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Journal Abstract Search


69 related items for PubMed ID: 8369397

  • 1. Mixture estimation and the neurophysiological quantal hypothesis.
    Smith BR.
    Biometrics; 1993 Jun; 49(2):643-51. PubMed ID: 8369397
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  • 3. Estimation of parameters for a model of transmitter release at synapses.
    Robinson J.
    Biometrics; 1976 Mar; 32(1):61-8. PubMed ID: 179628
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  • 4. Role of NSF in neurotransmitter release: a peptide microinjection study at the crayfish neuromuscular junction.
    Parnas I, Rashkovan G, O'Connor V, El-Far O, Betz H, Parnas H.
    J Neurophysiol; 2006 Sep; 96(3):1053-60. PubMed ID: 16760338
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  • 7. Changes in the statistics of transmitter release during facilitation.
    Zucker RS.
    J Physiol; 1973 Mar; 229(3):787-810. PubMed ID: 4348351
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  • 8. Novel approach to a quantitative treatment of the quantal transmitter release at the frog neuromuscular junction.
    Melkonian DS, Kostopoulos GK.
    Neurosci Lett; 1996 May 03; 209(1):13-6. PubMed ID: 8734898
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  • 9. Quantal transmitter release onto different patterns of receptor distributions at somatic neuromuscular junctions.
    Bennett MR, Farnell L, Gibson WG.
    J Theor Biol; 1996 Nov 21; 183(2):231-6. PubMed ID: 8977880
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  • 10. Reduced neuromuscular quantal content with normal synaptic release time course and depression in canine motor neuron disease.
    Rich MM, Wang X, Cope TC, Pinter MJ.
    J Neurophysiol; 2002 Dec 21; 88(6):3305-14. PubMed ID: 12466448
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  • 11. Maximum likelihood estimation of non-uniform transmitter release probabilities at the crayfish neuromuscular junction.
    Smith BR, Wojtowicz JM, Atwood HL.
    J Theor Biol; 1991 Jun 21; 150(4):457-72. PubMed ID: 1682530
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  • 13. Self-modeling structure of evoked postsynaptic potentials.
    Viele K, Lancaster M, Cooper RL.
    Synapse; 2006 Jul 21; 60(1):32-44. PubMed ID: 16575851
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  • 14. The influence of skeletal muscle incubation medium on fatigue of neuromuscular preparation and on transmitter release at neuromuscular junctions in the frog.
    Drabkina TM, Matyushkin DP, Radzjukevich VK, Romanovsky DYu.
    Gen Physiol Biophys; 1995 Apr 21; 14(2):153-70. PubMed ID: 8846883
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  • 15. Probabilistic secretion of quanta from nerve terminals at synaptic sites on muscle cells: non-uniformity, autoinhibition and the binomial hypothesis.
    Bennett MR, Robinson J.
    Proc R Soc Lond B Biol Sci; 1990 Apr 23; 239(1296):329-58. PubMed ID: 1972795
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  • 16. Activity-dependent recruitment of silent synapses.
    Wojtowicz JM, Smith BR, Atwood HL.
    Ann N Y Acad Sci; 1991 Apr 23; 627():169-79. PubMed ID: 1652913
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  • 17. Facilitation at single synapses probed with optical quantal analysis.
    Oertner TG, Sabatini BL, Nimchinsky EA, Svoboda K.
    Nat Neurosci; 2002 Jul 23; 5(7):657-64. PubMed ID: 12055631
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  • 18. Estimating transmitter release rates and quantal amplitudes in central synapses from postsynaptic current fluctuations.
    Stepanyuk AR, Boychuk YA, Tsugorka TN, Drebot YI, Lushnikova IV, Pivneva TA, Belan PV.
    Fiziol Zh (1994); 2004 Jul 23; 50(4):22-32. PubMed ID: 15460024
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  • 19. Maximum-penalized-likelihood estimation for independent and Markov-dependent mixture models.
    Leroux BG, Puterman ML.
    Biometrics; 1992 Jun 23; 48(2):545-58. PubMed ID: 1637977
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  • 20. Synaptic repression at crayfish neuromuscular junctions. II. Evidence for calcium involvement.
    Gupta A, Smith E, Vélez SJ.
    J Neurobiol; 1993 Aug 23; 24(8):999-1007. PubMed ID: 8409973
    [Abstract] [Full Text] [Related]


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