Wearable temporary tattoo sensor for real-time trace metal monitoring in human sweat
暂无分享,去创建一个
Wenzhao Jia | Amay J. Bandodkar | Thiago R.L.C. Paixão | Barbara Brunetti | William R. de Araujo | Izabela A. Samek | Joseph Wang | A. Bandodkar | Joseph Wang | W. R. Araujo | T. Paixão | Jayoung Kim | W. Jia | B. Brunetti | Jayoung Kim
[1] Amay J Bandodkar,et al. Non-invasive wearable electrochemical sensors: a review. , 2014, Trends in biotechnology.
[2] Joseph Wang,et al. Epidermal tattoo potentiometric sodium sensors with wireless signal transduction for continuous non-invasive sweat monitoring. , 2014, Biosensors & bioelectronics.
[3] W. Heineman,et al. Lab-on-a-Chip Sensor with Evaporated Bismuth Film Electrode for Anodic Stripping Voltammetry of Zinc. , 2013, Electroanalysis.
[4] J. Windmiller,et al. Electrochemical tattoo biosensors for real-time noninvasive lactate monitoring in human perspiration. , 2013, Analytical chemistry.
[5] Ian Papautsky,et al. Zinc Detection in Serum by Anodic Stripping Voltammetry on Microfabricated Bismuth Electrodes. , 2013, Electroanalysis.
[6] Wenzhao Jia,et al. Tattoo-based potentiometric ion-selective sensors for epidermal pH monitoring. , 2013, The Analyst.
[7] Joseph Wang,et al. Wearable Electrochemical Sensors and Biosensors: A Review , 2013 .
[8] Dae-Hyeong Kim,et al. Flexible and stretchable electronics for biointegrated devices. , 2012, Annual review of biomedical engineering.
[9] Alexandra G Martinez,et al. Electrochemical sensing based on printable temporary transfer tattoos. , 2012, Chemical communications.
[10] Mauro Bertotti,et al. The use of a gold disc microelectrode for the determination of copper in human sweat. , 2010, Talanta.
[11] Paolo Bonato,et al. Wearable Sensors and Systems , 2010, IEEE Engineering in Medicine and Biology Magazine.
[12] D. Heyland,et al. Zinc supplementation in critically ill patients: a key pharmaconutrient? , 2008, JPEN. Journal of parenteral and enteral nutrition.
[13] J. Hart,et al. Development of an anodic stripping voltammetric assay, using a disposable mercury-free screen-printed carbon electrode, for the determination of zinc in human sweat. , 2008, Talanta.
[14] D. Diamond,et al. Wireless sensor networks and chemo-/biosensing. , 2008, Chemical reviews.
[15] Joseph Wang,et al. Stripping Analysis at Bismuth Electrodes: A Review , 2005 .
[16] Lu,et al. Bismuth-coated carbon electrodes for anodic stripping voltammetry , 2000, Analytical chemistry.
[17] R. Compton,et al. Optimization of Mercury Thin Film Electrodes for Sono‐ASV Studies , 1999 .
[18] A. Córdova,et al. Effect of Training on Zinc Metabolism: Changes in Serum and Sweat Zinc Concentrations in Sportsmen , 1998, Annals of Nutrition and Metabolism.
[19] A. Córdova,et al. Behaviour of zinc in physical exercise: A special reference to immunity and fatigue , 1995, Neuroscience & Biobehavioral Reviews.
[20] J. Howard,et al. Trace elements in the sweat of acclimatized persons. , 1994, Clinica chimica acta; international journal of clinical chemistry.
[21] Joseph Wang,et al. Screen-printed ultramicroelectrode arrays for on-site stripping measurements of trace metals , 1993 .
[22] E. Haymes,et al. Zinc loss in sweat of athletes exercising in hot and neutral temperatures. , 1993, International journal of sport nutrition.
[23] J Wang,et al. Mercury-free disposable lead sensors based on potentiometric stripping analysis at gold-coated screen-printed electrodes. , 1993, Analytical chemistry.
[24] Joseph Wang,et al. Screen-printed stripping voltammetric/potentiometric electrodes for decentralized testing of trace lead , 1992 .
[25] J. Stauber,et al. A comparative study of copper, lead, cadmium and zinc in human sweat and blood. , 1988, The Science of the total environment.
[26] T D Noakes,et al. Effect of Exercise on Serum Enzyme Activities in Humans , 1987, Sports medicine.
[27] J. Stauber,et al. The determination of trace metals in sweat by anodic stripping voltammetry. , 1987, The Science of the total environment.