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== Publications ==
 
== Publications ==
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Tomko M., Beňušková Ľ., Jedlička P., (2021). A new reduced-morphology model for CA1 pyramidal cells and its validation and comparison with other models using HippoUnit. Scientific Reports [online]. 2021. Vol. 11, no. 1, p. 7615. DOI 10.1038/s41598-021-87002-7. Available from: [https://doi.org/10.1038/s41598-021-87002-7]
  
 
Tomko M., Jedlička P., Beňušková L. (2020) Meta-STDP Rule Stabilizes Synaptic Weights Under in Vivo-like Ongoing Spontaneous Activity in a Computational Model of CA1 Pyramidal Cell. In: Farkaš I., Masulli P., Wermter S. (eds) Artificial Neural Networks and Machine Learning – ICANN 2020. ICANN 2020. Lecture Notes in Computer Science, vol 12397. Springer, Cham.  [https://doi.org/10.1007/978-3-030-61616-8_54]
 
Tomko M., Jedlička P., Beňušková L. (2020) Meta-STDP Rule Stabilizes Synaptic Weights Under in Vivo-like Ongoing Spontaneous Activity in a Computational Model of CA1 Pyramidal Cell. In: Farkaš I., Masulli P., Wermter S. (eds) Artificial Neural Networks and Machine Learning – ICANN 2020. ICANN 2020. Lecture Notes in Computer Science, vol 12397. Springer, Cham.  [https://doi.org/10.1007/978-3-030-61616-8_54]

Verzia zo dňa a času 11:54, 23. máj 2021

Matúš Tomko

Photo of Matúš Tomko
Name: Mgr. Matúš Tomko
doctoral student
Email: matus.tomko@fmph.uniba.sk
Office: M-113
Address: Mgr. Matúš Tomko
Department of Applied Informatics
FMFI UK
Mlynská dolina
824 48 Bratislava
Slovakia
Web: ResearchGate profil

Teaching

Winter semester:

Letný semester:

Research

  • Computation neuroscience
  • Synaptic plasticity
  • CA1 pyramidal neurons

Publications

Tomko M., Beňušková Ľ., Jedlička P., (2021). A new reduced-morphology model for CA1 pyramidal cells and its validation and comparison with other models using HippoUnit. Scientific Reports [online]. 2021. Vol. 11, no. 1, p. 7615. DOI 10.1038/s41598-021-87002-7. Available from: [1]

Tomko M., Jedlička P., Beňušková L. (2020) Meta-STDP Rule Stabilizes Synaptic Weights Under in Vivo-like Ongoing Spontaneous Activity in a Computational Model of CA1 Pyramidal Cell. In: Farkaš I., Masulli P., Wermter S. (eds) Artificial Neural Networks and Machine Learning – ICANN 2020. ICANN 2020. Lecture Notes in Computer Science, vol 12397. Springer, Cham. [2]

Tomko M., Beňušková Ľ., Jedlička P. (2019) Computational model of CA1 pyramidal cell with meta-STDP stabilizes under ongoing spontaneous activity as in vivo. In Kognícia a umelý život XIX, Vydavateľstvo Univerzity Komenského, Bratislava. 118-123. 2019. [3]

Farkaš, I., Takáč, M., Gergeľ, P., Tomko, M.: Kognícia a umelý život 2019. Univerzita Komenského v Bratislave, Bratislava. 2019 [4]

Tomko M. (2018) Computational modeling of heterosynaptic plasticity in the CA1 using STDP-BCM rule. Poster presented at the Giersch Summer School on the Logistics of Neuronal Function / 3rd Giersch International Symposium, 28.8-7.9. 2018, FIAS in Frankfurt, Germany [5]


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