All Relations between Epilepsy, Temporal Lobe and isocortex

Publication Sentence Publish Date Extraction Date Species
J W Lee, F Andermann, F Dubeau, A Bernasconi, D MacDonald, A Evans, D C Reuten. Morphometric analysis of the temporal lobe in temporal lobe epilepsy. Epilepsia. vol 39. issue 7. 1998-07-27. PMID:9670901. using high-resolution magnetic resonance imaging (mri), we examined the temporal neocortex and the underlying white matter in patients with unilateral temporal lobe epilepsy (tle) and in control subjects. 1998-07-27 2023-08-12 human
J DeFelipe, P Marco, R G Sola, P Sánchez-Blázquez, J Garzó. Local changes in GTP-binding protein immunoreactivities in human epileptogenic neocortex. Experimental brain research. vol 119. issue 2. 1998-05-22. PMID:9535564. the relative levels of guanine nucleotide-binding protein alpha-subunits gi1alpha, gi2alpha, gi3alpha, go(alpha), gs(alpha), and gx/z(alpha) were measured in neocortex removed at surgery from patients with intractable temporal lobe epilepsy. 1998-05-22 2023-08-12 human
C T Dickson, A Alons. Muscarinic induction of synchronous population activity in the entorhinal cortex. The Journal of neuroscience : the official journal of the Society for Neuroscience. vol 17. issue 17. 1997-09-23. PMID:9254685. given the differential projection pattern of ec layers v and ii toward the neocortex and hippocampus, respectively, their robust epileptogenic character may be of major importance in temporal lobe epilepsy. 1997-09-23 2023-08-12 Not clear
P Marco, J DeFelip. Altered synaptic circuitry in the human temporal neocortex removed from epileptic patients. Experimental brain research. vol 114. issue 1. 1997-06-23. PMID:9125446. quantitative electron microscopic methods were used to study possible alterations in presumptive excitatory and inhibitory synaptic circuits in human neocortex removed from patients with intractable temporal lobe epilepsy. 1997-06-23 2023-08-12 human
O A Petroff, L A Pleban, D D Spence. Symbiosis between in vivo and in vitro NMR spectroscopy: the creatine, N-acetylaspartate, glutamate, and GABA content of the epileptic human brain. Magnetic resonance imaging. vol 13. issue 8. 1996-09-20. PMID:8750337. the n-acetylaspartate/creatine mole ratio was lower in anterior temporal neocortex with mesial (0.66) than neocortical (0.80) temporal lobe epilepsy. 1996-09-20 2023-08-12 human
D Mattia, A Olivier, M Avol. Seizure-like discharges recorded in human dysplastic neocortex maintained in vitro. Neurology. vol 45. issue 7. 1995-08-24. PMID:7617202. by contrast, neocortical slices obtained from patients suffering from temporal lobe epilepsy (which is characterized by ammon's horn sclerosis but relatively normal neocortex) did not generate any epileptiform activity during 4-aminopyridine application. 1995-08-24 2023-08-12 human
M Hajek, H G Wieser, N Khan, A Antonini, P R Schrott, P Maguire, H F Beer, K L Leender. Preoperative and postoperative glucose consumption in mesiobasal and lateral temporal lobe epilepsy. Neurology. vol 44. issue 11. 1994-12-20. PMID:7969971. the main postoperative metabolic findings were as follows: (1) marked increase of regional cerebral metabolic rate of glucose (rcmrglu), both in the ipsilateral and, significantly, in the contralateral hemisphere in patients with mesiobasal limbic tle and mesial gliosis-the changes of brain metabolism were characteristic for patients with the syndrome of "mesial temporal lobe epilepsy" (mtle); (2) decrease of rcmrglu values in the contralateral mesiobasal temporal lobe (tl) cortex in all patient groups--the reduction of rcmrglu in homologous brain structures contralateral to the operated side provides evidence for stronger interhemispheric connections between both mesial tl structures than were hitherto supposed; and (3) a trend toward a normalization of rcmrglu values in the ipsilateral temporal neocortex 12 months after surgery in patients with mtle syndrome. 1994-12-20 2023-08-12 Not clear
I Ferrer, B Oliver, A Russi, R Casas, R River. Parvalbumin and calbindin-D28k immunocytochemistry in human neocortical epileptic foci. Journal of the neurological sciences. vol 123. issue 1-2. 1994-09-19. PMID:8064311. (4) lack of consistent morphologic abnormalities in the neocortex of patients with temporal lobe epilepsy, and in patients with cryptogenetic frontal lobe epilepsy, suggests that electrically abnormal neocortical foci in these cases are probably epiphenomena. 1994-09-19 2023-08-12 human
F Angelatou, O Pagonopoulou, T Maraziotis, A Olivier, J G Villemeure, M Avoli, G Kostopoulo. Upregulation of A1 adenosine receptors in human temporal lobe epilepsy: a quantitative autoradiographic study. Neuroscience letters. vol 163. issue 1. 1994-03-02. PMID:8295723. a significant increase of a1 adenosine receptor binding (48% increase of mean) was detected in human neocortex obtained from patients suffering from temporal lobe epilepsy as compared to control neocortex from non-epileptic patients. 1994-03-02 2023-08-12 human
J Engel, L L Roch. Interictal behavioral disturbances: a search for molecular substrates. Epilepsy research. Supplement. vol 9. 1993-03-15. PMID:1337448. patients with temporal lobe epilepsy demonstrate enhanced mu receptor binding in the neocortex of the epileptogenic temporal lobe on pet. 1993-03-15 2023-08-11 Not clear
H I Kim, A Olivier, M Jones-Gotman, D Primrose, F Anderman. Corticoamygdalectomy in memory-impaired patients. Stereotactic and functional neurosurgery. vol 58. issue 1-4. 1992-12-07. PMID:1439334. sixty-seven patients who underwent resection of the amygdala and temporal neocortex for intractable temporal lobe epilepsy were analyzed. 1992-12-07 2023-08-11 Not clear
T Grisar, D Guillaume, A V Delgado-Escuet. Contribution of Na+,K(+)-ATPase to focal epilepsy: a brief review. Epilepsy research. vol 12. issue 2. 1992-11-23. PMID:1327744. similar results were observed in man when using specimens of anterolateral temporal neocortex obtained during temporal lobectomies in patients with intractable temporal lobe epilepsy, compared with postmortem human specimens or control brain tissues. 1992-11-23 2023-08-11 human
J Laschet, S Trottier, T Grisar, V Levie. Polyamine metabolism in epileptic cortex. Epilepsy research. vol 12. issue 2. 1992-11-23. PMID:1396540. polyamine (tissue) concentrations have been studied in hippocampus and temporal neocortex from patients with temporal lobe epilepsy. 1992-11-23 2023-08-11 human
M Keogan, D McMackin, S Peng, J Phillips, T Burke, S Murphy, M Farrell, H Staunto. Temporal neocorticectomy in management of intractable epilepsy: long-term outcome and predictive factors. Epilepsia. vol 33. issue 5. 1992-10-28. PMID:1396428. we report the results of a long-term follow-up study of 50 patients who underwent removal of temporal neocortex with preservation of deeper limbic structures as surgical therapy for intractable temporal lobe epilepsy. 1992-10-28 2023-08-11 Not clear
H S Mayberg, B Sadzot, C C Meltzer, R S Fisher, R P Lesser, R F Dannals, J R Lever, A A Wilson, H T Ravert, H N Wagne. Quantification of mu and non-mu opiate receptors in temporal lobe epilepsy using positron emission tomography. Annals of neurology. vol 30. issue 1. 1991-11-07. PMID:1656846. we previously characterized the in vivo binding of 11c-carfentanil, a potent and selective mu opiate receptor agonist, and described increases in 11c-carfentanil binding in the temporal neocortex of patients with unilateral temporal lobe epilepsy. 1991-11-07 2023-08-11 Not clear
T Grisa. Glial and neuronal Na+-K+ pump in epilepsy. Annals of neurology. vol 16 Suppl. 1984-12-26. PMID:6095737. similar results were observed in 13 specimens of anterolateral temporal neocortex obtained during temporal lobectomies in patients with intractable temporal lobe epilepsy, compared with postmortem human specimen or control brain tissues. 1984-12-26 2023-08-12 human