technologysensors including brain wave (Electroencephalogram: EEG) monitoring from a forehead. Furthermore, this chapter will review the technologies for realizing the new era of electronic system, that is, Internet of Things (IoT.)
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Ultrathin, Skin-Like Devices for Precise, Continuous Thermal Property Mapping of Human Skin and Softf devices. Further discussion of devices configured for mapping temperature, monitoring local thermal transport and skin hydration, and mapping thermal transport for blood flow analysis provides a few examples of the types of capabilities that are enabled with these technologies.
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Laser-Enabled Fabrication Technologies for Low-Cost Flexible/Conformal Cutaneous Wound Interfacesal and allows for selective surface functionalization. Using this method, we fabricated a variety of sensors (pH, oxygen, silver, strain) and chemical delivery (oxygen) modules on low-cost commercial substrates for chronic wound management.
发表于 2025-3-27 19:49:10 | 显示全部楼层
Liquid Metals for Soft and Stretchable Electronicsc or gel matrices without altering the mechanical properties of the resulting composite. These composites can maintain metallic electrical conductivity at extreme strains and can form soft, conformal contacts with surfaces. Gallium and several of its alloys, which are liquid metals at or near room t
发表于 2025-3-28 00:38:33 | 显示全部楼层
Stretchability, Conformability, and Low-Cost Manufacture of Epidermal Sensorsh human epidermis. They can be applied as temporary transfer tattoos on the surface of any part of human body for physiological measurements, electrical or thermal stimulation, as well as wireless communications. Except for comfort and wearability, epidermal sensors can offer unprecedented signal qu
发表于 2025-3-28 03:12:47 | 显示全部楼层
Mechanics and Designs of Stretchable Bioelectronicsional components with soft elastomeric substrates. Three representative strategies, including wavy, wrinkled design, island-bridge design, and Origami/Kirigami-inspired design, are summarized, highlighting the key design concepts, unique mechanical behaviors, and analytical/computational mechanics m
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Soft Power: Stretchable and Ultra-Flexible Energy Sources for Wearable and Implantable Devicesed in the human body. This chapter assesses the viability of conformal piezo and triboelectric, thermoelectric, and photovoltaic technologies as power sources for biomedical applications. It begins by identifying the amount of energy available to each of these modes of power conversion and then give
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Wireless Applications of Conformal Bioelectronicsnical applications. Wireless modules in such minimally invasive forms have developed in parallel to extend the capabilities and to improve the quality of such bioelectronics, in assurances to offer safer and more convenient clinical practice. Such remote capabilities are facilitating significant adv
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