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Center for Computational Biology
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Montana State University
Bozeman, MT  59717

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> Center for Computational Biology

John Miller Publications


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.
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.
Mumey,B., A. Sarkar, T.Gedeon, A.Dimitrov, and J.Miller (2004) Finding Neural Codes using Random Projections. Neurocomputing 58: 19-25.
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.
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.
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.
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.
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.
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.
Dimitrov, A.G. and J.P. Miller (2001) Neural coding and decoding: Communication channels and quantization. Network: Computation in Neural Systems 12: 441-472.
Dimitrov, A.G. and J.P. Miller (2000) Natural Timescales for Neural Encoding. Neurocomputing 32-33: 1027-1034.
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.
Miller, J.P. (1996) Brain Waves Deciphered. Nature 384: 115.
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.
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.
Theunissen, F.E. and Miller, J.P. (1995). "Temporal Encoding in Nervous Systems: A Rigorous Definition." J. Comp. Neurosci., 2:149-162.
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.
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.
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.
Miller, J.P. (1994) Neurons cleverer than we thought? Current Biology 4: 818-820.
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.
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.
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.
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.
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.
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.
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.
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.
Zhang, J. and J.P.Miller (1991)  A mathematical model for resolution enhancement in layered sensory systems. Biol. Cybern. 64: 357-364.
Miller,J.P. (1990) Computer modelling at the single-neuron level. Nature 347: 783-784.
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.
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.
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.
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.
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.
Jacobs, G.A. and J.P.Miller (1988) Analysis of synaptic integration using the laser photoinactivation technique. Experientia 44: 362-369.
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.
Miller, J.P. (1987)  Pyloric mechanisms. In The Crustacean Stomatogastric System, A.I.Selverston and M.Moulins, eds., Springer-Verlag, New York, 109-136.
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.
Malinow, R. and J.P.Miller (1986)  Post-synaptic hyperpolarization reversibly blocks induction of long-term potentiation. Nature 320: 529-530.
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.
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.
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.
Jacobs, G.A. and J.P.Miller (1985)  Functional properties of individual neuronal branches isolated in situ by laser photoinactivation. Science 228: 344-346.  
Miller, J.P., Rall, W., and Rinzel, J. (1985). "Synaptic Amplification by Active Membrane in Dendritic Spines." Brain Res., 325:325-330.
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.
Miller, J.P. (1985) The Miller illuminator: fluorescence stereomicroscopy applied to neurobiology.  Leitz/Wild Technical  Info. Bulletin 2: 4-7.
Miller, J.P. and G.A. Jacobs (1984)  Relationships between neuronal structure and function.  J. Exp. Biol. 112: 129-135.
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.
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.  
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.
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.
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.
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.
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.
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.
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.
Miller, J.P. and A.I.Selverston (1979) Rapid killing of single neurons by irradiation of intracellularly injected dye. Science 206: 702-704.
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.
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.
View Text-only Version Text-only Updated: 11/16/2009
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