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xTMS: A Pulse Generator for Exploring Transcranial Magnetic Stimulation Therapies
Kawsar Ali1, Karen Wendt1,2, Majid Memarian Sorkhabi1
1Department o fEngineering Science, University of Oxford, UK.
Summary
A novel cascaded H-bridge pulse generator offers flexible transcranial magnetic stimulation (TMS) pulse control. Its advanced model predictive control outperforms traditional methods, enabling new research in TMS therapies.
Area of Science:
- Biomedical Engineering
- Neuroscience
- Electrical Engineering
Background:
- Transcranial magnetic stimulation (TMS) requires precise control over stimulus pulse parameters.
- Existing TMS systems have limitations in flexibility and emulation capabilities.
- Advanced pulse generation is crucial for exploring novel TMS therapies.
Purpose of the Study:
- To introduce a highly flexible cascaded H-bridge based pulse generator for TMS.
- To demonstrate the system's capability to emulate existing commercial and research TMS devices.
- To present a superior control algorithm for TMS pulse generation.
Main Methods:
- Development of a cascaded H-bridge topology for pulse generation.
- Implementation of an offline model predictive control (MPC) algorithm for pulse sequencing.
- Design and construction of a laboratory prototype capable of high voltage and current output.
Main Results:
- The system provides complete flexibility in pulse shape, duration, direction, and repetition rate.
- The MPC algorithm demonstrated superior performance over conventional carrier-based pulse width modulation.
- The prototype successfully delivered pulses up to 1.5 kV and 6 kA.
Conclusions:
- The developed TMS pulse generator offers unprecedented flexibility and control.
- The MPC-based approach enhances TMS pulse generation precision and performance.
- The prototype serves as a valuable research tool for advancing TMS therapies.

