Modeling suggests that virion production cycles within individual cells is key to understanding acute hepatitis B virus infection kinetics

Atesmachew Hailegiorgis, Yuji Ishida, Nicholson T. Collier, Michio Imamura, Zhenzhen Shi, Vladimir Reinharz, Masataka Tsuge, Danny Barash, Nobuhiko Hiraga, Hiroshi Yokomichi, Chise Tateno, Jonathan Ozik, Susan L. Uprichard, Kazuaki Chayama, Harel Dahari. Modeling suggests that virion production cycles within individual cells is key to understanding acute hepatitis B virus infection kinetics. PLoS Computational Biology, 19(8), 2023. [doi]

@article{HailegiorgisICI23,
  title = {Modeling suggests that virion production cycles within individual cells is key to understanding acute hepatitis B virus infection kinetics},
  author = {Atesmachew Hailegiorgis and Yuji Ishida and Nicholson T. Collier and Michio Imamura and Zhenzhen Shi and Vladimir Reinharz and Masataka Tsuge and Danny Barash and Nobuhiko Hiraga and Hiroshi Yokomichi and Chise Tateno and Jonathan Ozik and Susan L. Uprichard and Kazuaki Chayama and Harel Dahari},
  year = {2023},
  doi = {10.1371/journal.pcbi.1011309},
  url = {https://doi.org/10.1371/journal.pcbi.1011309},
  researchr = {https://researchr.org/publication/HailegiorgisICI23},
  cites = {0},
  citedby = {0},
  journal = {PLoS Computational Biology},
  volume = {19},
  number = {8},
}