Getting started with open‐hardware: Development and control of microfluidic devices
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Hong Jiao | Eric Tavares Costa | Maria F. Mora | Peter A. Willis | Claudimir L. Lago | Carlos D. Garcia | Carlos D. Garcia | Claudimir L. Lago | P. Willis | M. Mora | E. T. Costa | H. Jiao
[1] Dermot Brabazon,et al. Portable capillary-based (non-chip) capillary electrophoresis , 2010 .
[2] William H. Grover,et al. Development and multiplexed control of latching pneumatic valves using microfluidic logical structures. , 2006, Lab on a chip.
[3] Valmir F. Juliano,et al. Applying moving median digital filter to mass spectrometry and potentiometric titration , 1995 .
[4] Mitsutoshi Nakajima,et al. Microfluidics for food, agriculture and biosystems industries. , 2011, Lab on a chip.
[5] Emanuel Carrilho,et al. A rapid and reliable bonding process for microchip electrophoresis fabricated in glass substrates , 2010, Electrophoresis.
[6] Ming-Chun Huang,et al. Rapid electrochemical detection on a mobile phone. , 2013, Lab on a chip.
[7] Philip Doble,et al. A portable explosive detector based on fluorescence quenching of pyrene deposited on coloured wax-printed μPADs. , 2013, Lab on a chip.
[8] Amanda L. Bowen,et al. Integration of on‐chip peristaltic pumps and injection valves with microchip electrophoresis and electrochemical detection , 2010, Electrophoresis.
[9] Jungkyu Kim,et al. Microvalve Enabled Digital Microfluidic Systems for High-Performance Biochemical and Genetic Analysis , 2010, JALA.
[10] Bastian E. Rapp,et al. Let there be chip—towards rapid prototyping of microfluidic devices: one-step manufacturing processes , 2011 .
[11] Dror G. Feitelson,et al. The Linux kernel as a case study in software evolution , 2010, J. Syst. Softw..
[12] Andrew Hoog. Android and mobile forensics , 2011 .
[13] Richard A Mathies,et al. An integrated microfluidic processor for single nucleotide polymorphism-based DNA computing. , 2005, Lab on a chip.
[14] Claudimir Lucio do Lago,et al. Monoalkyl carbonates in carbonated alcoholic beverages. , 2012, Food chemistry.
[15] Philip N Duncan,et al. Pneumatic oscillator circuits for timing and control of integrated microfluidics , 2013, Proceedings of the National Academy of Sciences.
[16] Claudimir Lucio do Lago,et al. Unmanned platform for long‐range remote analysis of volatile compounds in air samples , 2012, Electrophoresis.
[17] William H. Grover,et al. Monolithic membrane valves and diaphragm pumps for practical large-scale integration into glass microfluidic devices , 2003 .
[18] Emanuel Carrilho,et al. Microfab-less Microfluidic Capillary Electrophoresis Devices. , 2013, Analytical methods : advancing methods and applications.
[19] Claudimir L do Lago,et al. On the formation of carbonate adducts of fatty alcohols, sterols, and sugars in biological conditions , 2012, Electrophoresis.
[20] Lucas Blanes,et al. Recent developments in instrumentation for capillary electrophoresis and microchip‐capillary electrophoresis , 2010, Electrophoresis.
[21] Lucas Blanes,et al. Understanding Capacitively Coupled Contactless Conductivity Detection in Capillary and Microchip Electrophoresis. Part 2. Peak Shape, Stray Capacitance, Noise, and Actual Electronics , 2005 .
[22] Amanda M Stockton,et al. Microchip capillary electrophoresis instrumentation for in situ analysis in the search for extraterrestrial life , 2012, Electrophoresis.
[23] Christopher Berg,et al. Lab‐on‐a‐robot: Integrated microchip CE, power supply, electrochemical detector, wireless unit, and mobile platform , 2008, Electrophoresis.
[24] 大房 健. 基礎講座 電気泳動(Electrophoresis) , 2005 .
[25] Alberto Escarpa,et al. CE microchips: An opened gate to food analysis , 2007, Electrophoresis.
[26] Kelliton José Mendonça Francisco,et al. A compact and high‐resolution version of a capacitively coupled contactless conductivity detector , 2009, Electrophoresis.
[27] Angel Ríos,et al. Challenges of analytical microsystems , 2006 .
[28] S Alex Kandel,et al. Note: Circuit design for direct current and alternating current electrochemical etching of scanning probe microscopy tips. , 2012, The Review of scientific instruments.
[29] William H. Grover,et al. Development and evaluation of a microdevice for amino acid biomarker detection and analysis on Mars. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[30] E. Carrilho,et al. A toner-mediated lithographic technology for rapid prototyping of glass microchannels. , 2007, Lab on a chip.
[31] Sam Bae,et al. Monolithic Teflon membrane valves and pumps for harsh chemical and low-temperature use. , 2007, Lab on a chip.
[32] Alberto Escarpa,et al. Food analysis on microchip electrophoresis: An updated review , 2012, Electrophoresis.
[33] David J Beebe,et al. Rapid prototyping of arrayed microfluidic systems in polystyrene for cell-based assays. , 2011, Analytical chemistry.
[34] Reidar Conradi,et al. Adoption of open source software in software-intensive organizations - A systematic literature review , 2010, Inf. Softw. Technol..
[35] Frank Greer,et al. Toward total automation of microfluidics for extraterrestial in situ analysis. , 2011, Analytical chemistry.
[36] Steve C. C. Shih,et al. Dried blood spot analysis by digital microfluidics coupled to nanoelectrospray ionization mass spectrometry. , 2012, Analytical chemistry.
[37] Guy Paré,et al. Antecedents of open source software adoption in health care organizations: A qualitative survey of experts in Canada , 2013, Int. J. Medical Informatics.
[38] P Novo,et al. Integrated optical detection of autonomous capillary microfluidic immunoassays:a hand-held point-of-care prototype. , 2014, Biosensors & bioelectronics.
[39] Á. Ríos,et al. Miniaturization through lab-on-a-chip: utopia or reality for routine laboratories? A review. , 2012, Analytica chimica acta.
[40] Robert T Kennedy,et al. Fully integrated microfluidic separations systems for biochemical analysis. , 2007, Journal of chromatography. A.
[41] Lucas Blanes,et al. Understanding Capacitively Coupled Contactless Conductivity Detection in Capillary and Microchip Electrophoresis. Part 1. Fundamentals , 2005 .
[42] Pavel Takmakov,et al. Instrumentation for fast-scan cyclic voltammetry combined with electrophysiology for behavioral experiments in freely moving animals. , 2011, The Review of scientific instruments.
[43] Shekhar Bhansali,et al. An LTCC-based microfluidic system for label-free, electrochemical detection of cortisol , 2013 .
[44] James P Landers,et al. Forensic DNA Analysis on Microfluidic Devices: A Review , 2007, Journal of forensic sciences.