Display meets biology: A vision for ubiquitous healthcare platforms
暂无分享,去创建一个
Ioannis Kymissis | Chang-Hyun Kim | Yvan Bonnassieux | Ioannis Kymissis | Yvan Bonnassieux | I. Kymissis | Y. Bonnassieux | Chang‐Hyun Kim | Chang‐Hyun Kim | Ioannis Kymissis
[1] Zheng Huang,et al. A Review of Progress in Clinical Photodynamic Therapy , 2005, Technology in cancer research & treatment.
[2] Hongtao Ma,et al. Localizing Seizure Activity in the Brain Using Implantable Micro‐LEDs with Quantum Dot Downconversion , 2018 .
[3] Ioannis Kymissis,et al. SERIE S ON INTEGRATED CIRCUITS AND SYSTEMS , 2005 .
[4] Takao Someya,et al. The rise of plastic bioelectronics , 2016, Nature.
[5] Chi-Sun Hwang,et al. Light- and space-adaptable display , 2018 .
[6] Ruth Shinar,et al. Glucose biosensors based on organic light-emitting devices structurally integrated with a luminescent sensing element , 2004 .
[7] Beat Ruhstaller,et al. Quantitative analysis of pixel crosstalk in AMOLED displays , 2018 .
[8] K. L. Montgomery,et al. Wirelessly powered, fully internal optogenetics for brain, spinal and peripheral circuits in mice , 2015, Nature Methods.
[9] Wenhao Liu,et al. Quantum Dots for LED Downconversion in Display Applications , 2013 .
[10] W. Peng,et al. Surface Plasmon Resonance Biosensor Based on Smart Phone Platforms , 2015, Scientific Reports.
[11] Yong Kyun Lee,et al. Application of flexible flat panel display technology to wearable biomedical devices , 2015 .
[12] Gilles Horowitz,et al. Compact DC Modeling of Organic Field-Effect Transistors: Review and Perspectives , 2014, IEEE Transactions on Electron Devices.
[13] Caroline Murawski,et al. High-brightness organic light-emitting diodes for optogenetic control of Drosophila locomotor behaviour , 2016, Scientific Reports.
[14] G. Snow,et al. Basic principles, applications in oncology and improved selectivity of photodynamic therapy. , 2003, Anticancer research.
[15] Lief E. Fenno,et al. The development and application of optogenetics. , 2011, Annual review of neuroscience.
[16] Yao Y. Shieh,et al. Mobile Healthcare: Opportunities and Challenges , 2007, International Conference on the Management of Mobile Business (ICMB 2007).
[17] Dixie E. Kullman,et al. Optogenetic neurostimulation of auricular vagus using flexible OLED display technology to treat chronic inflammatory disease and mental health disorders , 2016 .
[18] Kilho Yu,et al. Optically transparent semiconducting polymer nanonetwork for flexible and transparent electronics , 2016, Proceedings of the National Academy of Sciences.
[19] T. Someya,et al. Self-powered ultra-flexible electronics via nano-grating-patterned organic photovoltaics , 2018, Nature.
[20] Myung-Han Yoon,et al. Influence of PEDOT:PSS crystallinity and composition on electrochemical transistor performance and long-term stability , 2018, Nature Communications.
[21] Jennifer Blain Christen,et al. Application of Flexible OLED Display Technology to Point-of-Care Medical Diagnostic Testing , 2016, Journal of Display Technology.
[22] Joon Seop Kwak,et al. 66‐4: High Brightness Active Matrix Micro‐LEDs with LTPS TFT Backplane , 2018 .
[23] Sang-Hoon Bae,et al. Interface Engineering of Metal Oxide Semiconductors for Biosensing Applications , 2017 .
[24] Tao Zhang,et al. Synthesis of graphene and related two-dimensional materials for bioelectronics devices. , 2017, Biosensors & bioelectronics.
[25] Chen-Yuan Dong,et al. Low-fluence rate, long duration photodynamic therapy in glioma mouse model using organic light emitting diode (OLED). , 2015, Photodiagnosis and photodynamic therapy.
[26] Andrew St John,et al. Existing and Emerging Technologies for Point-of-Care Testing. , 2014, The Clinical biochemist. Reviews.
[27] Matthew T. Cole,et al. Flexible Electronics: The Next Ubiquitous Platform , 2012, Proceedings of the IEEE.
[28] I D W Samuel,et al. An open pilot study of ambulatory photodynamic therapy using a wearable low‐irradiance organic light‐emitting diode light source in the treatment of nonmelanoma skin cancer , 2009, The British journal of dermatology.
[29] Sam Emaminejad,et al. Fully integrated wearable sensor arrays for multiplexed in situ perspiration analysis , 2016, Nature.
[30] Magnus Berggren,et al. Organic Bioelectronics: Bridging the Signaling Gap between Biology and Technology. , 2016, Chemical Reviews.
[31] Shin-Tson Wu,et al. Quantum dot light emitting devices for photomedical applications , 2017, Journal of the Society for Information Display.
[32] J. H. Correia,et al. Design and manufacturing challenges of optogenetic neural interfaces: a review , 2017, Journal of neural engineering.
[33] Larry J Kricka,et al. Improving healthcare accessibility through point-of-care technologies. , 2007, Clinical chemistry.
[34] Ioannis Kymissis,et al. Graphene–organic hybrid electronics , 2017 .
[35] Karl Deisseroth,et al. Next-generation probes, particles, and proteins for neural interfacing , 2017, Science Advances.
[36] C. Tang,et al. Organic Electroluminescent Diodes , 1987 .
[37] I. Underwood,et al. Active-Matrix GaN Micro Light-Emitting Diode Display With Unprecedented Brightness , 2015, IEEE Transactions on Electron Devices.
[38] Jae-Hyung Jang,et al. Sub-0.5 V Highly Stable Aqueous Salt Gated Metal Oxide Electronics , 2015, Scientific Reports.
[39] B. Fan,et al. Miniaturized optogenetic neural implants: a review. , 2015, Lab on a chip.
[40] Vishak Venkatraman,et al. Quantitative Detection in Lateral Flow Immunoassay Using Integrated Organic Optoelectronics , 2017, IEEE Sensors Journal.
[41] Masayuki Kanehara,et al. Ultra-high-resolution printing of flexible organic thin-film transistors , 2017 .
[42] Pei Cheng,et al. Stability of organic solar cells: challenges and strategies. , 2016, Chemical Society reviews.
[43] Bernard Geffroy,et al. Organic light‐emitting diode (OLED) technology: materials, devices and display technologies , 2006 .
[44] Ruth Shinar,et al. Multianalyte sensor array based on an organic light emitting diode platform , 2008 .
[45] R. Jain,et al. Photodynamic therapy for cancer , 2003, Nature Reviews Cancer.
[46] John A Rogers,et al. Recent Advances in Materials, Devices, and Systems for Neural Interfaces , 2018, Advanced materials.
[47] Tae-Woo Lee,et al. Influence of A-site cation on the thermal stability of metal halide perovskite polycrystalline films , 2018 .
[48] Chao Li,et al. Quasi-Two-Dimensional Metal Oxide Semiconductors Based Ultrasensitive Potentiometric Biosensors. , 2017, ACS nano.
[49] Claire M. Lochner,et al. All-organic optoelectronic sensor for pulse oximetry , 2014, Nature Communications.
[50] Oana Moldovan,et al. Graphene electronic sensors - review of recent developments and future challenges , 2015, IET Circuits Devices Syst..
[51] Ruth Shinar,et al. Organic light-emitting devices (OLEDs) and OLED-based chemical and biological sensors: an overview , 2008 .
[52] Karen S. Anderson,et al. Application of flat panel OLED display technology for the point-of-care detection of circulating cancer biomarkers , 2016, Scientific Reports.
[53] H. Sirringhaus,et al. High operational and environmental stability of high-mobility conjugated polymer field-effect transistors through the use of molecular additives. , 2017, Nature materials.
[54] V. Bulović,et al. Emergence of colloidal quantum-dot light-emitting technologies , 2012, Nature Photonics.
[55] Jin-seong Park,et al. Review of recent advances in flexible oxide semiconductor thin-film transistors , 2017 .
[56] Kookheon Char,et al. Interfacial engineering of core/shell heterostructured nanocrystal quantum dots for light-emitting applications , 2017 .
[57] S M Wuerger,et al. Safety and acceptability of an organic light-emitting diode sleep mask as a potential therapy for retinal disease , 2017, Eye.
[58] Heesun Yang,et al. Towards the fluorescence retention and colloidal stability of InP quantum dots through surface treatment with zirconium propoxide , 2018, Journal of Information Display.
[59] Henry J Snaith,et al. Metal-halide perovskites for photovoltaic and light-emitting devices. , 2015, Nature nanotechnology.
[60] E. Chan,et al. Pulse oximetry: understanding its basic principles facilitates appreciation of its limitations. , 2013, Respiratory medicine.
[61] Bernard Kippelen,et al. Stable organic thin-film transistors , 2018, Science Advances.