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1. Human cerebrospinal fluid monoclonal CASPR2 autoantibodies induce changes in electrophysiology, functional MRI, and behavior in rodent models

2. Multimodal electrophysiological analyses reveal that reduced synaptic excitatory neurotransmission underlies seizures in a model of NMDAR antibody-mediated encephalitis

3. The AMPA receptor antagonist perampanel suppresses epileptic activity in human focal cortical dysplasia

4. The AMPA receptor antagonist perampanel suppresses epileptic activity in human focal cortical dysplasia

7. Multimodal electrophysiological analyses reveal that reduced synaptic excitatory neurotransmission underlies seizures in a model of NMDAR antibody-mediated encephalitis

9. Abolishing spontaneous epileptiform activity in human brain tissue through AMPA receptor inhibition

10. In vitro characterisation and neurosteroid treatment of an N-Methyl-D-Aspartate receptor antibody-mediated seizure model

19. Bradykinesia is driven by cumulative beta power during continuous movement and alleviated by GABAergic modulation in Parkinson’s disease

24. Dopamine acting at D1-like, D2-like and α1-adrenergic receptors differentially modulates theta and gamma oscillatory activity in primary motor cortex

25. Phase-amplitude coupled persistent theta and gamma oscillations in rat primary motor cortex in vitro

26. Dopamine Acting At D1-Like, D2-Like And Alpha 1-Adrenergic Receptors Differentially Modulates Theta And Gamma Oscillatory Activity In Primary Motor Cortex

28. A low mortality, high morbidity Reduced Intensity Status Epilepticus (RISE) model of epilepsy and epileptogenesis in the rat

29. Human brain slices for epilepsy research:pitfalls, solutions and future challenges

30. A Low Mortality, High Morbidity Reduced Intensity Status Epilepticus (RISE) Model of Epilepsy and Epileptogenesis in the Rat

32. A multimodal perspective on the composition of cortical oscillations:frontiers in human neuroscience

33. Spike firing and IPSPs in layer V pyramidal neurons during beta oscillations in rat primary motor cortex (M1) in vitro

34. Background synaptic activity in rat entorhinal cortex shows a progressively greater dominance of inhibition over excitation from deep to superficial layers

35. Depression of glutamate and GABA release by presynaptic GABAB receptors in the entorhinal cortex in normal and chronically epileptic rats

36. Background synaptic activity in rat entorhinal cortical neurones:differential control of transmitter release by presynaptic receptors

38. Oscillatory beta activity mediates neuroplastic effects of motor cortex stimulation in humans

39. The role of GABAergic modulation in motor function related neuronal network activity

42. Dopamine D3 Receptors Inhibit Hippocampal Gamma Oscillations by Disturbing CA3 Pyramidal Cell Firing Synchrony.

43. Tonic facilitation of glutamate release by presynaptic NR2B-containing NMDA receptors is increased in the entorhinal cortex of chronically epileptic rats

50. Spike Firing and IPSPs in Layer V Pyramidal Neurons during Beta Oscillations in Rat Primary Motor Cortex (M1) In Vitro.

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