A Micro-Electrode Array device coupled to a laser-based system for the local stimulation of neurons by optical release of glutamate
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Giancarlo Ferrigno | Alessandra Pedrocchi | Diego Ghezzi | Andrea Menegon | Flavia Valtorta | G. Ferrigno | A. Pedrocchi | D. Ghezzi | F. Valtorta | A. Menegon
[1] D. O'Malley,et al. Photostimulation with caged neurotransmitters using fiber optic lightguides , 1997, Journal of Neuroscience Methods.
[2] Yasuhiko Jimbo,et al. A system for MEA-based multisite stimulation , 2003, IEEE Transactions on Biomedical Engineering.
[3] Rafael Yuste,et al. Stimulating neurons with light , 2002, Current Opinion in Neurobiology.
[4] J. Corrie,et al. Mechanisms of photorelease of carboxylic acids from 1-acyl-7-nitroindolines in solutions of varying water content , 2002, Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology.
[5] A. Aertsen,et al. Two-dimensional monitoring of spiking networks in acute brain slices , 2001, Experimental Brain Research.
[6] G. Loeb,et al. A miniature microelectrode array to monitor the bioelectric activity of cultured cells. , 1972, Experimental cell research.
[7] P. Haydon,et al. UV photolysis using a micromanipulated optical fiber to deliver UV energy directly to the sample , 1999, Journal of Neuroscience Methods.
[8] M Tedesco,et al. In vitro cortical neuronal networks as a new high-sensitive system for biosensing applications. , 2005, Biosensors & bioelectronics.
[9] A. Gurney,et al. Light-flash physiology with synthetic photosensitive compounds. , 1987, Physiological reviews.
[10] Ulrich Egert,et al. Biological application of microelectrode arrays in drug discovery and basic research , 2003, Analytical and bioanalytical chemistry.
[11] G. Gross. Simultaneous Single Unit Recording in vitro with a Photoetched Laser Deinsulated Gold Multimicroelectrode Surface , 1979, IEEE Transactions on Biomedical Engineering.
[12] J. Booher,et al. Growth and cultivation of dissociated neurons and glial cells from embryonic chick, rat and human brain in flask cultures. , 1972, Neurobiology.
[13] Lawrence C. Katz,et al. Scanning laser photostimulation: a new approach for analyzing brain circuits , 1994, Journal of Neuroscience Methods.
[14] R Kötter,et al. Analysing functional connectivity in brain slices by a combination of infrared video microscopy, flash photolysis of caged compounds and scanning methods , 1998, Neuroscience.
[15] J. Nerbonne. Caged compounds: tools for illuminating neuronal responses and connections , 1996, Current Opinion in Neurobiology.
[16] Xindong Song,et al. Microelectrode array-based system for neuropharmacological applications with cortical neurons cultured in vitro. , 2007, Biosensors & bioelectronics.
[17] Steve M. Potter,et al. Real-time multi-channel stimulus artifact suppression by local curve fitting , 2002, Journal of Neuroscience Methods.
[18] Jianing Yu,et al. Top-down laminar organization of the excitatory network in motor cortex , 2008, Nature Neuroscience.
[19] J. Pine. Recording action potentials from cultured neurons with extracellular microcircuit electrodes , 1980, Journal of Neuroscience Methods.
[20] D. Bertrand,et al. A three-dimensional multi-electrode array for multi-site stimulation and recording in acute brain slices , 2002, Journal of Neuroscience Methods.
[21] Steve M. Potter,et al. A new approach to neural cell culture for long-term studies , 2001, Journal of Neuroscience Methods.
[22] W. Maxwell Cowan,et al. Rat hippocampal neurons in dispersed cell culture , 1977, Brain Research.
[23] U. Egert,et al. A novel organotypic long-term culture of the rat hippocampus on substrate-integrated multielectrode arrays. , 1998, Brain research. Brain research protocols.
[24] J. Corrie,et al. Effects of Aromatic Substituents on the Photocleavage of 1-Acyl-7-nitroindolines , 2000 .
[25] M. Dalva,et al. Rearrangements of synaptic connections in visual cortex revealed by laser photostimulation. , 1994, Science.