Even brief epileptic seizures can lead to activity-dependent structural remodeling of neural circuitry. Animal models show that the functional plasticity of synapses and changes in the intrinsic excitability of neurons can be crucial for epileptogenesis. However, the exact mechanisms underlying epileptogenesis remain unclear. We induced epileptiform activity in rat hippocampal slices for 15 min using a 4-aminopyridine (4-AP) in vitro model and observed hippocampal hyperexcitability for at least 1 h. We tested several possible mechanisms of this hyperexcitability, including changes in intrinsic membrane properties of neurons and presynaptic and postsynaptic alterations. Neither input resistance nor other essential biophysical properties of h...
Calcium-activated potassium conductances regulate neuronal excitability, but their role in epileptog...
Epileptiform discharges recorded in the 4-aminopyridine (4-AP) in vitro epilepsy model are mediated ...
Paired pulse facilitation (PPF) is one of the most fundamental forms of synaptic plasticity, and is ...
Epilepsy is characterized by the hyperexcitability of individual neurons and hyper synchronization o...
Kindling is now popular as a model of epilepsy as well as of neuronal plasticity. In this review we ...
Long-term potentiation and depression of glutamatergic synaptic responses are accompanied by an incr...
rat, spontaneous seizure The hippocampal commissural system has recently been found to participate i...
Brain insults like stroke, trauma or infections often lead to blood-brain barrier-dysfunction (BBBd)...
Excessive excitation is considered one of the key mechanisms underlying epileptic seizures. We inves...
Experiments were carried out on hippocampal slices from control rats and those pretreated with a uni...
It is widely accepted that swelling of brain cells is one of the physiological responses associated ...
Hippocampal neuron firing and local field potentials in the in vitro 4-aminopyridine epilepsy model....
Epilepsy is a syndrome characterized by recurring attacks of sudden, excessive and synchronous disch...
In this study, we used in vitro electrophysiology along with immunohistochemistry and molecular tech...
The mechanisms underlying the generation and spread of seizure activity have remained elusive despit...
Calcium-activated potassium conductances regulate neuronal excitability, but their role in epileptog...
Epileptiform discharges recorded in the 4-aminopyridine (4-AP) in vitro epilepsy model are mediated ...
Paired pulse facilitation (PPF) is one of the most fundamental forms of synaptic plasticity, and is ...
Epilepsy is characterized by the hyperexcitability of individual neurons and hyper synchronization o...
Kindling is now popular as a model of epilepsy as well as of neuronal plasticity. In this review we ...
Long-term potentiation and depression of glutamatergic synaptic responses are accompanied by an incr...
rat, spontaneous seizure The hippocampal commissural system has recently been found to participate i...
Brain insults like stroke, trauma or infections often lead to blood-brain barrier-dysfunction (BBBd)...
Excessive excitation is considered one of the key mechanisms underlying epileptic seizures. We inves...
Experiments were carried out on hippocampal slices from control rats and those pretreated with a uni...
It is widely accepted that swelling of brain cells is one of the physiological responses associated ...
Hippocampal neuron firing and local field potentials in the in vitro 4-aminopyridine epilepsy model....
Epilepsy is a syndrome characterized by recurring attacks of sudden, excessive and synchronous disch...
In this study, we used in vitro electrophysiology along with immunohistochemistry and molecular tech...
The mechanisms underlying the generation and spread of seizure activity have remained elusive despit...
Calcium-activated potassium conductances regulate neuronal excitability, but their role in epileptog...
Epileptiform discharges recorded in the 4-aminopyridine (4-AP) in vitro epilepsy model are mediated ...
Paired pulse facilitation (PPF) is one of the most fundamental forms of synaptic plasticity, and is ...