Pruning deep neural networks generates a sparse, bio-inspired nonlinear controller for insect flight

Olivia Zahn, Jorge Bustamante, Callin Switzer, Thomas L. Daniel, J. Nathan Kutz. Pruning deep neural networks generates a sparse, bio-inspired nonlinear controller for insect flight. PLoS Computational Biology, 18(9):1010512, September 2022. [doi]

@article{ZahnBSDK22,
  title = {Pruning deep neural networks generates a sparse, bio-inspired nonlinear controller for insect flight},
  author = {Olivia Zahn and Jorge Bustamante and Callin Switzer and Thomas L. Daniel and J. Nathan Kutz},
  year = {2022},
  month = {September},
  doi = {10.1371/journal.pcbi.1010512},
  url = {https://doi.org/10.1371/journal.pcbi.1010512},
  researchr = {https://researchr.org/publication/ZahnBSDK22},
  cites = {0},
  citedby = {0},
  journal = {PLoS Computational Biology},
  volume = {18},
  number = {9},
  pages = {1010512},
}