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Karen Wendt
Karen Wendt
Engineering Science, University of Oxford; MRC Brain Network Dynamics Unit
Verified email at some.ox.ac.uk
Title
Cited by
Cited by
Year
Temporally interfering TMS: Focal and dynamic stimulation location
MM Sorkhabi, K Wendt, T Denison
2020 42nd Annual International Conference of the IEEE Engineering in …, 2020
232020
Programmable Transcranial Magnetic Stimulation: A Modulation Approach for the Generation of Controllable Magnetic Stimuli
MM Sorkhabi, M Benjaber, K Wendt, TO West, DJ Rogers, T Denison
IEEE Transactions on Biomedical Engineering 68 (6), 1847-1858, 2020
182020
Physiologically informed neuromodulation
K Wendt, T Denison, G Foster, L Krinke, A Thomson, S Wilson, AS Widge
Journal of the Neurological Sciences, 120121, 2021
162021
Comparison between the modelled response of primary motor cortex neurons to pulse-width modulated and conventional TMS stimuli
K Wendt, MM Sorkhabi, J O’Shea, H Cagnan, T Denison
2021 43rd Annual International Conference of the IEEE Engineering in …, 2021
82021
Numerical modeling of plasticity induced by quadri-pulse stimulation
MM Sorkhabi, K Wendt, MT Wilson, T Denison
IEEE Access 9, 26484-26490, 2021
72021
Paralleling insulated-gate bipolar transistors in the H-bridge structure to reduce current stress
MM Sorkhabi, K Wendt, D Rogers, T Denison
SN applied sciences 3 (4), 1-8, 2021
52021
A digital transcranial magnetic stimulator for generating arbitrary pulse-shapes and patterns
MM Sorkhabi, K Wendt, J O'Shea, T Denison
Brain Stimulation: Basic, Translational, and Clinical Research in …, 2021
32021
Design Analysis and Circuit Topology Optimization for Programmable Magnetic Neurostimulator
MM Sorkhabi, F Gingell, K Wendt, M Benjaber, K Ali, DJ Rogers, ...
2021 43rd Annual International Conference of the IEEE Engineering in …, 2021
32021
Estimation of the Motor Threshold for Near-Rectangular Stimuli Using the Hodgkin–Huxley Model
M Memarian Sorkhabi, K Wendt, MT Wilson, T Denison
Computational Intelligence and Neuroscience 2021, 2021
32021
Pulse-Width Modulation-based TMS mimics effects of conventional TMS on human primary motor cortex
K Wendt, J Oshea, T Denison
2021
Deep Brain Stimulation and the Use of biological Rhythms for Treating Status epilepticus and Cluster Seizures in a Dog with severe drug-resistant Epilepsy
S Meller, M Amora, R Toth, K Wendt, F Kajin, GA Worrell, A Valentin, ...
KLEINTIERPRAXIS 66 (9), 620-620, 2021
2021
Pulse-Width Modulation-based TMS mimics effects of conventional TMS on human primary motor cortex
MM Sorkhabi, K Wendt, J Oshea, T Denison
bioRxiv, 2021
2021
Tiefenhirnstimulation und Nutzung biologischer Rhythmen zur Behandlung von Status epilepticus und Cluster-Anfällen bei einem Hund mit schwerwiegender pharmakoresistenter Epilepsie
S Meller, M Amora, R Toth, K Wendt, F Kajin, G Worrell, A Valentin, H Volk, ...
Kleintierpraxis 66 (10), 620, 2021
2021
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