CNL-T

|Articles| |Refereed Conference Proceedings|

I. Articles


  1. [19] Tatyana O. Sharpee and Jonathan D. Victor, "Contextual modulation of V1 receptive fields depends on their spatial symmetry", Journal of Computational Neuroscience, in press .

  2. [18] Craig A. Atencio, Tatyana O. Sharpee, and Christoph E. Schreiner, "Cooperative nonlinearities in auditory cortical neurons", Neuron 58(6): 829-831 (2008).

  3. [17] Tatyana O. Sharpee, Kenneth D. Miller, and Michael P. Stryker, "On the importance of the static nonlinearity in estimating spatiotemporal neural filters with natural stimuli", Journal of Neurophysiology 99(5): 2496-2509 (2008).

  4. [16] C.W. Clifford, M.A. Webster, G.B. Stanley, A.A. Stocker, T.O. Sharpee, and O. Schwartz, "Visual adaptation: neural, psychological and computational aspects, Vision Research, 47(25): 3125-3131 (2007).

  5. [15] T. Sharpee, "Comparison of information and variance optimization strategies for charactezing neural feature selectivity", Statistics in Medicine 26, pp. 4009-4031 (2007).

  6. [14] T. Sharpee and W. Bialek, "Neural decision boundaries for maximal information transmission", PLoS ONE 2(7): e646 (2007). [arXiv: q-bio/0703046]

  7. [13] T. Sharpee, H. Sugihara, A. Kurgansky, S. Rebrik, M.P. Stryker, and K.D. Miller, "Adaptive filtering enhances information transmission in visual cortex", Nature 439, pp. 936-942 (2006).
    [arXiv: q-bio/0611037] (paper together with supplementary information, single spaced)

  8. [12] J. D. Victor, F. Mechler, M. Repucci, Keith Purpura, T. Sharpee, "Responses of V1 neurons to two-dimensional Hermite Functions". Journal of Neurophysiology 95, pp. 379-400, (2006).

  9. [11] Tatyana Sharpee, Nicole C. Rust, and William Bialek, "Analyzing neural responses to natural signals: Maximally informative dimensions", Neural Computation, 16 (2), pp. 223-250 2004. [arXiv: physics/0212110]

  10. [10] T. Sharpee , M.I. Dykman, P.M. Platzman, "Tunneling decay in a magnetic field", Phys. Rev. A 65 , 032122 (2002), [arXiv: cond-mat/0106566]

  11. [9] T. Sharpee , M.I. Dykman, P.M. Platzman, "Tunneling from a correlated two-dimensional electron system transverse to a magnetic field", Phys. Rev. B 64, 245309 (2001). [arXiv: cond-mat/0103151]

  12. [8] M.I. Dykman, T. Sharpee , P.M. Platzman,"Enhancement of tunneling from a correlated 2D electron system by a many-electron Mössbauer-type recoil in a magnetic field",
    Phys. Rev. Lett. 86, pp. 2408-2411 (2001). [arXiv: cond-mat/0006492]

  13. [7] T. Barabash-Sharpee*, M.I. Dykman, P.M. Platzman, "Tunneling transverse to magnetic field, and its occurence in correlated 2D electron systems",, Phys. Rev. Lett. 84 , pp. 2227-2230 (2000). [arXiv: cond-mat/9907244]

  14. [6] T. Barabash*, M.I. Dykman, P.M. Platzman, and V.N. Smelyanskiy, "Ripplon-induced tunneling transverse to the magnetic field", Phys. Rev. B 58, pp. R10214-10217 (1998).

  15. [5] M.A. Ivanov, B.A. Greenberg, and T.O. Barabash*, "Description of the behaviour of a dislocation ensemble with allowance for dislocation multiplication reproduction", Phys. Met. Metallogr. 86, 3, pp. 240-249 (1998) [Fizika Metalov i Metalovedenie 86, 3, pp.24-38 (1998)].

  16. [4] B.A. Greenberg, M.A. Ivanov, T.O. Barabash*, and A.G. Blokhin, "Comparative analysis of stress jumps in metals and intermetallic compounds: I. Description of two-stage straining", Phys. Met. Metallogr. 81, 4, pp. 374-380 (1996).

  17. [3] B.A. Greenberg, M.A. Ivanov, T.O. Barabash*, and A.G. Blokhin, "Comparative analysis of stress jumps in metals and intermetallic compounds: II. Stress Macrojumps", Phys. Met. Metallogr. 81, 4, pp. 381-386 (1996).

  18. [2] T.O. Barabash* and Eidelman S.D., "Necessary and sufficient conditions on boundary regime that guarantee stabilization of solutions of a model third order equation", Dopov. Nats. Akad. Nauk Ukraini, 10, pp. 5-7 (1995). (in Russian)

  19. [1] T. Barabash*, ``Why does an aspen leaf tremble?", Quantum 1, pp.16-18, (1992) (in Russian).


II. Refereed Conference Proceedings


  1. T. Sharpee, ``Comparison of objective functions for estimating linear-nonlinear models", in Advances in Neural Information Processing Systems 20, edited by J.C. Platt, D. Koller, Y. Singer, and S. Roweis (MIT Press, Cambridge, MA ), pp. 1305-1312 (2008).

  2. T. Sharpee , H. Sugihara, A.V. Kurgansky, S. Rebrik, M.P. Stryker, and K.D. Miller, ``Probing feature selectivity of neurons in primary visual cortex with natural stimuli", in Fluctuations and Noise in Biological, Biophysical and Biomedical Systems II, edited by D. Abbott, S.M. Bezrukov, A. Der, and A. Sánchez, Proceedings of SPIE vol. 5467, pp. 212-222 (2004).

  3. Tatyana Sharpee, Nicole C. Rust, and William Bialek, "Maximally informative dimensions: Analyzing neural responses to natural signals", in Advances in Neural Information Processing Systems, edited by S. Becker, S. Thrun and K. Obermayer, pp. 261-268 (MIT Press, Cambridge 2003). [arXiv: physics/0208057]

  4. T. O. Barabash* and S.D. Eidelman, "The asymptotic behaviour of solutions of boundary value problems for linearized KdV equation", Nonlinear boundary value problems 7, pp.13-19 (1997).



* Sharpee=Barabash=Barabash-Sharpee

Last Modified: 23 April, 2008