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balicea cell-models [31 articles]

Recent papers added to balicea library classified by the tag cell-models. You can also see everyone's cell-models.
  • Cell fates in C. elegans: In medias ras.
    Cell, Vol. 63 (1990), pp. 1113-1116.
    by IS Greenwald, JR Broach
  • Computational methods for transcriptional regulation.
    Curr Opin Genet Dev, Vol. 15, No. 2. (April 2005), pp. 214-221.
    by ED Siggia
  • Tissue-driven hypothesis of genomic evolution and sequence-expression correlations.
    Proc Natl Acad Sci U S A (14 February 2007)
    by Xun Gu, Zhixi Su
  • Cell and environment interactions in tumor microregions: the multicell spheroid model.
    Science (New York, N.Y.), Vol. 240, No. 4849. (8 April 1988), pp. 177-184.
  • A gene network approach to modeling early neurogenesis in Drosophila.
    Pacific Symposium on Biocomputing. Pacific Symposium on Biocomputing (1998), pp. 30-41.
  • Sharing and reusing gene expression profiling data in neuroscience.
    Neuroinformatics, Vol. 5, No. 3. (2007), pp. 161-175.
    by X Wan, P Pavlidis
  • The use of logic relationships to model colon cancer gene expression networks with mRNA microarray data.
    Journal of biomedical informatics, Vol. 41, No. 4. (August 2008), pp. 530-543.
    by X Ruan, J Wang, H Li, RE Perozzi, EF Perozzi
  • Prediction of the position of an animal based on populations of grid and place cells: a comparative simulation study.
    Journal of integrative neuroscience, Vol. 6, No. 3. (September 2007), pp. 433-446.
  • Hippocampal remapping and grid realignment in entorhinal cortex
    Nature (25 February 2007)
    by Marianne Fyhn, Torkel Hafting, Alessandro Treves, May-Britt Moser, Edvard I Moser
  • A model of grid cells based on a twisted torus topology.
    International journal of neural systems, Vol. 17, No. 4. (August 2007), pp. 231-240.
  • A model of grid cells involving extra hippocampal path integration, and the hippocampal loop.
    Journal of integrative neuroscience, Vol. 6, No. 3. (September 2007), pp. 447-476.
  • Conserved and Differential Effects of Dietary Energy Intake on the Hippocampal Transcriptomes of Females and Males
    PLoS ONE, Vol. 3, No. 6. (11 June 2008), e2398.
    by Bronwen Martin, Michele Pearson, Randall Brenneman, Erin Golden, Alex Keselman, Titilola Iyun, Olga D Carlson, Josephine M Egan, Kevin G Becker, William Wood, Vinayakumar Prabhu, Rafael de Cabo, Stuart Maudsley, Mark P Mattson
  • Compartmentalized dendritic plasticity and input feature storage in neurons
    Nature, Vol. 452, No. 7186., pp. 436-441.
    by Attila Losonczy, Judit K Makara, Jeffrey C Magee
  • Polychronization: Computation with Spikes
    Neural Computation, Vol. 18, No. 2. (February 2006), pp. 245-282.
    by Eugene M Izhikevich
  • Molecular responses to acidosis of central chemosensitive neurons in brain
    Cellular Signalling, Vol. 17, No. 7. (July 2005), pp. 799-808.
    by Noriaki Shimokawa, Ivan Dikic, Shuei Sugama, Noriyuki Koibuchi
  • Simple model of spiking neurons
    Neural Networks, IEEE Transactions on, Vol. 14, No. 6. (2003), pp. 1569-1572.
  • Physiological gain leads to high ISI variability in a simple model of a cortical regular spiking cell.
    Neural Comput, Vol. 9, No. 5. (1 July 1997), pp. 971-983.
    by TW Troyer, KD Miller
  • A matter of timing: microRNA-controlled temporal identities in worms and flies
    Genes Dev., Vol. 22, No. 12. (15 June 2008), pp. 1572-1576.
    by Manfred Frasch
  • Magnetic Resonance Spectroscopy Identifies Neural Progenitor Cells in the Live Human Brain
    Science, Vol. 318, No. 5852. (9 November 2007), pp. 980-985.
    by Louis N Manganas, Xueying Zhang, Yao Li, Raphael D Hazel, David S Smith, Mark E Wagshul, Fritz Henn, Helene Benveniste, Petar M Djuric, Grigori Enikolopov, Mirjana Maletic-Savatic
  • Transition Cells and Neural Fields for Navigation and Planning
    Mechanisms, Symbols, and Models Underlying Cognition (2005), pp. 346-355.
    by Nicolas Cuperlier, Mathias Quoy, Philippe Laroque, Philippe Gaussier
  • The effects of running and of inhibiting adult neurogenesis on learning and memory in rats
    European Journal of Neuroscience, Vol. 27, No. 6. (March 2008), pp. 1494-1502.
  • Communicating Neuronal Ensembles between Neuromorphic Chips
    (1998), pp. 229-259.
    by KA Boahen
    edited by TS Lande
  • Can a biologist fix a radio?--Or, what I learned while studying apoptosis.
    Cancer Cell, Vol. 2, No. 3. (September 2002), pp. 179-182.
  • The cell cycle and human neurodegenerative disease.
    Prog Cell Cycle Res, Vol. 5 (2003), pp. 31-41.
    by I Vincent, CI Pae, JL Hallows
  • Functional structure of cortical neuronal networks grown in vitro
    Physical Review E (Statistical, Nonlinear, and Soft Matter Physics), Vol. 75, No. 2. (2007)
    by Lu\is MA Bettencourt, Greg J Stephens, Michael I Ham, Guenter W Gross
  • Enhancement of cellular memory by reducing stochastic transitions
    Nature, Vol. 435, No. 7039., pp. 228-232.
    by Murat Acar, Attila Becskei, Alexander v van Oudenaarden
  • Cell, Tissue and Disease
    (30 May 2000)
    by Neville Woolf
  • Combining docking, scoring and molecular field analyses to probe influenza neuraminidase-ligand interactions.
    J Mol Graph Model, Vol. 26, No. 2. (September 2007), pp. 443-456.
    by AM Abu Hammad, FU Afifi, MO Taha
  • Reprogramming of human somatic cells to pluripotency with defined factors
    Nature (23 December 2007)
    by In-Hyun Park, Rui Zhao, Jason A West, Akiko Yabuuchi, Hongguang Huo, Tan A Ince, Paul H Lerou, William M Lensch, George Q Daley
  • Epigenetic Consequences of Nucleosome Dynamics
    Cell, Vol. 111, No. 3. (1 November 2002), pp. 281-284.
    by Kami Ahmad, Steven Henikoff
  • Relief of microRNA-mediated translational repression in human cells subjected to stress.
    Cell, Vol. 125, No. 6. (16 June 2006), pp. 1111-1124.
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