REU Publications

Submitted

  1. C. Davis*, E.R. Javor*, S.I. Rebarber*, J. Rychtář, and D. Taylor (2023). A mathematical model of visceral leishmaniasis on Indian subcontinent

  2. A. M. Cruz*, R.-M. Dominguez*, B. Lee*, L. J. Camacho Aquino, H. Oh, J. Rychtář, and D. Taylor. Game-theoretic model of SARS precautions. Submitted

  3. Kenai Burton-Heckman, Rayna Maleki, Indranil Sahoo, Michael D. Broda, Hollee A. McGinnis, David M. Chan. Predictive Models for Mental Health: An Analysis of College Students and their Social Support Networks, Submitted

Accepted

  1. R. M. A. Marquez*, M. S. C. Minas*, J. V. T. Santos*, K. Yoon*, V. Campo, H. Oh, J. Rychtář, and D. Taylor. Game-theoretical model of COVID-19 vaccination. Journal of Biological Systems

Published

  1. Y.-J. Kuo*, G. Paras*, T. Tagami*, Claire Yi*, L. J. Camacho Aquino, H. Oh, J. Rychtář, and D. Taylor (2023). A compartmental model for Schistosoma japonicum transmission dynamics in the Philippines. Acta Tropica 249, 107084 DOI: 10.1016/j.actatropica.2023.107084
  2. J. A. S. Caasi*, A.L. Guerrero*, K. Yoon*, L. J. Camacho Aquino, A. Moore, H. Oh, J. Rychtář, and D. Taylor (2023). A mathematical model of invasion and control of coconut rhinoceros beetle Oryctes rhinoceros (L.) in Guam. Journal of Theoretical Biology, 570: 111525. DOI: 10.1016/j.jtbi.2023.111525
  3. I. B. Augsburger, G. K. Galanthay, J.H. Tarosky, J. Rychtář, D. Taylor (2023). Imperfect vaccine can yield multiple Nash equilibria in vaccination games. Mathematical Biosciences 356: 108967. DOI: 10.1016/j.mbs.2023.108967
  4. C.A.G. Engelhard, A.P. Hodgkins, E.E. Pearl, P. K. Spears, J. Rychtář, D. Taylor  (2023). Mathematical models of Guinea worm disease eradication: A review. UMAP 44 (1), 39–62.
  5. I. B. Augsburger, G. K. Galanthay, J.H. Tarosky, J. Rychtar, D. Taylor (2022). Voluntary vaccination may not stop monkeypox outbreak: A game-theoretic model. PLOS NTD 16(12):e0010970. DOI: 10.1371/journal.pntd.0010970
  6. Campo, Vince N., John Lawrence Palacios, Hideo Nagahashi, Hyunju Oh, Jan Rychtář, and Dewey Taylor.  (2022). A game-theoretic model of rabies in domestic dogs with multiple voluntary preventive measures."Journal of Mathematical Biology 85, no. 5 (2022): 57. DOI: 10.1007/s00285-022-01826-z
  7. Jovic Aaron S. Caasi*, Brian M. Joseph*, Heera J. Kodiyamplakkal*, Jaelene Renae U. Manibusand*, Leslie J. Camacho Aquino, Hyunju Oh, Jan Rychtar, Dewey Taylor. (2022) A game-theoretic model of voluntary yellow fever vaccination to prevent urban outbreaks. Games 2022, 13(4), 55. DOI: 10.3390/g13040055
  8. D. Hawkins, R. Kusi, S. Schwab, I. S. Chuma, J. D. Keyyu, S. Knauf, F. Paciencia, D. Zinner, J. Rychtar, D. Taylor (2022). Mathematical modelling of Treponema infection in free-ranging Olive baboons (Papio anubis) in Tanzania, Epidemics 41, 100638. DOI: 10.1016/j.epidem.2022.100638 
  9. P. Kimball, J. Levenson, A. Moore,  J. Rychtar,  D. Taylor. (2022) An ODE model of yaws elimination in Lihir Island, Papua New Guinea, PeerJ 10:e13018. DOI: 10.7717/peerj.13018
  10. Anthony Frazier, Joethi Silva, Rachel Meilak, Indranil Sahoo, David Chan, and Michael Broda (2021). "Decision Tree-Based Predictive Models for Academic Achievement Using College Students' Support Networks." Journal of Data Science, 21(2021), no. 3, 557-577, DOI: 10.6339/21-JDS1033
  11. A. K. Fortunato, C.P. Glasser, J.A. Watson, Y. Lu, J. Rychtar, D. Taylor (2021). Mathematical modelling of the use of insecticide-treated nets for elimination of visceral leishmaniasis in Bihar, India. Royal Society Open Science, 8 (6), 201960. doi:10.1098/rsos.201960
  12. C.A.G. Engelhard, A.P. Hodgkins, E.E. Pearl, P. K. Spears, J. Rychtar, D. Taylor (2021). A mathematical model of guinea worm disease in chad with fish as intermediate transport hosts. Journal of Theoretical Biology, 521, 110683. doi:10.1016/j.jtbi.2021.110683