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1. Graph theoretical measures of fast ripple networks improve the accuracy of post-operative seizure outcome prediction.

2. Fast ripples reflect increased excitability that primes epileptiform spikes.

4. An approach for reliably identifying high‐frequency oscillations and reducing false‐positive detections

5. Graph theoretical measures of fast ripples support the epileptic network hypothesis

6. A consensus statement on detection of hippocampal sharp wave ripples and differentiation from other fast oscillations

8. Spatial and temporal profile of high-frequency oscillations in posttraumatic epileptogenesis.

9. Accuracy of high-frequency oscillations recorded intraoperatively for classification of epileptogenic regions

10. Stimulation of the right entorhinal white matter enhances visual memory encoding in humans.

11. Ripples Have Distinct Spectral Properties and Phase-Amplitude Coupling With Slow Waves, but Indistinct Unit Firing, in Human Epileptogenic Hippocampus

13. Ripple oscillations in the left temporal neocortex are associated with impaired verbal episodic memory encoding

15. Localizing epileptogenic regions using high-frequency oscillations and machine learning.

16. Functional control of electrophysiological network architecture using direct neurostimulation in humans

17. Low-voltage fast seizures in humans begin with increased interneuron firing.

18. A method for the topographical identification and quantification of high frequency oscillations in intracranial electroencephalography recordings.

19. Utilization of independent component analysis for accurate pathological ripple detection in intracranial EEG recordings recorded extra- and intra-operatively.

20. Bimodal coupling of ripples and slower oscillations during sleep in patients with focal epilepsy.

21. Simulated resections and RNS placement can optimize post-operative seizure outcomes when guided by fast ripple networks.

23. AR2, a novel automatic muscle artifact reduction software method for ictal EEG interpretation: Validation and comparison of performance with commercially available software.

24. Ripples on spikes show increased phase-amplitude coupling in mesial temporal lobe epilepsy seizure-onset zones.

25. Pathological and Physiological High-frequency Oscillations on Electroencephalography in Patients with Epilepsy.

26. To plan efficacious epilepsy surgery.

27. Intra- and Inter-Frequency Brain Network Structure in Health and Schizophrenia

28. Visually validated semi-automatic high-frequency oscillation detection aides the delineation of epileptogenic regions during intra-operative electrocorticography

29. Pathological neurons generate ripples at the UP‐DOWN transition disrupting information transfer.

37. Temporal lobe interictal spikes disrupt encoding and retrieval of verbal memory: A subregion analysis

39. International Post Stroke Epilepsy Research Consortium (IPSERC): A consortium to accelerate discoveries in preventing epileptogenesis after stroke

40. Graph Theoretical Measures of Fast Ripples Support the Epileptic Network Hypothesis.

41. Ictal onset patterns of local field potentials, high frequency oscillations, and unit activity in human mesial temporal lobe epilepsy.

47. Ripples Have Distinct Spectral Properties and Phase-Amplitude Coupling With Slow Waves, but Indistinct Unit Firing, in Human Epileptogenic Hippocampus

50. Ripple oscillations in the left temporal neocortex are associated with impaired verbal episodic memory encoding

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