Microfabrication and in Vivo Performance of a Microdialysis Probe with Embedded Membrane.
暂无分享,去创建一个
Hyeun Joong Yoon | Robert T Kennedy | O. Mabrouk | R. Kennedy | Jenny-Marie T. Wong | H. Yoon | S. S. Pappas | Colleen E. Dugan | W. Lee | Woong Hee Lee | Thitaphat Ngernsutivorakul | Thitaphat Ngernsutivorakul | Omar S Mabrouk | Jenny-Marie T Wong | Colleen E Dugan | Samuel S Pappas | Samuel S. Pappas
[1] J. B. Justice,et al. Microdialysis of dopamine interpreted with quantitative model incorporating probe implantation trauma , 2003, Journal of neurochemistry.
[2] O. Mabrouk,et al. Mass spectrometry "sensor" for in vivo acetylcholine monitoring. , 2012, Analytical chemistry.
[3] Robert T Kennedy,et al. In vivo measurements of neurotransmitters by microdialysis sampling. , 2006, Analytical chemistry.
[4] M. Fillenz,et al. The mechanisms controlling physiologically stimulated changes in rat brain glucose and lactate: a microdialysis study. , 1996, The Journal of physiology.
[5] R. Kennedy,et al. Trace-level amino acid analysis by capillary liquid chromatography and application to in vivo microdialysis sampling with 10-s temporal resolution. , 2000, Analytical chemistry.
[6] P. Rada,et al. Glutamate measured by 6-s resolution brain microdialysis: capillary electrophoretic and laser-induced fluorescence detection application. , 1997, Journal of chromatography. B, Biomedical sciences and applications.
[7] David Trebotich,et al. Microdialysis Microneedles for Continuous Medical Monitoring , 2005, Biomedical microdevices.
[8] Robert W. Hower,et al. Microfabricated sampling probes for in vivo monitoring of neurotransmitters. , 2013, Analytical chemistry.
[9] R. Waugh,et al. Highly permeable silicon membranes for shear free chemotaxis and rapid cell labeling. , 2014, Lab on a chip.
[10] S. Oja,et al. Characteristics of basal taurine release in the rat striatum measured by microdialysis , 2004, Amino Acids.
[11] Jung Sang Suh,et al. Highly ordered two-dimensional carbon nanotube arrays , 1999 .
[12] Simon Song,et al. Electrophoretic concentration of proteins at laser-patterned nanoporous membranes in microchips. , 2004, Analytical chemistry.
[13] M. Fillenz,et al. Extracellular glucose turnover in the striatum of unanaesthetized rats measured by quantitative microdialysis , 1997, The Journal of physiology.
[14] Jung-Hwan Park,et al. Dissolving microneedles for transdermal drug delivery. , 2008, Biomaterials.
[15] J. Zahn,et al. On-Chip Microdialysis System with Flow-Through Glucose Sensing Capabilities , 2007, Journal of diabetes science and technology.
[16] W. Geldenhuys,et al. In vivo brain microdialysis: advances in neuropsychopharmacology and drug discovery , 2011, Expert opinion on drug discovery.
[17] O. Mabrouk,et al. Collection, storage, and electrophoretic analysis of nanoliter microdialysis samples collected from awake animals in vivo , 2011, Analytical and bioanalytical chemistry.
[18] O. Mabrouk,et al. In vivo neurochemical monitoring using benzoyl chloride derivatization and liquid chromatography-mass spectrometry. , 2012, Analytical chemistry.
[19] Hyungil Jung,et al. An optimized hollow microneedle for minimally invasive blood extraction , 2013, Biomedical microdevices.
[20] J. B. Justice,et al. Quantitative microdialysis of dopamine in the striatum: effect of circadian variation , 1992, Journal of Neuroscience Methods.
[21] Il-Joo Cho,et al. A new thin silicon microneedle with an embedded microchannel for deep brain drug infusion , 2015 .
[22] Nicholas A. Cellar,et al. Microdialysis coupled on-line to capillary liquid chromatography with tandem mass spectrometry for monitoring acetylcholine in vivo , 2007, Journal of Neuroscience Methods.
[23] Tejal A Desai,et al. Surface modification of nanoporous alumina surfaces with poly(ethylene glycol). , 2004, Langmuir : the ACS journal of surfaces and colloids.
[24] Reimar Spohr,et al. Pore geometry of etched ion tracks in polyimide , 1996 .
[25] Simon Song,et al. Microchip dialysis of proteins using in situ photopatterned nanoporous polymer membranes. , 2004, Analytical chemistry.
[26] U. Ungerstedt,et al. Microdialysis in the study of extracellular levels of amino acids in the rat brain. , 1986, Acta physiologica Scandinavica.
[27] J. Kuo,et al. Determination of extracellular glutathione in livers of anaesthetized rats by microdialysis with on-line high-performance liquid chromatography. , 1995, Journal of chromatography. B, Biomedical applications.
[28] J. Linderman,et al. Push-pull perfusion sampling with segmented flow for high temporal and spatial resolution in vivo chemical monitoring. , 2011, Analytical chemistry.
[29] H. Benveniste,et al. Microdialysis—Theory and application , 1990, Progress in Neurobiology.
[30] T. C. Downie,et al. Anodic oxide films on aluminum , 1969 .
[31] G. Arbuthnott,et al. Amphetamine‐Induced Dopamine Release in the Rat Striatum: An In Vivo Microdialysis Study , 1988, Journal of neurochemistry.
[32] Michael S Roberts,et al. Dry-coated microprojection array patches for targeted delivery of immunotherapeutics to the skin. , 2009, Journal of controlled release : official journal of the Controlled Release Society.
[33] Robert T. Kennedy,et al. Collection of nanoliter microdialysate fractions in plugs for off-line in vivo chemical monitoring with up to 2s temporal resolution , 2010, Journal of Neuroscience Methods.
[34] Derek Fawcett,et al. Progress in Nano-Engineered Anodic Aluminum Oxide Membrane Development , 2011, Materials.
[35] Pradyot Nandi,et al. Recent trends in microdialysis sampling integrated with conventional and microanalytical systems for monitoring biological events: a review. , 2009, Analytica chimica acta.
[36] Jan Kehr,et al. A survey on quantitative microdialysis: theoretical models and practical implications , 1993, Journal of Neuroscience Methods.
[37] Helen Song,et al. Reactions in droplets in microfluidic channels. , 2006, Angewandte Chemie.
[38] K. Kanamori,et al. Quantitative determination of extracellular glutamine concentration in rat brain, and its elevation in vivo by system A transport inhibitor, α‐(methylamino)isobutyrate , 2004, Journal of neurochemistry.
[39] A. Hashimoto,et al. Effects of N-methyl-D-aspartate, kainate or veratridine on extracellular concentrations of free D-serine and L-glutamate in rat striatum: an in vivo microdialysis study , 2000, Brain Research Bulletin.
[40] M. Ferrari,et al. Characterization of micromachined silicon membranes for immunoisolation and bioseparation applications , 1999 .
[41] J. B. Justice,et al. Rapid sampling and determination of extracellular dopamine in vivo. , 1987, Analytical chemistry.
[42] Shankar Chandrasekaran,et al. Surface micromachined metallic microneedles , 2003 .
[43] J. B. Justice,et al. In vivo calibration of microdialysis probes for exogenous compounds. , 1992, Analytical chemistry.
[44] D. Bourrier,et al. Integration of lateral porous silicon membranes into planar microfluidics. , 2015, Lab on a chip.
[45] R. Kennedy,et al. Quantitative in vivo monitoring of primary amines in rat caudate nucleus using microdialysis coupled by a flow-gated interface to capillary electrophoresis with laser-induced fluorescence detection. , 1996, Analytical chemistry.
[46] Alar Ainla,et al. A multifunctional pipette. , 2012, Lab on a chip.
[47] Beelee Chua,et al. Design, Development, and Evaluation of a Novel Microneedle Array-based Continuous Glucose Monitor , 2014, Journal of diabetes science and technology.
[48] G. Gerhardt,et al. Determination of diffusion coefficients by flow injection analysis , 1982 .
[49] U. Ungerstedt,et al. On the Origin of Extracellular Glutamate Levels Monitored in the Basal Ganglia of the Rat by In Vivo Microdialysis , 1996, Journal of neurochemistry.
[50] Regina Luttge,et al. Applying ceramic nanoporous microneedle arrays as a transport interface in egg plants and an ex-vivo human skin model , 2012 .
[51] T. Gaborski,et al. Charge- and size-based separation of macromolecules using ultrathin silicon membranes , 2007, Nature.