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Your search keyword '"Oswalt, Denise"' showing total 24 results

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24 results on '"Oswalt, Denise"'

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1. Beta activity in human anterior cingulate cortex mediates reward biases

2. Deep Brain Stimulation for Depression Informed by Intracranial Recordings.

3. Automated optimization of deep brain stimulation parameters for modulating neuroimaging-based targets.

4. Imaging versus electrographic connectivity in human mood-related fronto-temporal networks

5. Stereo-EEG-guided network modulation for psychiatric disorders: Surgical considerations

6. Decoding Depression Severity From Intracranial Neural Activity

7. Prefrontal Network Engagement by Deep Brain Stimulation in Limbic Hubs

8. Stereo-Electroencephalography–Guided Network Neuromodulation for Psychiatric Disorders: The Neurophysiology Monitoring Unit

9. Aperiodic neural activity is a biomarker for depression severity.

10. Raising the stakes for cortical visual prostheses

11. Prefrontal network engagement by deep brain stimulation in limbic hubs.

12. 208 DBS-Induced Improvement in Cognitive Control is Mediated by Theta Oscillations in Human Intracranial Recordings

13. Intracranial electrophysiology helps define pathological networks and optimize stimulation approaches in deep brain stimulation for treatment-resistant depression

14. Prefrontal network engagement by deep brain stimulation in limbic hubs

16. Deep Brain Stimulation for Depression Informed by Intracranial Recordings

17. Automated optimization of deep brain stimulation parameters for modulating neuroimaging-based targets

18. Decoding Depression Severity from Intracranial Neural Activity

19. Stereotactic EEG Helps Define Networks and Optimize Stimulation Parameter Selection in DBS for Treatment-Resistant Depression (TRD).

20. P372. Dual-Target Deep Brain Stimulation Drives Differential Engagement of Networks Underlying Treatment-Resistant Depression

23. Aperiodic (1/f) neural activity robustly tracks symptom severity changes in treatment-resistant depression.

24. Stable, chronic in-vivo recordings from a fully wireless subdural-contained 65,536-electrode brain-computer interface device.

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