48 results on '"Timothy Denison"'
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2. The Design of Brainstem Interfaces: Characterisation of Physiological Artefacts and Implications for Closed-loop Algorithms.
3. An embedded intracranial seizure monitor for objective outcome measurements and rhythm identification.
4. MorpheusNet: Resource Efficient Sleep Stage Classifier for Embedded On-Line Systems.
5. Bioelectronic Zeitgebers: Targeted Neuromodulation to Re-Establish Circadian Rhythms.
6. MorpheusNet: Resource efficient sleep stage classifier for embedded on-line systems.
7. A Survey of Few-Shot Learning for Biomedical Time Series.
8. Relative Comparison of Non-Invasive Brain Stimulation Methods for Modulating Deep Brain Targets.
9. Computationally efficient neural network classifiers for next generation closed loop neuromodulation therapy - a case study in epilepsy.
10. Deep Generative Networks for Algorithm Development in Implantable Neural Technology.
11. Integrated human-machine interface for closed-loop stimulation using implanted and wearable devices.
12. From dawn till dusk: Time-adaptive bayesian optimization for neurostimulation.
13. Design Analysis and Circuit Topology Optimization for Programmable Magnetic Neurostimulator.
14. Comparison between the modelled response of primary motor cortex neurons to pulse-width modulated and conventional TMS stimuli.
15. Adapting the Finetech-Brindley Sacral Anterior Root Stimulator for Bioelectronic Medicine*.
16. Temporally Interfering TMS: Focal and Dynamic Stimulation Location.
17. Artefact-free recording of local field potentials with simultaneous stimulation for closed-loop Deep-Brain Stimulation.
18. DyNeuMo Mk-2: An Investigational Circadian-Locked Neuromodulator with Responsive Stimulation for Applied Chronobiology.
19. Technology Integration Methods for Bi-directional Brain-computer Interfaces and XR-based Interventions.
20. Estimation of the Motor Threshold for Near-Rectangular Stimuli Using the Hodgkin-Huxley Model.
21. Numerical Modeling of Plasticity Induced by Quadri-Pulse Stimulation.
22. Programmable Transcranial Magnetic Stimulation: A Modulation Approach for the Generation of Controllable Magnetic Stimuli.
23. A Translational Wireless Deep Brain Stimulation Monitoring System for Chronic Brain Signal Recording to Automate Neural Disorder Onset Recording.
24. Frequency and Phase Synchronization in Distributed (Implantable-Transcutaneous) Neural Interfaces.
25. Bi-directional brain interfacing instrumentation.
26. Embedding adaptive stimulation algorithms for a new implantable deep-brain stimulation research tool.
27. Embedding digital chronotherapy into medical devices - A canine case study in controlling status epilepticus through multi-scale rhythmic brain stimulation.
28. Continuous active probing and modulation of neural networks with a wireless implantable system.
29. A Chronically Implantable Neural Coprocessor for Investigating the Treatment of Neurological Disorders.
30. Guiding deep brain stimulation contact selection using local field potentials sensed by a chronically implanted device in Parkinson's disease patients.
31. Computationally efficient, configurable, causal, real-time phase detection applied to local field potential oscillations.
32. Enabling closed-loop neurostimulation research with downloadable firmware upgrades.
33. Physiological Artifacts and the Implications for Brain-Machine-Interface Design.
34. Controlling False positives on a BCI implant for Communication.
35. The spectral control Features of a bipolar ECoG BCI implant over Primary Hand motor cortex.
36. Working Memory as a control signal in a Fully implanted brain-Computer Interface.
37. Implanted brain-Computer Interface signal stability over Time.
38. Advancing neuromodulation using a dynamic control framework.
39. Emerging technology for advancing the treatment of epilepsy using a dynamic control framework.
40. Information, energy, and entropy: Design principles for adaptive, therapeutic modulation of neural circuits.
41. Radios for the brain? a practical micropower sensing and algorithm architecture for neurostimulators.
42. A 2.2μW 94nV/√Hz, Chopper-Stabilized Instrumentation Amplifier for EEG Detection in Chronic Implants.
43. An Implantable Optical Stimulation Delivery System for Actuating an Excitable Biosubstrate.
44. Live demonstration: Continuous active probing and modulation of neural networks with a wireless implantable system.
45. Bioelectronics for sustainable healthcare.
46. Demonstration: Enabling closed-loop neurostimulation with downloadable firmware upgrades.
47. An implantable 5mW/channel dual-wavelength optogenetic stimulator for therapeutic neuromodulation research.
48. An 8μW Heterodyning Chopper Amplifier for Direct Extraction of 2μVrms Neuronal Biomarkers.
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