Domokos Meszéna

Affiliations: 
2014- Institute of Cognitive Neuroscience and Psychology Research Centre for Natural Sciences, Eötvös Loránd Research Network 
 2022- Department of Neurology Massachusetts General Hospital and Harvard Medical School, Boston, MA, United States 
Area:
Electrophysiology, Neurotechnology, Two-photon imaging, Multielectrode development, Translational Neuroscience
Website:
https://scholar.google.com/citations?user=Ws9N7HcAAAAJ&hl=hu
Google:
"Domokos Meszéna"
Bio:

Domokos Meszena is a research fellow at the Center for Neurotechnology and Neurorecovery within the Department of Neurology at Massachusetts General Hospital (MGH), Harvard Medical School (HMS), located in Boston, MA, USA. Additionally, he holds a post-doctoral research associate position at the Research Centre for Natural Sciences (RCNS) in Budapest, Hungary, where he is part of the Integrative Neuroscience Group, led by Istvan Ulbert. Domokos obtained his Ph.D. degree (summa cum laude) in October 2020 from Pazmany Peter Catholic University, Faculty of Information Technology and Bionics in Budapest. His recent research project at MGH focuses on exploring cutting-edge intraoperative neurotech solutions using high-density electrophysiology, which has significant translational and human clinical perspectives.

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Publications

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Windolf C, Yu H, Paulk AC, et al. (2023) DREDge: robust motion correction for high-density extracellular recordings across species. Biorxiv : the Preprint Server For Biology
Coughlin B, Muñoz W, Kfir Y, et al. (2023) Modified Neuropixels probes for recording human neurophysiology in the operating room. Nature Protocols
Windolf C, Paulk AC, Kfir Y, et al. (2023) ROBUST ONLINE MULTIBAND DRIFT ESTIMATION IN ELECTROPHYSIOLOGY DATA. Proceedings of the ... Ieee International Conference On Acoustics, Speech, and Signal Processing. Icassp (Conference). 2023
Meszéna D, Barlay A, Boldog P, et al. (2022) Seeing beyond the spikes: Reconstructing the complete spatiotemporal membrane potential distribution from paired intra- and extracellular recordings. The Journal of Physiology
Bod RB, Rokai J, Meszéna D, et al. (2022) From End to End: Gaining, Sorting, and Employing High-Density Neural Single Unit Recordings. Frontiers in Neuroinformatics. 16: 851024
Szepesi Kovács D, Hajdu I, Mészáros G, et al. (2021) Synthesis and characterization of new fluorescent boro-β-carboline dyes. Rsc Advances. 11: 12802-12807
Fiáth R, Meszéna D, Somogyvári Z, et al. (2021) Recording site placement on planar silicon-based probes affects signal quality in acute neuronal recordings. Scientific Reports. 11: 2028
Márton G, Tóth EZ, Wittner L, et al. (2020) The neural tissue around SU-8 implants: A quantitative in vivo biocompatibility study. Materials Science & Engineering. C, Materials For Biological Applications. 112: 110870
Orbán G, Meszéna D, Tasnády KR, et al. (2019) Correction: Method for spike detection from microelectrode array recordings contaminated by artifacts of simultaneous two-photon imaging. Plos One. 14: e0224590
Orbán G, Meszéna D, Tasnády KR, et al. (2019) Method for spike detection from microelectrode array recordings contaminated by artifacts of simultaneous two-photon imaging. Plos One. 14: e0221510
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