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Results: 46
Number of items: 46
  • Titulaer, M. N. G., & Ghijsen, W. E. J. M. (1995). Opposite changes in GABA-A receptor function in the CA1-3 area and fascia dentata of kindled rat hippocampus. Journal of neurochemistry, 64, 2615-2621.
  • Open Access
    Verhage, M., Hens, J. J. H., de Graan, P. N. E., Boomsma, F., Wiegant, V. M., Lopes da Silva, F. H., Gispen, W. H., & Ghijsen, W. E. J. M. (1995). Ba2+ replaces Ca2+/calmodulin in the activation of protein phosphates and in exocytosis of all major transmitters. European Journal of Pharmacology. Molecular Pharmacology Section, 291, 387-398. https://doi.org/10.1016/0922-4106(95)90081-0
  • Titulaer, M. N. G. (1994). GABA-A receptor binding and function in the hippocampal model of kindling epileptogenesis in the rat. [Thesis, fully internal, Universiteit van Amsterdam]. Copy 2000.
  • Ghijsen, W. E. J. M., & Verhage, M. (1994). Differential regulation of presynaptic transmitter release: the role of calcium and calmodulin. In Proc. 3rd Europ. Symposium on Calcium Binding Proteins (pp. 45). Proc. Symposium Committee.
  • Open Access
    Verhage, M., Ghijsen, W. E. J. M., & Lopes da Silva, F. H. (1994). Presynaptic plasticity: the regulation of Ca2+ -dependent transmitter release. Progress in Neurobiology, 42, 539-574. https://doi.org/10.1016/0301-0082(94)90050-7
  • Ghijsen, W. E. J. M., Besselen, E., Verhage, M., Melchers, B. P. C., Pennartz, C. M. A., & Lopes da Silva, F. H. (1987). Cellular mechanisms of synaptic plasticity: perspectives of studying the role of calcium. Progress in clinical and biological research.
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