3D Printed "Earable" Smart Devices for Real-Time Detection of Core Body Temperature.
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Hiroki Ota | Ali Javey | Yuji Gao | Kosuke Iwai | Hnin Yin Yin Nyein | Li-Chia Tai | Minghan Chao | Kevin Chen | Liwei Lin | A. Javey | H. Ota | Kevin Chen | H. Fahad | H. Nyein | Li-Chia Tai | Minghan Chao | K. Iwai | Yuji Gao | E. Wu | Hossain M Fahad | Eric Wu | Yasutomo Matsuoka | Wei Gao | W. Gao | Yasutomo Matsuoka | Liwei Lin
[1] J. Y. Sim,et al. Wireless Optofluidic Systems for Programmable In Vivo Pharmacology and Optogenetics , 2015, Cell.
[2] J. Dornhoffer,et al. Comparison of traditional bone-conduction hearing AIDS with the Baha system. , 2010, Journal of the American Academy of Audiology.
[3] Lewis R. Baxter,et al. Electroconvulsive therapy increases circadian amplitude and lowers core body temperature in depressed subjects , 1997, Biological Psychiatry.
[4] L. P. Herrington,et al. PHYSIOLOGICAL REACTIONS OF THE HUMAN BODY TO VARYING ENVIRONMENTAL TEMPERATURES , 1937 .
[5] Robert J. Wood,et al. Soft wearable motion sensing suit for lower limb biomechanics measurements , 2013, 2013 IEEE International Conference on Robotics and Automation.
[6] Daniel M. Vogt,et al. Embedded 3D Printing of Strain Sensors within Highly Stretchable Elastomers , 2014, Advanced materials.
[7] Märtha Sund-Levander,et al. Normal oral, rectal, tympanic and axillary body temperature in adult men and women: a systematic literature review. , 2002, Scandinavian journal of caring sciences.
[8] Myung-Jin Bae,et al. Improvement of voice quality and prevention of deafness by a bone-conduction device , 2014, Biotechnology, biotechnological equipment.
[9] Sam Emaminejad,et al. A Wearable Electrochemical Platform for Noninvasive Simultaneous Monitoring of Ca(2+) and pH. , 2016, ACS nano.
[10] J. R. Zapata. onset , 2018, Speech Processing.
[11] S. Campbell,et al. Nighttime drop in body temperature: a physiological trigger for sleep onset? , 1997, Sleep.
[12] Benjamin C. K. Tee,et al. Skin-like pressure and strain sensors based on transparent elastic films of carbon nanotubes. , 2011, Nature nanotechnology.
[13] F. Perkins,et al. Infrared tympanic thermometer: evaluation of a new clinical thermometer. , 1988, Critical care medicine.
[14] J. Lewis,et al. Conformal Printing of Electrically Small Antennas on Three‐Dimensional Surfaces , 2011, Advanced materials.
[15] Chen Yang,et al. 3D-printed microelectronics for integrated circuitry and passive wireless sensors , 2015 .
[16] M Yamasaki,et al. Fall in skin temperature of exercising man. , 1992, British journal of sports medicine.
[17] Kazuhiro Nakamura,et al. Central circuitries for body temperature regulation and fever. , 2011, American journal of physiology. Regulatory, integrative and comparative physiology.
[18] Zhongwei Jiang,et al. A novel wearable sensor device with conductive fabric and PVDF film for monitoring cardiorespiratory signals , 2006 .
[19] Wei Gao,et al. Application of 3D Printing for Smart Objects with Embedded Electronic Sensors and Systems , 2016 .
[20] J. Lewis,et al. Device fabrication: Three-dimensional printed electronics , 2015, Nature.
[21] G. Whitesides,et al. Eutectic Gallium‐Indium (EGaIn): A Liquid Metal Alloy for the Formation of Stable Structures in Microchannels at Room Temperature , 2008 .
[22] F. Geiser,et al. Metabolic rate and body temperature reduction during hibernation and daily torpor. , 2004, Annual review of physiology.
[23] Tomasz Letowski,et al. The effect of bone conduction microphone locations on speech intelligibility and sound quality. , 2011, Applied ergonomics.
[24] Michael C. McAlpine,et al. 3D Printed Bionic Ears , 2013, Nano letters.
[25] Ciro José Brito,et al. Measuring skin temperature before, during and after exercise: a comparison of thermocouples and infrared thermography , 2014, Physiological measurement.
[26] Raeed H. Chowdhury,et al. Epidermal Electronics , 2011, Science.
[27] M. Dickey,et al. Ultrastretchable Fibers with Metallic Conductivity Using a Liquid Metal Alloy Core , 2013 .
[28] Sam Emaminejad,et al. Fully integrated wearable sensor arrays for multiplexed in situ perspiration analysis , 2016, Nature.
[29] Wei Gao,et al. Wearable Microsensor Array for Multiplexed Heavy Metal Monitoring of Body Fluids , 2016 .
[30] Daniel P. Redmond,et al. Core body temperature is normal in chronic fatigue syndrome , 1998, Biological Psychiatry.
[31] Rebecca K. Kramer,et al. Hyperelastic pressure sensing with a liquid-embedded elastomer , 2010 .
[32] Wenzhao Jia,et al. Tattoo-based noninvasive glucose monitoring: a proof-of-concept study. , 2015, Analytical chemistry.
[33] Fabrice Axisa,et al. Flexible technologies and smart clothing for citizen medicine, home healthcare, and disease prevention , 2005, IEEE Transactions on Information Technology in Biomedicine.
[34] M. Kaltenbrunner,et al. Ultraflexible organic photonic skin , 2016, Science Advances.
[35] Takao Someya,et al. Printable elastic conductors with a high conductivity for electronic textile applications , 2015, Nature Communications.
[36] Sanat S Bhole,et al. Soft Microfluidic Assemblies of Sensors, Circuits, and Radios for the Skin , 2014, Science.
[37] Michael D. Dickey,et al. Self‐Healing Stretchable Wires for Reconfigurable Circuit Wiring and 3D Microfluidics , 2013, Advanced materials.
[38] Claudio Pacchierotti,et al. Towards Wearability in Fingertip Haptics: A 3-DoF Wearable Device for Cutaneous Force Feedback , 2013, IEEE Transactions on Haptics.
[39] Tae-Jun Ha,et al. Highly deformable liquid-state heterojunction sensors , 2014, Nature Communications.