AbstractInjection of the seaweed toxin kainic acid (KA) in rats induces a severe status epilepticus initiating complex neuropathological changes in limbic brain areas and subsequently spontaneous recurrent seizures. Although neuropathological changes have been intensively investigated in the hippocampus proper and the dentate gyrus in various seizure models, much less is known about changes in parahippocampal areas. We now established telemetric EEG recordings combined with continuous video monitoring to characterize the development of spontaneous seizures after KA-induced status epilepticus, and investigated associated neurodegenerative changes, astrocyte and microglia proliferation in the subiculum and other parahippocampal brain areas. T...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
AbstractInjection of the seaweed toxin kainic acid (KA) in rats induces a severe status epilepticus ...
The aim of epilepsy models is to investigate disease ontogenesis and therapeutic interventions in a ...
Intrahippocampal injection of kainic acid (KA) in rats evokes a status epilepticus (SE) and leads to...
Intrahippocampal injection of kainic acid (KA) in rats evokes a status epilepticus (SE) and leads to...
Animal models reproducing the characteristics of human epilepsy are essential for the elucidation of...
(TLE), a common neurologic disorder characterized by spontaneous recurrent seizures (SRSs). However...
Kainic acid-induced status epilepticus (KA-SE) in mature rats results in the development of spontane...
AbstractTemporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly f...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
The development of spontaneous limbic seizures was investigated in a rat model in which electrical t...
AbstractThe subiculum is the major output area of the hippocampus. It is closely interconnected with...
AbstractTemporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly f...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
AbstractInjection of the seaweed toxin kainic acid (KA) in rats induces a severe status epilepticus ...
The aim of epilepsy models is to investigate disease ontogenesis and therapeutic interventions in a ...
Intrahippocampal injection of kainic acid (KA) in rats evokes a status epilepticus (SE) and leads to...
Intrahippocampal injection of kainic acid (KA) in rats evokes a status epilepticus (SE) and leads to...
Animal models reproducing the characteristics of human epilepsy are essential for the elucidation of...
(TLE), a common neurologic disorder characterized by spontaneous recurrent seizures (SRSs). However...
Kainic acid-induced status epilepticus (KA-SE) in mature rats results in the development of spontane...
AbstractTemporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly f...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
The development of spontaneous limbic seizures was investigated in a rat model in which electrical t...
AbstractThe subiculum is the major output area of the hippocampus. It is closely interconnected with...
AbstractTemporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly f...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...
Temporal lobe epilepsy alters adult neurogenesis. Existing experimental evidence is mainly from chro...