Victor Matveev
Victor Matveev
Professor, Mathematical Sciences
616 Cullimore Hall (CULM)
Education
Ph.D.; State University of New York at Stony Brook; Theoretical Physics; 1996
M.S.; State University of New York at Stony Brook; Theoretical Physics; 1995
M.A.; State University of New York at Stony Brook; ; 1993
Diploma; Lomonosov Moscow State University; Physics; 1991
M.S.; State University of New York at Stony Brook; Theoretical Physics; 1995
M.A.; State University of New York at Stony Brook; ; 1993
Diploma; Lomonosov Moscow State University; Physics; 1991
Website
2025 Spring Courses
MATH 792B - PRE DOCTORAL RESEARCH
MATH 331 - INTRO PARTIAL DIFF EQ
MATH 331 - INTRO PARTIAL DIFF EQ
Past Courses
MATH 111: CALCULUS I
MATH 211: CALCULUS III A
MATH 211: CALCULUS IIIA
MATH 213: CALCULUS IIIB
MATH 227: MATHEMATICAL MODELING
MATH 331: INTRO PARTIAL DIFF EQ
MATH 331: INTRODUCTION TO PARTIAL DIFFERENTIAL EQUATIONS
MATH 332: COMPLEX VARIABLES - HONORS
MATH 332: INTRO COMPLEX VARIABLES
MATH 335: VECTOR ANALYSIS
MATH 340: APPLIED NUMERICAL METHODS
MATH 371: PHYSIOLOGY AND MEDICINE
MATH 401: UNDERGRADUATE RESEARCH SEMINAR
MATH 430: ANALYTICL & COMPUTNL NEUROSCI
MATH 613: ADV APPLIED MATH-MODELNG
MATH 614: NUMERICAL METHODS I
MATH 635: ANALYTCL COMPUTATIONAL NEURO
MATH 656: COMPLEX VARIABLES
MATH 676: ADV ORDINARY DIFFE EQ
MATH 756: COMPLEX VARIABLES II
MATH 211: CALCULUS III A
MATH 211: CALCULUS IIIA
MATH 213: CALCULUS IIIB
MATH 227: MATHEMATICAL MODELING
MATH 331: INTRO PARTIAL DIFF EQ
MATH 331: INTRODUCTION TO PARTIAL DIFFERENTIAL EQUATIONS
MATH 332: COMPLEX VARIABLES - HONORS
MATH 332: INTRO COMPLEX VARIABLES
MATH 335: VECTOR ANALYSIS
MATH 340: APPLIED NUMERICAL METHODS
MATH 371: PHYSIOLOGY AND MEDICINE
MATH 401: UNDERGRADUATE RESEARCH SEMINAR
MATH 430: ANALYTICL & COMPUTNL NEUROSCI
MATH 613: ADV APPLIED MATH-MODELNG
MATH 614: NUMERICAL METHODS I
MATH 635: ANALYTCL COMPUTATIONAL NEURO
MATH 656: COMPLEX VARIABLES
MATH 676: ADV ORDINARY DIFFE EQ
MATH 756: COMPLEX VARIABLES II
Research Interests
Mechanisms of synaptic neurotransmitter release; presynaptic calcium channels
Mathematical and computational modeling of intracellular calcium ion diffusion and buffering
Role of endogenous calcium buffers in regulating cell calcium signalling and synaptic transmission
Mechanisms of activity-dependent changes in synaptic strength, termed short-term synaptic plasticity
Impact of short-term synaptic dynamics on the activity and information-processing properties of neuronal networks.
Generalized phase-response methods for analyzing non-weakly coupled oscillator networks
Dimensional reduction of problems in neuronal network dynamics
Software
“Calcium Calculator (CalC) modeling software, release 7.10.8”
GitHub, June 2024.
“Calcium Calculator (CalC) modeling software, release 7.10.2”
October (4th Quarter/Autumn) 2022.
“Calcium Calculator (CalC) modeling software, release 7.9.7”
January (1st Quarter/Winter) 2021.
“Calcium Calculator (CalC) modeling software, release 7.9.6”
August 2019.
“Calcium Calculator (CalC) Modeling Software, release 7.9.4”
August 2018.
GitHub, June 2024.
“Calcium Calculator (CalC) modeling software, release 7.10.2”
October (4th Quarter/Autumn) 2022.
“Calcium Calculator (CalC) modeling software, release 7.9.7”
January (1st Quarter/Winter) 2021.
“Calcium Calculator (CalC) modeling software, release 7.9.6”
August 2019.
“Calcium Calculator (CalC) Modeling Software, release 7.9.4”
August 2018.
SHOW MORE
“Calcium Calculator (CalC) Modeling Software, release 7.9.3”
June 2018.
“Calcium Calculator (CalC) Modeling Software, release 7.9.1”
April (2nd Quarter/Spring) 2018.
“Calcium Calculator (CalC) Modeling Software, release 7.8.6”
May 2016.
“Calcium Calculator (CalC) Modeling Software, release 7.8.4”
January (1st Quarter/Winter) 2016.
“Calcium Calculator (CalC) Modeling Software, release 7.8.0”
August 2015.
“Calcium Calculator (CalC) Modeling Software, release 7.7.4”
March 2014.
“Calcium Calculator (CalC) Modeling Software, release 7.7”
NJIT, August 2013.
“Calcium Calculator (CalC) Modeling Software, release 7.6”
NJIT, June 2013.
“Calcium Calculator (CalC) Modeling Software, release 7.4”
NJIT, April (2nd Quarter/Spring) 2013.
“Calcium Calculator (CalC) Modeling Software, release 7.3”
NJIT, December 2012.
“Calcium Calculator (CalC) Modeling Software, release 7.2”
NJIT, September 2012.
“Calcium Calculator (CalC) Modeling Software, release 7.1”
NJIT, September 2012.
“Calcium Calculator (CalC) Modeling Software, release 7.0”
NJIT, August 2012.
“Calcium Calculator (CalC) Modeling Software, release 6.0.5”
September 2008.
“Calcium Calculator (CalC) modeling software, release 7.10.7”
GitHub, April (2nd Quarter/Spring) 2003.
June 2018.
“Calcium Calculator (CalC) Modeling Software, release 7.9.1”
April (2nd Quarter/Spring) 2018.
“Calcium Calculator (CalC) Modeling Software, release 7.8.6”
May 2016.
“Calcium Calculator (CalC) Modeling Software, release 7.8.4”
January (1st Quarter/Winter) 2016.
“Calcium Calculator (CalC) Modeling Software, release 7.8.0”
August 2015.
“Calcium Calculator (CalC) Modeling Software, release 7.7.4”
March 2014.
“Calcium Calculator (CalC) Modeling Software, release 7.7”
NJIT, August 2013.
“Calcium Calculator (CalC) Modeling Software, release 7.6”
NJIT, June 2013.
“Calcium Calculator (CalC) Modeling Software, release 7.4”
NJIT, April (2nd Quarter/Spring) 2013.
“Calcium Calculator (CalC) Modeling Software, release 7.3”
NJIT, December 2012.
“Calcium Calculator (CalC) Modeling Software, release 7.2”
NJIT, September 2012.
“Calcium Calculator (CalC) Modeling Software, release 7.1”
NJIT, September 2012.
“Calcium Calculator (CalC) Modeling Software, release 7.0”
NJIT, August 2012.
“Calcium Calculator (CalC) Modeling Software, release 6.0.5”
September 2008.
“Calcium Calculator (CalC) modeling software, release 7.10.7”
GitHub, April (2nd Quarter/Spring) 2003.
COLLAPSE
Journal Article
Victor V. Matveev. 2022. “Close agreement between deterministic vs. stochastic modeling of first-passage time to vesicle fusion.” Biophysical Journal.
Yinbo Chen, Victor Matveev. 2021. “Stationary Ca2+ nanodomains in the presence of buffers with two binding sites.” Biophysical Journal, vol. 120, no. 10, pp. 1942-1956.
Yinbo Chen, Cyrill B. Muratov, Victor V. Matveev. 2020. “Efficient approximations for stationary single-channel Ca2+ nanodomains across length scales.” Biophysical Journal, vol. 119, no. 6, pp. 1239-1254.
Victor V. Matveev. 2018. “Extension of Rapid Buffering Approximation to Ca2+ buffers with two binding sites.” Biophysical Journal, vol. 114, no. 5, pp. 1204-1215.
Nikhil R Gandasi, Peng Yin, Michela Riz, Margarita V Chibalina, Giuliana Cortese, Per-Eric Lund, Victor V. Matveev, Patrik Rorsman, Arthur Sherman, Morten G Pedersen, Sebastian Barg. 2017. “Ca2+ channel clustering with insulin-containing granules is disturbed in type 2 diabetes.” Journal of Clinical Investigation, no. May 15, 2017, pp. 12.
Yinbo Chen, Victor Matveev. 2021. “Stationary Ca2+ nanodomains in the presence of buffers with two binding sites.” Biophysical Journal, vol. 120, no. 10, pp. 1942-1956.
Yinbo Chen, Cyrill B. Muratov, Victor V. Matveev. 2020. “Efficient approximations for stationary single-channel Ca2+ nanodomains across length scales.” Biophysical Journal, vol. 119, no. 6, pp. 1239-1254.
Victor V. Matveev. 2018. “Extension of Rapid Buffering Approximation to Ca2+ buffers with two binding sites.” Biophysical Journal, vol. 114, no. 5, pp. 1204-1215.
Nikhil R Gandasi, Peng Yin, Michela Riz, Margarita V Chibalina, Giuliana Cortese, Per-Eric Lund, Victor V. Matveev, Patrik Rorsman, Arthur Sherman, Morten G Pedersen, Sebastian Barg. 2017. “Ca2+ channel clustering with insulin-containing granules is disturbed in type 2 diabetes.” Journal of Clinical Investigation, no. May 15, 2017, pp. 12.
SHOW MORE
Victor V. Matveev. 2016. “Padé approximation of a stationary single-channel calcium nanodomain.” Biophysical Journal, vol. 111, no. 9, pp. 2062-2074.
Igor Delvendahl, Lukasz Jablonski, Carolin Baade, Victor V. Matveev, Erwin Neher, Stefan Hallermann. 2015. “Reduced endogenous Ca2+ buffering speeds active zone Ca2+ signaling.” Proceedings or the National Academy of Sciences U.S.A., vol. 112, no. 23, pp. E3075–E3084.
Myongkeun Oh, Shunbing Zhao, Victor V. Matveev, Farzan Nadim. 2012. “Neuromodulatory changes in short-term synaptic dynamics may be mediated by two distinct mechanisms of presynaptic calcium entry.” Journal of Computational Neuroscience, vol. 33, no. 3, pp. 573-585.
Myongkeun Oh, Victor V. Matveev. 2011. “Non-weak inhibition and phase resetting at negative values of phase in cells with fast-slow dynamics at hyperpolarized potentials.” Journal of Computational Neuroscience, vol. 31, no. 1, pp. 31-42.
Victor V. Matveev, Richard Bertram, ARthur Sherman, . 2011. “Calcium cooperativity of exocytosis as a measure of calcium channel domain overlap.” Brain Research, vol. 1398, pp. 126-38.
Alexander M Weber, Fiona K Wong, Adele R Tufford, Lyanne C Schlichter, Victor V. Matveev, Elise F Stanley. 2010. “N-type Ca2+ channels carry the largest current: implications for nanodomains and transmitter release.” Nature Neuroscience, vol. 13, pp. 1348–1350.
Victor V. Matveev, Richard Bertram, Arthur Sherman. 2009. “Ca2+ current vs. Ca2+ channel cooperativity of exocytosis.” Journal of Neuroscience, vol. 29, no. 39, pp. 12196-12209.
Myongkeun Oh, Victor V. Matveev. 2009. “Loss of phase-locking in non-weakly coupled inhibitory networks of type-I model neurons.” Journal of Computational Neuroscince, vol. 26, no. 2, pp. 303-320.
Igor Delvendahl, Lukasz Jablonski, Carolin Baade, Victor V. Matveev, Erwin Neher, Stefan Hallermann. 2015. “Reduced endogenous Ca2+ buffering speeds active zone Ca2+ signaling.” Proceedings or the National Academy of Sciences U.S.A., vol. 112, no. 23, pp. E3075–E3084.
Myongkeun Oh, Shunbing Zhao, Victor V. Matveev, Farzan Nadim. 2012. “Neuromodulatory changes in short-term synaptic dynamics may be mediated by two distinct mechanisms of presynaptic calcium entry.” Journal of Computational Neuroscience, vol. 33, no. 3, pp. 573-585.
Myongkeun Oh, Victor V. Matveev. 2011. “Non-weak inhibition and phase resetting at negative values of phase in cells with fast-slow dynamics at hyperpolarized potentials.” Journal of Computational Neuroscience, vol. 31, no. 1, pp. 31-42.
Victor V. Matveev, Richard Bertram, ARthur Sherman, . 2011. “Calcium cooperativity of exocytosis as a measure of calcium channel domain overlap.” Brain Research, vol. 1398, pp. 126-38.
Alexander M Weber, Fiona K Wong, Adele R Tufford, Lyanne C Schlichter, Victor V. Matveev, Elise F Stanley. 2010. “N-type Ca2+ channels carry the largest current: implications for nanodomains and transmitter release.” Nature Neuroscience, vol. 13, pp. 1348–1350.
Victor V. Matveev, Richard Bertram, Arthur Sherman. 2009. “Ca2+ current vs. Ca2+ channel cooperativity of exocytosis.” Journal of Neuroscience, vol. 29, no. 39, pp. 12196-12209.
Myongkeun Oh, Victor V. Matveev. 2009. “Loss of phase-locking in non-weakly coupled inhibitory networks of type-I model neurons.” Journal of Computational Neuroscince, vol. 26, no. 2, pp. 303-320.
COLLAPSE
Chapter
Victor V. Matveev. 2014. “Biophysical Models of Calcium-Dependent Exocytosis.” In Dieter Jaeger, Ranu Jung (Eds.), pp. 1-17. New York, : Encyclopedia of Computational Neuroscience, Springer-Verlag, 2014.
Diana Martinez, Victor V. Matveev, Farzan Nadim. 2014. “Short-Term Synaptic Plasticity in Central Pattern Generators.” In Jaeger, Dieter; Jung, Ranu (Eds.), pp. 1-14. New York, : Springer, 2014.
Victor V. Matveev. 2014. “Biophysical Models of Synaptic Facilitation.” In Dieter Jaeger, Ranu Jung (Eds.), pp. 1-6. New York, : Encyclopedia of Computational Neuroscience, Springer-Verlag, 2014.
Diana Martinez, Victor V. Matveev, Farzan Nadim. 2014. “Short-Term Synaptic Plasticity in Central Pattern Generators.” In Jaeger, Dieter; Jung, Ranu (Eds.), pp. 1-14. New York, : Springer, 2014.
Victor V. Matveev. 2014. “Biophysical Models of Synaptic Facilitation.” In Dieter Jaeger, Ranu Jung (Eds.), pp. 1-6. New York, : Encyclopedia of Computational Neuroscience, Springer-Verlag, 2014.