Neurosurgery
P.O., Box 208082
New Haven, CT 06520-8082
Tel: 203.785.2805
Fax: 203.785.6916
neurosurgery@yale.edu
Telfeian, A.E., Federoff, H, Leone, P, During, M.J. and Williamson, A. 2000. Overexpression of GluR6 in rat hippocampus produces seizures and spontaneous non-synaptic bursting in vitro. Neurobiol. of Disease. 7:362-374.
Patrylo, P.R., Spencer, D.D, van den Pol, A., and Williamson, A. 1999. NPY inhibits glutamateric excitation in the epileptic human hippocampus. J Neurophysiol 82:478-83.
Williamson, A. and Patrylo, P. Regulation of excitability in the epileptic human hippocampus. 1999. The Neuroscientist 5:362-370.
Telfeian, A. Spencer, D.D. and Williamson, A. 1999. Neuronal hyperexcitability does not correlate with electrocorticographic responsiveness in epileptogenic human tissue. J. Neurosurg. 90: 939-945.
Williamson, A., Patrylo, P.R. and Spencer, D.D. 1999. Decrease in inhibition in dentate granule cells from patients with medial temporal lobe epilepsy, Annals of Neurology 45:92-99.
de Lanerolle NC, Williamson A, Meredith C, Kim JH, Tabuteau H, Spencer DD, Brines ML. 1997. Dynorphin and the kappa 1 ligand [3H]U69,593 binding in the human epileptogenic hippocampus. Epilepsy Res :189-205.
Chen, W., Lee, S-H., Kato, K. Shepherd, G.M., Spencer, D.D. and Williamson, A. 1996. Long-term modification of synaptic efficacy in the human inferior and middle temporal cortex. PNAS 93:8011-8015.
Williamson, A., Patrylo, P.R. and Spencer, D.D. 1999. Decrease in inhibition in dentate granule cells from patients with medial temporal lobe epilepsy, Annals of Neurology 45:92-99.
Williamson, A. and Patrylo, P. Regulation of excitability in the epileptic human hippocampus. 1999. The Neuroscientist 5:362-370.
Patrylo, P.R., Spencer, D.D, van den Pol, A., and Williamson, A. 1999. NPY inhibits glutamateric excitation in the epileptic human hippocampus. J Neurophysiol 82:478-83.
Hellier JL, Patrylo PR, Dou P, Nett M, Rose GM, Dudek FE. 1999. Assessment of inhibition and epileptiform activity in the septal dentate gyrus of freely behaving rats during the first week after kainate treatment. J Neurosci. 19:10053-64.
Patrylo PR, Schweitzer JS, Dudek FE. 1999. Abnormal responses to perforant path stimulation in the dentate gyrus of slices from rats with kainate-induced epilepsy and mossy fiber reorganization. Epilepsy Res. 36:31-42.
Liu QS, Patrylo PR, Gao XB, van den Pol AN. 1999. Kainate acts at presynaptic receptors to increase GABA release from hypothalamic neurons. J Neurophysiol. 82:1059-62.
van den Pol AN, Gao XB, Patrylo PR, Ghosh PK, Obrietan K. 1998 Glutamate inhibits GABA excitatory activity in developing neurons. J Neurosci. 1998 18:10749-61.