All Relations between Epilepsy, Temporal Lobe and hippocampus

Publication Sentence Publish Date Extraction Date Species
M Isokaw. Preservation of dendrites with the presence of reorganized mossy fiber collaterals in hippocampal dentate granule cells in patients with temporal lobe epilepsy. Brain research. vol 744. issue 2. 1997-04-16. PMID:9027394. preservation of dendrites with the presence of reorganized mossy fiber collaterals in hippocampal dentate granule cells in patients with temporal lobe epilepsy. 1997-04-16 2023-08-12 human
M Isokaw. Preservation of dendrites with the presence of reorganized mossy fiber collaterals in hippocampal dentate granule cells in patients with temporal lobe epilepsy. Brain research. vol 744. issue 2. 1997-04-16. PMID:9027394. dendritic morphology was studied in human hippocampal dentate granule cells (dgcs) by intracellularly-injecting biocytin in slice preparations that were obtained from temporal lobe epilepsy patients who underwent a surgical treatment for medically-intractable seizures. 1997-04-16 2023-08-12 human
H Beck, H Clusmann, T Kral, J Schramm, U Heinemann, C E Elge. Potassium currents in acutely isolated human hippocampal dentate granule cells. The Journal of physiology. vol 498 ( Pt 1). 1997-04-15. PMID:9023769. properties of voltage- and ca(2+)-dependent k+ currents were investigated in thirty-four dentate granule cells acutely isolated from the resected hippocampus of eleven patients with therapy-refractory temporal lobe epilepsy (tle). 1997-04-15 2023-08-12 human
J Enge. Introduction to temporal lobe epilepsy. Epilepsy research. vol 26. issue 1. 1997-04-14. PMID:8985696. symptomatic temporal lobe epilepsy can be further divided into mesial temporal lobe epilepsy (mtle), the condition associated with hippocampal sclerosis; lesional temporal lobe epilepsy due to specific identifiable lesions localized to areas that preferentially project to mesial temporal structures; and cryptogenic temporal lobe epilepsy, for which no etiology can be determined. 1997-04-14 2023-08-12 human
J P Leite, T L Babb, J K Pretorius, P A Kuhlman, K M Yeoman, G W Mather. Neuron loss, mossy fiber sprouting, and interictal spikes after intrahippocampal kainate in developing rats. Epilepsy research. vol 26. issue 1. 1997-04-14. PMID:8985702. this rat model reproduces many of the pathologic, behavioral, and electrophysiologic features of human mesial temporal lobe epilepsy, and supports the hypothesis that hippocampal sclerosis can be the consequence of focal injury during early postnatal development that progressively evolves into a pathologic and epileptic focus. 1997-04-14 2023-08-12 human
A K Shetty, D A Turne. Fetal hippocampal cells grafted to kainate-lesioned CA3 region of adult hippocampus suppress aberrant supragranular sprouting of host mossy fibers. Experimental neurology. vol 143. issue 2. 1997-04-07. PMID:9056386. selective lesion of the rat hippocampus using an intracerebroventricular administration of kainic acid (ka) represents an animal model for studying both lesion recovery and temporal lobe epilepsy. 1997-04-07 2023-08-12 rat
S B Colling, W D Man, A Draguhn, J G Jeffery. Dendritic shrinkage and dye-coupling between rat hippocampal CA1 pyramidal cells in the tetanus toxin model of epilepsy. Brain research. vol 741. issue 1-2. 1997-04-02. PMID:9001702. a small dose of tetanus toxin injected into the rat hippocampus produces a chronic model of temporal lobe epilepsy. 1997-04-02 2023-08-12 rat
G R Ende, K D Laxer, R C Knowlton, G B Matson, N Schuff, G Fein, M W Weine. Temporal lobe epilepsy: bilateral hippocampal metabolite changes revealed at proton MR spectroscopic imaging. Radiology. vol 202. issue 3. 1997-03-28. PMID:9051038. temporal lobe epilepsy: bilateral hippocampal metabolite changes revealed at proton mr spectroscopic imaging. 1997-03-28 2023-08-12 Not clear
G R Ende, K D Laxer, R C Knowlton, G B Matson, N Schuff, G Fein, M W Weine. Temporal lobe epilepsy: bilateral hippocampal metabolite changes revealed at proton MR spectroscopic imaging. Radiology. vol 202. issue 3. 1997-03-28. PMID:9051038. to determine which proton magnetic resonance (mr) spectroscopic imaging measures are best for lateralizing the seizure focus in patients who have temporal lobe epilepsy with and in those without hippocampal atrophy on mr images, the extent of contralateral abnormalities, and whether there is a correlation between mr spectroscopic imaging findings and surgical outcome. 1997-03-28 2023-08-12 Not clear
A Gil-Nagel, M W Risinge. Ictal semiology in hippocampal versus extrahippocampal temporal lobe epilepsy. Brain : a journal of neurology. vol 120 ( Pt 1). 1997-03-25. PMID:9055806. ictal semiology in hippocampal versus extrahippocampal temporal lobe epilepsy. 1997-03-25 2023-08-12 Not clear
I Blümcke, H Beck, B Scheffler, P R Hof, J H Morrison, H K Wolf, J Schramm, C E Elger, O D Wiestle. Altered distribution of the alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionate receptor subunit GluR2(4) and the N-methyl-D-aspartate receptor subunit NMDAR1 in the hippocampus of patients with temporal lobe epilepsy. Acta neuropathologica. vol 92. issue 6. 1997-03-18. PMID:8960315. altered distribution of the alpha-amino-3-hydroxy-5-methyl-4-isoxazole propionate receptor subunit glur2(4) and the n-methyl-d-aspartate receptor subunit nmdar1 in the hippocampus of patients with temporal lobe epilepsy. 1997-03-18 2023-08-12 human
S M Knoblach, M J Kube. Changes in thyrotropin-releasing hormone levels in hippocampal subregions induced by a model of human temporal lobe epilepsy: effect of partial and complete kindling. Neuroscience. vol 76. issue 1. 1997-03-18. PMID:8971762. changes in thyrotropin-releasing hormone levels in hippocampal subregions induced by a model of human temporal lobe epilepsy: effect of partial and complete kindling. 1997-03-18 2023-08-12 human
R S Slovite. Hippocampal pathology and pathophysiology in temporal lobe epilepsy. Neurologia (Barcelona, Spain). vol 11 Suppl 4. 1997-03-12. PMID:9019099. hippocampal pathology and pathophysiology in temporal lobe epilepsy. 1997-03-12 2023-08-12 human
S Lehéricy, D Dormont, F Semah, O Granat, M Baulac, C Marsaul. [Magnetic resonance imaging of temporal lobe epilepsy]. Journal de radiologie. vol 77. issue 11. 1997-03-11. PMID:9033867. until recently, hippocampal sclerosis (which is the most frequent cause of temporal lobe epilepsy, accounting for 50-70% of the cases) could not be identified reliably. 1997-03-11 2023-08-12 Not clear
T J O'Brien, M R Newton, M J Cook, S U Berlangieri, C Kilpatrick, K Morris, S F Berkovi. Hippocampal atrophy is not a major determinant of regional hypometabolism in temporal lobe epilepsy. Epilepsia. vol 38. issue 1. 1997-02-27. PMID:9024187. hippocampal atrophy is not a major determinant of regional hypometabolism in temporal lobe epilepsy. 1997-02-27 2023-08-12 Not clear
I Blümcke, K Behle, B Malitschek, R Kuhn, T Knöpfel, H K Wolf, O D Wiestle. Immunohistochemical distribution of metabotropic glutamate receptor subtypes mGluR1b, mGluR2/3, mGluR4a and mGluR5 in human hippocampus. Brain research. vol 736. issue 1-2. 1997-02-26. PMID:8930327. these data demonstrate differential expression of mglur variants in the human hippocampus and may provide an important basis for future studies of mglurs under various neuropathological conditions such as temporal lobe epilepsy, ischemia and neurodegenerative disorders. 1997-02-26 2023-08-12 human
W Van Paesschen, A Connelly, M D King, G D Jackson, J S Dunca. The spectrum of hippocampal sclerosis: a quantitative magnetic resonance imaging study. Annals of neurology. vol 41. issue 1. 1997-02-25. PMID:9005864. twenty-six patients with intractable temporal lobe epilepsy had normal hippocampal magnetic resonance imaging measures and as a group were significantly older at the onset of habitual epilepsy than were patients with hippocampal sclerosis. 1997-02-25 2023-08-12 human
C Watson, F Cendes, D Fuerst, F Dubeau, B Williamson, A Evans, F Anderman. Specificity of volumetric magnetic resonance imaging in detecting hippocampal sclerosis. Archives of neurology. vol 54. issue 1. 1997-02-25. PMID:9006416. magnetic resonance imaging (mri)-based volumetric measurements of the hippocampal formation are useful in detecting unilateral hippocampal sclerosis (hs) in patients with temporal lobe epilepsy. 1997-02-25 2023-08-12 Not clear
Q Yang, S Wang, A Hamberger, K G Hagli. Plasticity of granule cell-mossy fiber system following kainic acid induced seizures: an immunocytochemical study on neurofilament proteins. Neuroscience research. vol 26. issue 1. 1997-01-31. PMID:8895892. therefore we have investigated alterations of neurofilaments, major cytoskeletal components of neurons, in the rat hippocampus after the kainic acid (ka) administration, an experimental model for the temporal lobe epilepsy. 1997-01-31 2023-08-12 rat
M Isokaw. Decrement of GABAA receptor-mediated inhibitory postsynaptic currents in dentate granule cells in epileptic hippocampus. Journal of neurophysiology. vol 75. issue 5. 1997-01-16. PMID:8734589. inhibitory postsynaptic currents (ipscs) were studied in hippocampal dentate granule cells (dgcs) in the pilocarpine model and human temporal lobe epilepsy, with the use of the whole cell patch-clamp recording technique in slice preparations. 1997-01-16 2023-08-12 human