Remote Detection for Glucose and Lactate Based on Flexible Sensor Array
暂无分享,去创建一个
Jung-Chuan Chou | Yi-Hung Liao | Chih-Hsien Lai | You-Xiang Wu | Cian-Yi Wu | Siao-Jie Yan | J. Chou | Yi-Hung Liao | Chih-Hsien Lai | Siao-Jie Yan | You-Xiang Wu | Cian-Yi Wu
[1] J. Chou,et al. Fabrication of Potentiometric Enzymatic Glucose Biosensor Based on Graphene and Magnetic Beads , 2015, IEEE Sensors Journal.
[2] Andrea Valsesia,et al. Development of a potentiometric biosensor based on nanostructured surface for lactate determination , 2007 .
[3] Sandeep Singh,et al. Biosensors based on electrochemical lactate detection: A comprehensive review , 2015, Biochemistry and biophysics reports.
[4] Joshua J Todd,et al. Lactate: valuable for physical performance and maintenance of brain function during exercise , 2014 .
[5] Y. Nien,et al. Fabrication and Photovoltaic Properties of Dye-Sensitized Solar Cells Modified by Graphene Oxide and Magnetic Bead , 2015, IEEE Electron Device Letters.
[6] I. Willner,et al. A novel ISFET-based NAD+-dependent enzyme sensor for lactate , 2001 .
[7] Jing Zhang,et al. A highly sensitive nonenzymatic glucose sensor based on CuO nanoparticles decorated carbon spheres , 2015 .
[8] P. Watkins,et al. Lactic Acidosis in Diabetes* , 1969, British medical journal.
[9] J. Chou,et al. Fabrication and Characteristic Analysis of a Remote Real-Time Monitoring Applied to Glucose Sensor System Based on Microfluidic Framework , 2015, IEEE Sensors Journal.
[10] Pilar Barreiro,et al. Performance of ZigBee-Based wireless sensor nodes for real-time monitoring of fruit logistics , 2008 .
[11] J. Danesh,et al. Diabetes mellitus, fasting blood glucose concentration, and risk of vascular disease: a collaborative meta-analysis of 102 prospective studies. , 2010, Lancet.
[12] B. Danielsson,et al. An intracellular glucose biosensor based on nanoflake ZnO , 2010 .
[13] P Temple-Boyer,et al. Development of pH-based ElecFET biosensors for lactate ion detection. , 2013, Biosensors & bioelectronics.
[14] Jung-Chuan Chou,et al. Application of Microfluidic Device for Lactic Biosensor , 2013, IEEE Sensors Journal.
[15] Magnus Willander,et al. A fast and sensitive potentiometric glucose microsensor based on glucose oxidase coated ZnO nanowires grown on a thin silver wire , 2010 .
[16] Zafar Hussain Ibupoto,et al. Potentiometric glucose sensor based on the glucose oxidase immobilized iron ferrite magnetic particle/chitosan composite modified gold coated glass electrode , 2012 .
[17] Jing-Juan Xu,et al. A sensitive biosensor for lactate based on layer-by-layer assembling MnO2 nanoparticles and lactate oxidase on ion-sensitive field-effect transistors. , 2005, Chemical communications.
[18] Fangqiong Tang,et al. A practical glucose biosensor based on Fe(3)O(4) nanoparticles and chitosan/nafion composite film. , 2009, Biosensors & bioelectronics.
[19] Samad Sheikhaei,et al. Design of a direct conversion ultra low power ZigBee receiver RF front-end for wireless sensor networks , 2013, Microelectron. J..
[20] M. McCormick,et al. Interaction among Skeletal Muscle Metabolic Energy Systems during Intense Exercise , 2010, Journal of nutrition and metabolism.
[21] Jung-Chuan Chou,et al. Wireless Sensing System for Flexible Arrayed Potentiometric Sensor Based on XBee Module , 2016, IEEE Sensors Journal.
[22] Wei‐Hung Chiang,et al. A high sensitivity field effect transistor biosensor for methylene blue detection utilize graphene oxide nanoribbon. , 2017, Biosensors & bioelectronics.
[23] Rajab Challoo,et al. An Overview and Assessment of Wireless Technologies and Co- existence of ZigBee, Bluetooth and Wi-Fi Devices , 2012, Complex Adaptive Systems.
[24] N. Jaffrezic‐Renault,et al. Determination of total creatine kinase activity in blood serum using an amperometric biosensor based on glucose oxidase and hexokinase. , 2015, Talanta.
[25] Jung-Chuan Chou,et al. Fabrication of Flexible Arrayed Lactate Biosensor Based on Immobilizing LDH-NAD+ on NiO Film Modified by GO and MBs , 2017, Sensors.
[26] M. Willander,et al. Electrochemical Biosensors Based on ZnO Nanostructures to Measure Intracellular Metal Ions and Glucose , 2013 .
[27] Jung-Chuan Chou,et al. Dynamic and Wireless Sensing Measurements of Potentiometric Glucose Biosensor Based on Graphene and Magnetic Beads , 2015, IEEE Sensors Journal.
[28] Davor Z Antanasijević,et al. Review: the approaches for estimation of limit of detection for ICP-MS trace analysis of arsenic. , 2012, Talanta.
[29] Jung-Chuan Chou,et al. Data Fusion and Fault Diagnosis for Flexible Arrayed pH Sensor Measurement System Based on LabVIEW , 2014, IEEE Sensors Journal.
[30] Ju Young Kim,et al. Ubiquitous healthcare service using Zigbee and mobile phone for elderly patients , 2009, Int. J. Medical Informatics.
[31] Wen-Tsai Sung,et al. Health parameter monitoring via a novel wireless system , 2014, Appl. Soft Comput..
[32] T. Rocha-Santos,et al. Graphene based sensors and biosensors , 2017 .
[33] Ross D. Milton,et al. A self-powered amperometric lactate biosensor based on lactate oxidase immobilized in dimethylferrocene-modified LPEI. , 2016, Biosensors & bioelectronics.
[34] R. Bartlett,et al. Intravascular glucose/lactate sensors prepared with nitric oxide releasing poly(lactide-co-glycolide)-based coatings for enhanced biocompatibility. , 2011, Biosensors & bioelectronics.
[35] Seong J. Cho,et al. Disposable all-solid-state pH and glucose sensors based on conductive polymer covered hierarchical AuZn oxide. , 2016, Biosensors & bioelectronics.
[36] S. Tseng,et al. Research of Non-Ideal Effect and Dynamic Measurement of the Flexible-Arrayed Chlorine Ion Sensor , 2016, IEEE Sensors Journal.
[37] M. Campàs,et al. New advances in electrochemical biosensors for the detection of toxins: Nanomaterials, magnetic beads and microfluidics systems. A review. , 2016, Analytica chimica acta.
[38] The Emerging Risk Factors Collaboration. Diabetes mellitus, fasting blood glucose concentration, and risk of vascular disease: a collaborative meta-analysis of 102 prospective studies , 2010, The Lancet.