Spiking and saturating dendrites differentially expand single neuron computation capacity

Romain Cazé, Mark D. Humphries, Boris S. Gutkin. Spiking and saturating dendrites differentially expand single neuron computation capacity. In Peter L. Bartlett, Fernando C. N. Pereira, Christopher J. C. Burges, Léon Bottou, Kilian Q. Weinberger, editors, Advances in Neural Information Processing Systems 25: 26th Annual Conference on Neural Information Processing Systems 2012. Proceedings of a meeting held December 3-6, 2012, Lake Tahoe, Nevada, United States. pages 1079-1087, 2012. [doi]

@inproceedings{CazeHG12,
  title = {Spiking and saturating dendrites differentially expand single neuron computation capacity},
  author = {Romain Cazé and Mark D. Humphries and Boris S. Gutkin},
  year = {2012},
  url = {http://books.nips.cc/papers/files/nips25/NIPS2012_0519.pdf},
  researchr = {https://researchr.org/publication/CazeHG12},
  cites = {0},
  citedby = {0},
  pages = {1079-1087},
  booktitle = {Advances in Neural Information Processing Systems 25: 26th Annual Conference on Neural Information Processing Systems 2012. Proceedings of a meeting held December 3-6, 2012, Lake Tahoe, Nevada, United States},
  editor = {Peter L. Bartlett and Fernando C. N. Pereira and Christopher J. C. Burges and Léon Bottou and Kilian Q. Weinberger},
}