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Center for Computational Biology
John Miller Publications
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Ogawa,H., G.I.Cummins, G.A.Jacobs,G.A. and J.P.Miller (2006)
Visualization of Ensemble Activity Patterns of Mechanosensory
Afferents in the Cricket Cercal Sensory System with Calcium Imaging.
J. Neurobiol. 66: 293-307.
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Aldworth,Z., J.P.Miller, T.Gedeon, G.I.Cummins and A.G.Dimitrov
(2005). Dejittered Spike-conditioned Stimulus Waveforms Yield
Improved Estimates of Neuronal Feature Selectivity and Spike-Timing
Precision of Sensory Interneurons. J. Neuroscience 25(22): 5323-5332.
Miller,J.P. (2005) A Rose By Any Other Code. Neuron 48: 527-529.
Huang,Y. and J.P.Miller (2004) Phased array processing for Spike
Discrimination. J. Neurophysiol 92: 1944-1957.
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Mumey,B., A. Sarkar, T.Gedeon, A.Dimitrov, and J.Miller (2004)
Finding Neural Codes using Random Projections. Neurocomputing 58: 19-25.
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Cummins,G.I., S.M. Crook, A.G.Dimitrov, T.Ganje, G.A.Jacobs and
J.P.Miller (2003) Structural and biophysical mechanisms underlying
dynamic sensitivity of primary sensory interneurons in the cricket
cercal sensory system. Neurocomputing 52: 45? 52.
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Dimitrov, A.G., T.Gedeon, B.Mumey, R.Snider, Z.Aldworth, A.E.Parker
and J.P.Miller (2003) Derivation of Natural Stimulus Feature Set
using a Data-Driven Model. ICCS 2003, P.M.A. Sloot et al., Eds.,
Springer Verlag, Berlin, pp. 337-345.
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Dimitrov,A.G., J.P.Miller, T.Gedeon, Z.Aldworth and A.E.Parker (2003)
Analysis of Neural Coding using Quantization with an information-
based distortion measure. Network: Computation in Neural Systems 14:
151-176.
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Dimitrov,A.G., J.P.Miller, Z.Aldworth and A.E.Parker (2002) Spike
pattern-based coding schemes in the cricket cercal sensory system.
Neurocomputing 44-46: 373-379.
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Penev,P.S., A.G.Dimitrov and J.P.Miller (2001) Characterization of
and Compensation for the Nonstationarity of Spike Shapes during
Physiological Recordings. Neurocomputing 38-40: 1695-1701.
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Dimitrov, A.G., J.P. Miller, Z. Aldworth and T. Gedeon (2001) Non-uniform Quantization of Neural Spike Trains through an Information Distortion Measure. Neurocomputing 38-40: 175-181.
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Dimitrov, A.G. and J.P. Miller (2001) Neural coding and decoding: Communication channels and quantization. Network: Computation in Neural Systems 12: 441-472.
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Dimitrov, A.G. and J.P. Miller (2000) Natural Timescales for Neural Encoding. Neurocomputing 32-33: 1027-1034.
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Roddey, J.C., B. Girish and J.P. Miller (2000) Assessing the performance of Neural Encoding Models in the Presence of Noise. J. Computational Neuroscience 8: 95-112.
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Miller, J.P. (1996) Brain Waves Deciphered. Nature 384: 115.
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Clague, H., Theunissen, F.E., and Miller, J.P. (1997). "Effects of Adaptation on Neural Coding by Primary Sensory Interneurons in the Cricket Cercal System." J. Neurophysiol., 77:207-220.
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Levin, J.E and Miller, J.P. (1996). "Broadband Neural Encoding in the Cricket Cercal Sensory System Enhanced by Stochastic Resonance." Nature,380:165-168.
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Theunissen, F.E. and Miller, J.P. (1995). "Temporal Encoding in Nervous Systems: A Rigorous Definition." J. Comp. Neurosci., 2:149-162.
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Landolfa, M.A. and Jacobs, G.A. (1995). "Directon Sensitivity of the Filiform Hair Population of the Cricket Cercal System." J. Comp Physiol., 177:759-766.
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Theunissen, F., Roddey J.C., Stufflebeam, S., Clague, H., and Miller J.P. (1996). "Information Theoretic Analysis of Dynamical Encoding by Four Identified Primary Sensory Interneurons in the Cricket Cercal System." J. Neurophysiol., 75:1345-1364.
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Miller, J.P., T. Roska, T. Sziranyi, K.R. Crounse, L.O. Chua and L. Nemes (1994) Deblurring of images by cellular neural networks with applications to microscopy. In CNNA Third IEEE International Workshop on Cellular Neural Networks, IEEE Press, 237-242.
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Miller, J.P. (1994) Neurons cleverer than we thought? Current Biology 4: 818-820.
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Gozani, S.N. and J.P. Miller (1994) Optimal discrimination and classification of neuronal action potential waveforms from multi-unit, multi-channel recordings using software-based linear filters. IEEE Transactions on Biomedical Engineering 41: 358-372.
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Theunissen, F.E., F.H. Eeckman and J.P. Miller (1993) A modified Hodgkin-Huxley spiking model with continuous spiking output. In Computation and Neural Systems, F. Eeckman and J. Bower eds., Kluwer Academic Publishers, Boston Ma., pp. 9-17.
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Eeckman, F.H., F.E. Theunissen and J.P. Miller (1993) NeMoSys: an approach to realistic neural simulation. In Neural Systems: Analysis and Modeling, F.H.Eeckman, ed. Kluwer Academic Publishers, Boston Ma., 121-126.
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Theunissen, F.E., F.H.Eeckman and J.P.Miller (1993). Linearization by noise and/or additional shunting current of a modified Fitz-Hugh Nagumo spiking model. In Neural Systems: Analysis and Modeling, F.Eeckman, ed., Kluwer Academic Publishers, Boston Ma., 77-91.
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Warland,D., M.A. Landolfa, J.P.Miller and W.Bialek (1992). Reading between the spikes in the cercal filiform hair receptors of the cricket. In Analysis and Modeling ofNeural Systems, F.H.Eeckman,ed.,Kluwer Academic Publishers, Boston, MA., 327-333.
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Theunissen, F.E. and Miller, J.P. (1991). "Representation of Sensory Information in the Cricket Cercal Sensory System. II. Information-Theoretic Calculation of System Accuracy and Optimal Tuning-Curve Widths of Four Primary Interneurons." J. Neurophysiol., 66:1690-1703.
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Miller, J.P., Jacobs, G.A., and Theunissen, F.E. (1991). "Representation of Sensory Information in the Cricket Cercal Sensory System. I. Response Properties of the Primary Interneurons." J. Neurophysiol., 66(5):1680-1689.
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Bodnar, D.A., J.P.Miller and G.A.Jacobs (1991) Anatomy and physiology of identified wind-sensitive local interneurons in the cricket cercal sensory system. J. Comp.
Physiol. A. 168: 553-564.
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Zhang, J. and J.P.Miller (1991) A mathematical model for resolution enhancement in layered sensory systems. Biol. Cybern. 64: 357-364.
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Miller,J.P. (1990) Computer modelling at the single-neuron level. Nature 347: 783-784.
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Miller, J.P., J.W.Tromp and R.H.W.Nevin (1990) Strategies for the analysis and modeling of current transients in neurons with complex morphology. In Neural Computation: 1990 Short Course Syllabus, Society for Neuroscience, Washington D.C., pp. 10-22.
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Miller, J.P. (1989) Cricket wind detection. In Advances in Neural Information Processing Systems, Vol. 1, ed. David S. Touretsky, Morgan Kaufman Publishers, San Mateo, CA. pp. 802-807.
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Miller, J.P. and G.A. Jacobs (1989) Neural basis of sensory processing in the cricket cercal system. In Neural Mechanisms of Behavior, eds. J. Erber, R. Menzel, H-J. Pfluger and D. Todt, Georg Thieme Verlag, Stuttgart, pp. 100-104.
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Cooper, M.S., J.P.Miller and S.E.Fraser (1989b) Electrophoresis of cytoplasmic molecules through gap junctions by externally applied electric fields. Biological Bulliten 176: 150-156.
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Cooper, M.S., J.P.Miller and S.E.Fraser (1989a) Electrophoretic repatterning of charged cytoplasmic molecules within tissues coupled by gap junctions by externally applied electric fields. Developmental Biology 132: 179-188.
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Jacobs, G.A. and J.P.Miller (1988) Analysis of synaptic integration using the laser photoinactivation technique. Experientia 44: 362-369.
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Nagy, F. and J.P.Miller (1987) Pyloric pattern generation in Panulirus interruptus is terminated by blockade of activity through the stomatogastric nerve. In Thecrustacean stomatogastric system, A.I.Selverston and M.Moulins, eds., Springer-Verlag, New York, 136-139.
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Miller, J.P. (1987) Pyloric mechanisms. In The Crustacean Stomatogastric System, A.I.Selverston and M.Moulins, eds., Springer-Verlag, New York, 109-136.
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Jacobs, G.A., Miller, J.P., and Murphey, R.K. (1986). "Integrative Mechanisms Controlling Directional Sensitivity of an Identified Sensory Interneuron." J. Neurosci., 6(8):2298-2311.
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Malinow, R. and J.P.Miller (1986) Post-synaptic hyperpolarization reversibly blocks induction of long-term potentiation. Nature 320: 529-530.
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Kater, S.B., C.S.Cohan, G.A.Jacobs, AND J.P.Miller (1986) Image Intensification of stained, functioning and growing neurons. In Optical Methods in Cell Physiology 40, pp. 31-50. John Wiley & Sons,Inc.
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Segev, I., J.W.Fleshman, J.P. Miller, and B. Bunow (1985) Modeling the electrical behavior of neurons with a network analysis program. Biol. Cyb. 53: 27-40.
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Shepherd, G.M., R.K.Brayton, A.Belanger, J.P.Miller, I.Segev, J. Rinzel and W.Rall (1985) Signal propagation along distal dendrites by means of active dendritic spines.
PNAS 82: 2192- 2195.
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Jacobs, G.A. and J.P.Miller (1985) Functional properties of individual neuronal branches isolated in situ by laser photoinactivation. Science 228: 344-346.
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Miller, J.P., Rall, W., and Rinzel, J. (1985). "Synaptic Amplification by Active Membrane in Dendritic Spines." Brain Res., 325:325-330.
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Miller, J.P. and A.I.Selverston (1985) Neural mechanisms for the production of the lobster pyloric rhythm., In Model Neural Networks and Behavior, A.I.Selverston ,Ed., Plenum,New York, pp. 37-48.
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Miller, J.P. (1985) The Miller illuminator: fluorescence stereomicroscopy applied to neurobiology. Leitz/Wild Technical Info. Bulletin 2: 4-7.
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Miller, J.P. and G.A. Jacobs (1984) Relationships between neuronal structure and function. J. Exp. Biol. 112: 129-135.
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Lev-tov, A., J.P.Miller, R.E.Burke and W.Rall (1983) Factors that control the amplitude of EPSPs in dendritic neurons. J. Neurophysiol. 50: 399-412.
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Selverston, A.I., J.P.Miller and M. Wadepuhl (1983c) Local circuits for the generation of rhythmic motor patterns. J. Physiol. Paris 78: 748-754.6.
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Selverston, A.I., J.P.Miller and M.Wadepuhl (1983b) Cooperative mechanisms for the production of rhythmic movements. In: Neural Origin of Rhythmic Movements, A.Roberts and B.Roberts, Eds., Cambridge, England, 55-88.
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Selverston, A.I., J.P.Miller and M.Wadepuhl (1983a) Neural mechanisms for the production of cyclic motor patterns. IEEE Transactions on Systems, Man and Cybernetics 13: 749-756.
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Selverston, A.I. and J.P.Miller (1982) Application of a cell inactivation technique to the study of a small neural network. Trends in Neurosci. 5: 120-123.
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Miller, J.P. and A.I.Selverston (1982b) Mechanisms underlying pattern generation in the lobster stomatogastric ganglion as determined by selective inactivation of identified neurons. IV. Network properties of the pyloric system. J. Neurophysiol. 48: 1416-1432.
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Miller, J.P. and A.I.Selverston (1982a) Mechanisms underlying pattern generation in the lobster stomatogastric ganglion as determined by selective inactivation of identified neurons. II. Oscillatory properties of pyloric neurons. J. Neurophysiol. 48: 1378-1391.
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Selverston, A.I. and J.P.Miller (1981) Mechanisms underlying pattern generation in the lobster stomatogastric ganglion. In Neurobiology of Invertebrates, J. Salanki, Ed., Pergamon, New York, 345-368.
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Selverston, A.I. and J.P.Miller (1980) Mechanisms underlying pattern generation in the lobster stomatogastric ganglion as determined by selective inactivation of identifiedneurons. I.The pyloric system. J. Neurophysiol. 44: 1102-1121.
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Miller, J.P. and A.I.Selverston (1979) Rapid killing of single neurons by irradiation of intracellularly injected dye. Science 206: 702-704.
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Glasser, S.M., J.P.Miller, A.I.Selverston and N.Xuong (1977) Computer reconstruction of invertebrate nerve cells. In Computer Analysis of Neuronal Structures, G. Moore, Ed., Plenum, New York, 21-58.
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Selverston, A.I., D.F. Russell, J.P. Miller and D. King (1976) The stomatogastric nervous system: structure and function of a small neural network. Progress in Neurobiol 7: 215-290.
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Updated: 11/16/2009 |
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