Search Results - "Charvet, G."

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  1. 1

    Long-Term Sheep Implantation of WIMAGINE ® , a Wireless 64-Channel Electrocorticogram Recorder by Sauter-Starace, F, Ratel, D, Cretallaz, C, Foerster, M, Lambert, A, Gaude, C, Costecalde, T, Bonnet, S, Charvet, G, Aksenova, T, Mestais, C, Benabid, Alim-Louis, Torres-Martinez, N

    Published in Frontiers in neuroscience (21-08-2019)
    “…This article deals with the long-term preclinical validation of WIMAGINE (Wireless Implantable Multi-channel Acquisition system for Generic Interface with…”
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    Journal Article
  2. 2

    AMMA‐CATCH, a Critical Zone Observatory in West Africa Monitoring a Region in Transition by Galle, S., Grippa, M., Peugeot, C., Moussa, I. Bouzou, Cappelaere, B., Demarty, J., Mougin, E., Panthou, G., Adjomayi, P., Agbossou, E.K., Ba, A., Boucher, M., Cohard, J.-M., Descloitres, M., Descroix, L., Diawara, M., Dossou, M., Favreau, G., Gangneron, F., Gosset, M., Hector, B., Hiernaux, P., Issoufou, B.-A., Kergoat, L., Lawin, E., Lebel, T., Legchenko, A., Abdou, M. Malam, Malam-Issa, O., Mamadou, O., Nazoumou, Y., Pellarin, T., Quantin, G., Sambou, B., Seghieri, J., Séguis, L., Vandervaere, J.-P., Vischel, T., Vouillamoz, J.-M., Zannou, A., Afouda, S., Alhassane, A., Arjounin, M., Barral, H., Biron, R., Cazenave, F., Chaffard, V., Chazarin, J.-P., Guyard, H., Koné, A., Mainassara, I., Mamane, A., Oi, M., Ouani, T., Soumaguel, N., Wubda, M., Ago, E.E., Alle, I.C., Allies, A., Arpin-Pont, F., Awessou, B., Cassé, C., Charvet, G., Dardel, C., Depeyre, A., Diallo, F.B., Do, T., Fatras, C., Frappart, F., Gal, L., Gascon, T., Gibon, F., Guiro, I., Ingatan, A., Kempf, J., Kotchoni, D.O.V., Lawson, F.M.A., Leauthaud, C., Louvet, S., Mason, E., Nguyen, C.C., Perrimond, B., Pierre, C., Richard, A., Robert, E., Román-Cascón, C., Velluet, C., Wilcox, C.

    Published in Vadose zone journal (2018)
    “…Core Ideas AMMA‐CATCH is a long‐term critical zone observatory in West Africa. Four sites sample the sharp ecoclimatic gradient characteristic of this region…”
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    Journal Article
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    KDI: A wireless ECoG recording platform with impedance spectroscopy, electrical stimulation and real-time, lossless data compression by Foerster, M., Burdin, F., Safont, F., Bernert, M., Dehaene, D., Lambert, A., Charvet, G.

    “…A power-efficient modular wireless platform has been designed for prototyping and pre-clinical evaluations of neural recording implants. This Kit for Designing…”
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    Conference Proceeding Journal Article
  5. 5

    A Multi-channel platform for recording and stimulation of large neuronal structures by Guillemaud, R, Bêche, J.-F, Billoint, O, Bonnet, S, Gharbi, S, Rostaing, J.-P, Trévisiol, M, Yvert, B, Rousseau, L, Goy, F, Heuschkel, M, David, O, Saillet, S, Charvet, G

    “…Abstract In order to understand the dynamics of large neural networks, where information is widely distributed over thousands of cells, one of today's…”
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    Journal Article
  6. 6

    KDI: A wireless power-efficient modular platform for pre-clinical evaluation of implantable neural recording designs by Foerster, M., Burdin, F., Seignon, F., Lambert, A., Vasquez, C., Charvet, G.

    “…This paper presents a power-efficient modular wireless platform which has been designed for prototyping and pre-clinical evaluations of neural recording…”
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    Conference Proceeding Journal Article
  7. 7

    A wireless 64-channel ECoG recording Electronic for implantable monitoring and BCI applications: WIMAGINE by Charvet, G., Foerster, M., Chatalic, G., Michea, A., Porcherot, J., Bonnet, S., Filipe, S., Audebert, P., Robinet, S., Josselin, V., Reverdy, J., D'Errico, R., Sauter, F., Mestais, C., Benabid, A. L.

    “…A wireless, low power, 64-channel data acquisition system named WIMAGINE has been designed for ElectroCorticoGram (ECoG) recording. This system is based on a…”
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    Conference Proceeding Journal Article
  8. 8

    A synchronization method for wireless acquisition systems, application to brain computer interfaces by Foerster, M., Bonnet, S., van Langhenhove, A., Porcherot, J., Charvet, G.

    “…A synchronization method for wireless acquisition systems has been developed and implemented on a wireless ECoG recording implant and on a wireless EEG…”
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    Conference Proceeding Journal Article
  9. 9

    WIMAGINE®: 64-channel ECoG recording implant for human applications by Charvet, G., Sauter-Starace, F., Foerster, M., Ratel, D., Chabrol, C., Porcherot, J., Robinet, S., Reverdy, J., D'Errico, R., Mestais, C., Benabid, A. L.

    “…A wireless 64-channel ElectroCorticoGram (ECoG) recording implant named WIMAGINE ® has been designed for clinical applications. This active implantable medical…”
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    Conference Proceeding Journal Article
  10. 10

    A modular 256-channel Micro Electrode Array platform for in vitro and in vivo neural stimulation and recording: BioMEA by Charvet, G, Billoint, O, Gharbi, S, Heuschkel, M, Georges, C, Kauffmann, T, Pellissier, A, Yvert, B, Guillemaud, R

    “…In order to understand the dynamics of large neural networks, where information is widely distributed over thousands of cells, one of today's challenges is to…”
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    Conference Proceeding Journal Article
  11. 11

    A wireless multichannel EEG recording platform by Filipe, S., Charvet, G., Foerster, M., Porcherot, J., Beche, J. F., Bonnet, S., Audebert, P., Regis, G., Zongo, B., Robinet, S., Condemine, C., Mestais, C., Guillemaud, R.

    “…A wireless multichannel data acquisition system is being designed for ElectroEncephaloGraphy (EEG) recording. The system is based on a custom integrated…”
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    Conference Proceeding Journal Article
  12. 12

    BioMEA: a 256-channel MEA system with integrated electronics by Charvet, G, Billoint, O, Rousseau, L, Yvert, B

    “…In order to understand the dynamics of large neural networks, where information is widely distributed over thousands of cells, one of today's challenges is to…”
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    Journal Article
  13. 13

    A 64-Channel ASIC for In-Vitro Simultaneous Recording and Stimulation of Neurons using Microelectrode Arrays by Billoint, O., Rostaing, J.P., Charvet, G., Yvert, B.

    “…A 64 channels CMOS chip dedicated to in-vitro simultaneous recording and stimulation of neurons using microelectrode arrays has been developed. It includes,…”
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    Conference Proceeding Journal Article
  14. 14
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    Real-time adaptive discrimination threshold estimation for embedded neural signals detection by Beche, J.-F., Bonnet, S., Levi, T., Escola, R., Noca, A., Charvet, G., Guillemaud, R.

    “…Multi-electrode array systems used in neurological applications produce large amount of data because of the simultaneous continuous high-rate sampling on a…”
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    Conference Proceeding
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    Integration of a state of the art ECoG recording ASIC into a fully implantable electronic environment by Foerster, M., Porcherot, J., Bonnet, S., Van Langhenhove, A., Robinet, S., Charvet, G.

    “…A fully implantable system for BCI studies has been designed around a state of the art ECoG recording ASIC. The device is able to record on 64 electrodes with…”
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    Conference Proceeding
  18. 18

    BioMEATM : a 256-channel MEA system with integrated electronics by Charvet, G., Billoint, O., Rousseau, L., Yvert, B.

    “…In order to understand the dynamics of large neural networks, where information is widely distributed over thousands of cells, one of today's challenges is to…”
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    Conference Proceeding
  19. 19

    WIMAGINE: A wireless, low power, 64-channel ECoG recording platform for implantable BCI applications by Charvet, G., Foerster, M., Filipe, S., Porcherot, J., Beche, J. F., Guillemaud, R., Audebert, P., Regis, G., Zongo, B., Robinet, S., Condemine, C., Tetu, Y., Sauter, F., Mestais, C., Benabid, A. L.

    “…WIMAGINE is a wireless low power 64-channel data acquisition system designed for Electrocorticogram (ECoG) recording. The system is based on a custom…”
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    Conference Proceeding