Anzahl der Publikationen: 44
	Zeitschriftenartikel
    Angotzi, Gian Nicola; Vöröslakos, Mihály; Nikolas, Perentos; Ribeiro, Joao Filipe; Vincenzi, Matteo; Boi, Fabio; Lecomte, Aziliz; Orban, Gabor; Genewsky, Andreas J.  ORCID: https://orcid.org/0000-0002-6017-2862; Schwesig, Gerrit; Aykan, Deren; Buzsáki, György; Sirota, Anton
ORCID: https://orcid.org/0000-0002-6017-2862; Schwesig, Gerrit; Aykan, Deren; Buzsáki, György; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587 und Berdondini, Luca
ORCID: https://orcid.org/0000-0002-4700-6587 und Berdondini, Luca  ORCID: https://orcid.org/0000-0001-9521-2812
  
(27. Februar 2025):
		Multi-shank 1024 channels active SiNAPS probe for large multi-regional topographical electrophysiological mapping of neural dynamics.
	
	 In: Advanced Science, Bd. 12, Nr.  16, 2416239
      
        
          
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ORCID: https://orcid.org/0000-0001-9521-2812
  
(27. Februar 2025):
		Multi-shank 1024 channels active SiNAPS probe for large multi-regional topographical electrophysiological mapping of neural dynamics.
	
	 In: Advanced Science, Bd. 12, Nr.  16, 2416239
      
        
          
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    Middya, Sagnik; Carnicer-Lombarte, Alejandro; Curto, Vincenzo F.; Hilton, Sam; Genewsky, Andreas J.  ORCID: https://orcid.org/0000-0002-6017-2862; Rutz, Alexandra L.; Barone, Damiano G; Kaminski Schierle, Gabriele S.; Sirota, Anton
ORCID: https://orcid.org/0000-0002-6017-2862; Rutz, Alexandra L.; Barone, Damiano G; Kaminski Schierle, Gabriele S.; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587 und Malliaras, George G.
  
(2023):
		Multishank Thin-Film Neural Probes and Implantation System for High-Resolution Neural Recording Applications.
	
	 In: Advanced Electronic Materials, Bd. 9, Nr.  9, 2200883: S. 1-9
	
      
        
          
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ORCID: https://orcid.org/0000-0002-4700-6587 und Malliaras, George G.
  
(2023):
		Multishank Thin-Film Neural Probes and Implantation System for High-Resolution Neural Recording Applications.
	
	 In: Advanced Electronic Materials, Bd. 9, Nr.  9, 2200883: S. 1-9
	
      
        
          
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    Garcia-Cortadella, R.; Schwesig, G.; Jeschke, C.; Illa, X.; Gray, Anna L.; Savage, S.; Stamatidou, E.; Schiessl, I.; Masvidal-Codina, E.; Kostarelos, K.; Guimerá-Brunet, A.; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587 und Garrido, J.A.
  
(11. Januar 2021):
		Graphene active sensor arrays for long-term and wireless mapping of wide frequency band epicortical brain activity.
	
	 In: Nature Communications, Bd. 12, Nr.  211
      
        
          
             [PDF, 7MB]
ORCID: https://orcid.org/0000-0002-4700-6587 und Garrido, J.A.
  
(11. Januar 2021):
		Graphene active sensor arrays for long-term and wireless mapping of wide frequency band epicortical brain activity.
	
	 In: Nature Communications, Bd. 12, Nr.  211
      
        
          
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    Ferreiro, Dardo N.; Amaro, Diana; Schmidtke, Daniel; Sobolev, Andrey; Gundi, Paula T.; Belliveau, Lucile; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Grothe, Benedikt
ORCID: https://orcid.org/0000-0002-4700-6587; Grothe, Benedikt  ORCID: https://orcid.org/0000-0001-7317-0615 und Pecka, Michael
ORCID: https://orcid.org/0000-0001-7317-0615 und Pecka, Michael  ORCID: https://orcid.org/0000-0001-8960-1651
  
(25. September 2020):
		Sensory Island Task (SIT): A New Behavioral Paradigm to Study Sensory Perception and Neural Processing in Freely Moving Animals.
	
	 In: Frontiers in Behavioral Neuroscience, Bd. 14, 576154: S. 1-16
	
      
        
          
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ORCID: https://orcid.org/0000-0001-8960-1651
  
(25. September 2020):
		Sensory Island Task (SIT): A New Behavioral Paradigm to Study Sensory Perception and Neural Processing in Freely Moving Animals.
	
	 In: Frontiers in Behavioral Neuroscience, Bd. 14, 576154: S. 1-16
	
      
        
          
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    Schäfer, Nathan; Garcia‐Cortadella, Ramon; Martinez‐Aguilar, Javier; Schwesig, Gerrit; Illa, Xavi; Moya Lara, Ana; Santiago, Sara; Hébert, Clement; Guirado, Gonzalo; Villa, Rosa; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Guimerà-Brunet, Anton und Garrido, Jose A.
  
(2020):
		Multiplexed neural sensor array of graphene solution-gated field-effect transistors.
	
	 In: 2D Materials, Bd. 7, Nr.  2, 025046
ORCID: https://orcid.org/0000-0002-4700-6587; Guimerà-Brunet, Anton und Garrido, Jose A.
  
(2020):
		Multiplexed neural sensor array of graphene solution-gated field-effect transistors.
	
	 In: 2D Materials, Bd. 7, Nr.  2, 025046
      
        
      
 
    Garcia-Cortadella, Ramon; Schäfer, Nathan; Cisneros-Fernandez, Jose; Ré, Lucia; Illa, Xavi; Schwesig, Gerrit; Moya, Ana; Santiago, Sara; Guirado, Gonzalo; Villa, Rosa; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Serra-Graells, Francesc; Garrido, Jose A. und Guimerà-Brunet, Anton
  
(2020):
		Switchless Multiplexing of Graphene Active Sensor Arrays for Brain Mapping.
	
	 In: Nano Letters, Bd. 20, Nr.  5: S. 3528-3537
ORCID: https://orcid.org/0000-0002-4700-6587; Serra-Graells, Francesc; Garrido, Jose A. und Guimerà-Brunet, Anton
  
(2020):
		Switchless Multiplexing of Graphene Active Sensor Arrays for Brain Mapping.
	
	 In: Nano Letters, Bd. 20, Nr.  5: S. 3528-3537
	
      
        
      
 
    Garcia‐Cortadella, Ramon; Masvidal‐Codina, Eduard; De la Cruz, Jose M.; Schäfer, Nathan; Schwesig, Gerrit; Jeschke, Christoph; Martinez‐Aguilar, Javier; Sanchez‐Vives, Maria V.; Villa, Rosa; Illa, Xavi; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Guimerà, Anton und Garrido, Jose A.
  
(2020):
		Distortion‐Free Sensing of Neural Activity Using Graphene Transistors.
	
	 In: Small, Bd. 16, Nr.  16, 1906640
ORCID: https://orcid.org/0000-0002-4700-6587; Guimerà, Anton und Garrido, Jose A.
  
(2020):
		Distortion‐Free Sensing of Neural Activity Using Graphene Transistors.
	
	 In: Small, Bd. 16, Nr.  16, 1906640
      
        
      
 
    Bräcker, Lasse Björn; Schmid, Christian Andreas; Bolini, Verena Angela; Holz, Claudia Annika; Prud'Homme, Benjamin; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587 und Gompel, Nicolas
  
(2019):
		Quantitative and Discrete Evolutionary Changes in the Egg-Laying Behavior of Single Drosophila Females.
	
	 In: Frontiers in Behavioral Neuroscience, Bd. 13, 118
      
        
          
             [PDF, 8MB]
ORCID: https://orcid.org/0000-0002-4700-6587 und Gompel, Nicolas
  
(2019):
		Quantitative and Discrete Evolutionary Changes in the Egg-Laying Behavior of Single Drosophila Females.
	
	 In: Frontiers in Behavioral Neuroscience, Bd. 13, 118
      
        
          
             [PDF, 8MB]
          
        
      
 
    Pesaran, Bijan; Vinck, Martin; Einevoll, Gaute T.; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Fries, Pascal; Siegel, Markus; Truccolo, Wilson; Schroeder, Charles E. und Srinivasan, Ramesh
  
(Mai 2018):
		Investigating large-scale brain dynamics using field potential recordings: Analysis and interpretation.
	
	 In: Nature Neuroscience, Bd. 21, Nr.  7: S. 903-919
	
      
        
          
             [PDF, 363kB]
ORCID: https://orcid.org/0000-0002-4700-6587; Fries, Pascal; Siegel, Markus; Truccolo, Wilson; Schroeder, Charles E. und Srinivasan, Ramesh
  
(Mai 2018):
		Investigating large-scale brain dynamics using field potential recordings: Analysis and interpretation.
	
	 In: Nature Neuroscience, Bd. 21, Nr.  7: S. 903-919
	
      
        
          
             [PDF, 363kB]
          
        
      
 
    Karalis, Nikolaos  ORCID: https://orcid.org/0000-0002-1804-9756; Dejean, Cyril; Chaudun, Fabrice; Khoder, Suzana; Rozeske, Robert R.; Wurtz, Hélène; Bagur, Sophie; Benchenane, Karim; Sirota, Anton
ORCID: https://orcid.org/0000-0002-1804-9756; Dejean, Cyril; Chaudun, Fabrice; Khoder, Suzana; Rozeske, Robert R.; Wurtz, Hélène; Bagur, Sophie; Benchenane, Karim; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Courtin, Julien und Herry, Cyril
  
(2016):
		4-Hz oscillations synchronize prefrontal-amygdala circuits during fear behavior.
	
	 In: Nature Neuroscience, Bd. 19, Nr.  4: S. 605-612
ORCID: https://orcid.org/0000-0002-4700-6587; Courtin, Julien und Herry, Cyril
  
(2016):
		4-Hz oscillations synchronize prefrontal-amygdala circuits during fear behavior.
	
	 In: Nature Neuroscience, Bd. 19, Nr.  4: S. 605-612
	
      
        
      
 
Paper
Buchbeitrag
    Frolov, A. A.; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Husek, D.; Muraviev, I. und Combe, P.
  
(2003):
		Binary Factorization in Hopfield-Like Neural Autoassociator: A Promising Tool for Data Compression. Hippocampus-Neocortex dialog.
	
	  In: Pearson, D. W.; Steele, N. C. und Albrecht, R. F. (Hrsg.):  
	  
	  Artificial neural nets and genetic algorithms : proceedings of the international conference in Roanne, France, 2003.    Wien u.a.: Springer. S. 58-62
ORCID: https://orcid.org/0000-0002-4700-6587; Husek, D.; Muraviev, I. und Combe, P.
  
(2003):
		Binary Factorization in Hopfield-Like Neural Autoassociator: A Promising Tool for Data Compression. Hippocampus-Neocortex dialog.
	
	  In: Pearson, D. W.; Steele, N. C. und Albrecht, R. F. (Hrsg.):  
	  
	  Artificial neural nets and genetic algorithms : proceedings of the international conference in Roanne, France, 2003.    Wien u.a.: Springer. S. 58-62
	
  
      
        
      
 
Konferenzbeitrag
    Frolov, A. A.; Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Husek, D.; Muraviev, I. und Combe, P.
  
(2009):
		Binary Factorization in Hopfield-Like Neural Autoassociator. A Promising Tool for Data Compression.
	
	  6th ICANNGA, Roanne, France, 2003.
	  
	 
	  
	   Pearson, D.W.; Steele, N.C. und Albrecht, R.F. (Hrsg.):  
	  
	  
	  
	  In: Artificial Neural Nets and Genetic Algorithms: Proceedings of the International Conference in Roanne, France, 2003,   
	  
	  
	  
	  
	  
	  Vienna: Springer. S. 58-62
ORCID: https://orcid.org/0000-0002-4700-6587; Husek, D.; Muraviev, I. und Combe, P.
  
(2009):
		Binary Factorization in Hopfield-Like Neural Autoassociator. A Promising Tool for Data Compression.
	
	  6th ICANNGA, Roanne, France, 2003.
	  
	 
	  
	   Pearson, D.W.; Steele, N.C. und Albrecht, R.F. (Hrsg.):  
	  
	  
	  
	  In: Artificial Neural Nets and Genetic Algorithms: Proceedings of the International Conference in Roanne, France, 2003,   
	  
	  
	  
	  
	  
	  Vienna: Springer. S. 58-62
	
  
      
        
      
 
    Sirota, Anton  ORCID: https://orcid.org/0000-0002-4700-6587; Frolov, A. A. und Husek, D.
  
(1999):
		Nonlinear factorization in sparsely encoded Hopfield-like neural networks.
	
	  ESANN '99, 7th European Symposium on Artificial Neural Networks, Bruges,  Belgium, April 21-22-23,  1999.
	  
	 
	  
	   
	  
	   ESANN '99 (Hrsg.),  
	  
	  In: Proceedings,   
	  
	  
	  
	  
	  
	  IEEE. S. 387-392
ORCID: https://orcid.org/0000-0002-4700-6587; Frolov, A. A. und Husek, D.
  
(1999):
		Nonlinear factorization in sparsely encoded Hopfield-like neural networks.
	
	  ESANN '99, 7th European Symposium on Artificial Neural Networks, Bruges,  Belgium, April 21-22-23,  1999.
	  
	 
	  
	   
	  
	   ESANN '99 (Hrsg.),  
	  
	  In: Proceedings,   
	  
	  
	  
	  
	  
	  IEEE. S. 387-392
	
  
      
        
      
 
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