24 results on '"Kehnemouyi, Yasmine"'
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2. Proceedings of the Ninth Annual Deep Brain Stimulation Think Tank: Advances in Cutting Edge Technologies, Artificial Intelligence, Neuromodulation, Neuroethics, Pain, Interventional Psychiatry, Epilepsy, and Traumatic Brain Injury.
3. Emerging wearable technologies for multisystem monitoring and treatment of Parkinson’s disease: a narrative review
4. The Sequence Effect Worsens Over Time in Parkinson’s Disease and Responds to Open and Closed-Loop Subthalamic Nucleus Deep Brain Stimulation
5. Bradykinesia and Its Progression Are Related to Interhemispheric Beta Coherence
6. Kinematic adaptive deep brain stimulation for gait impairment and freezing of gait in Parkinson's disease
7. Long-Term Subcortical Electrophysiological Recordings Link Heightened Interhemispheric Subthalamic Beta Synchrony to Progression of Bradykinesia in Parkinson’s Disease
8. Quantitative Digitography Measures Motor Symptoms and Disease Progression in Parkinson’s Disease
9. Long-Term Subcortical Electrophysiological Recordings Link Heightened Interhemispheric Subthalamic Beta Synchrony to Progression of Bradykinesia in Parkinson’s Disease
10. The Sequence Effect Worsens over Time in Parkinson’s disease and Responds to Open and Closed-Loop Subthalamic Nucleus Deep Brain Stimulation
11. Proceedings of the Ninth Annual Deep Brain Stimulation Think Tank: Advances in Cutting Edge Technologies, Artificial Intelligence, Neuromodulation, Neuroethics, Pain, Interventional Psychiatry, Epilepsy, and Traumatic Brain Injury
12. Lack of progression of beta dynamics after long‐term subthalamic neurostimulation
13. Lack of progression of beta dynamics after long‐term subthalamic neurostimulation
14. Ramp Rate Evaluation and Configuration for Safe and Tolerable Closed-Loop Deep Brain Stimulation
15. Gait Parameters Measured from Wearable Sensors Reliably Detect Freezing of Gait in a Stepping in Place Task
16. Modulation of beta bursts in subthalamic sensorimotor circuits predicts improvement in bradykinesia
17. Perspective: Evolution of Control Variables and Policies for Closed-Loop Deep Brain Stimulation for Parkinson’s Disease Using Bidirectional Deep-Brain-Computer Interfaces
18. Demonstration of Kinematic-Based Closed-loop Deep Brain Stimulation for Mitigating Freezing of Gait in People with Parkinson’s Disease
19. A Closed-loop Deep Brain Stimulation Approach for Mitigating Burst Durations in People with Parkinson’s Disease
20. Modulation of beta bursts in subthalamic sensorimotor circuits predicts improvement in bradykinesia.
21. The digital signature of emergent tremor in Parkinson's disease.
22. Ramp Rate Evaluation and Configuration for Safe and Tolerable Closed-Loop Deep Brain Stimulation.
23. Demonstration of Kinematic-Based Closed-loop Deep Brain Stimulation for Mitigating Freezing of Gait in People with Parkinson's Disease.
24. A Closed-loop Deep Brain Stimulation Approach for Mitigating Burst Durations in People with Parkinson's Disease.
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