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Background
A consensus has formed that neural circuits in the brain underlie the pathogenesis of temporal lobe epilepsy (TLE). In particular, the synaptic excitation/inhibition balance (E/I balance) has been implicated in shifting towards elevated excitation during the development of TLE.
Methods
Sprague Dawley (SD) rats were intraperitoneally subjected to kainic acid (KA) to generate a model of...
GABAergic network activity has been established to be involved in numerous physiological processes and pathological conditions. Extensive studies have corroborated that GABAergic network activity regulates excitatory synaptic networks by activating presynaptic GABAB receptors (GABABRs). It is well documented that astrocytes express GABABRs and respond to GABAergic network activity. However, little...
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