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Matvey V. Roshchin

PhD in Biology, Scientist

Laboratory of Cellular Neurobiology of Learning

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Publication list

  1. Idzhilova O.S., Roshchin M.V., Smirnova G.R., Malyshev A.Y. Central Targeting of Channelrhodopsin2 by the Motif of Potassium Channel Kv2.1 Can be Altered Due to Overexpression of the Construct. BioNanoScience. 2021. V. 11. N. 2. P. 408-416. DOI: 10.1007/s12668-021-00863-0.
  2. Ermakova Y.G., Roshchin M.V., Lanin A.A., Balaban P.M., Zheltikov A.M., Belousov V.V., Nikitin E.S. THERMOGENETICS AS A NEW METHOD TO CONTROL NEURONAL ACTIVITY. ZHURNAL VYSSHEI NERVNOI DEYATELNOSTI IMENI IP PAVLOVA. 2020. V. 70. N. 1. P. 133-140. DOI: 10.31857/S0044467720010050.
  3. Roshchin M.V., Ierusalimsky V.N., Balaban P.M., Nikitin E.S. Ca(2+)-activated KCa3.1 potassium channels contribute to the slow afterhyperpolarization in L5 neocortical pyramidal neurons. Scientific Reports. 2020. V. 10. N. 1. P. 14484. DOI: 10.1038/s41598-020-71415-x.
  4. Chesnokova E., Zuzina A., Bal N., Vinarskaya A., Roshchin M., Artyuhov A., Dashinimaev E., Aseyev N., Balaban P., Kolosov P. Experiments with Snails Add to Our Knowledge about the Role of aPKC Subfamily Kinases in Learning. International Journal Of Molecular Sciences. 2019. V. 20. N. 9. P. 2117. DOI: 10.3390/ijms20092117.
  5. Smirnova G.R., Roshchin M.V., Vinarskaya A.Kh., Kolotova D.Y., Simonova N.A., Balaban P.M., Malyshev A.Y. Use of Anchoring Motifs to Support the Central and Peripheral Locations of Opsins in Optogenetics. Neuroscience and Behavioral Physiology. 2019. V. 49. N. 9. P. 1089-1091. DOI: 10.1007/s11055-019-00843-8.
  6. Roshchin M.V., Ermakova Y.G., Lanin A.A., Chebotarev A.S., Kelmanson I.V., Balaban P.M., Zheltikov A.M., Belousov V.V., Nikitin E.S. Thermogenetic stimulation of single neocortical pyramidal neurons transfected with TRPV1-L channels. Neuroscience Letters. 2018. V. 687. P. 153-157. DOI: 10.1016/j.neulet.2018.09.038.
  7. Roshchin M.V., Ierusalimsky N.V., Matlashov M.V., Balaban P.M., Belousov V.V., Kemenes G., Staras K., Nikitin E.S. A BK channel–mediated feedback pathway links single-synapse activity with action potential sharpening in repetitive firing. Science Advances. 2018. V. 4. N. 7. DOI: 10.1126/SCIADV.AAT1357.

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