Medical Physics, AI and Neurotechnology · University of Rome Tor Vergata

fismed@uniroma2.it

FISMED / LABORATORIES

Ultrasound and Neurotechnology

Focused ultrasound, acoustic simulation and experimental biophysics connect physical stimulation with biological responses. Research develops methods for blood–brain barrier modulation, targeted delivery and neuromodulation. Imaging, cavitation monitoring and histological measurements support the modelling and control of ultrasound exposure, alongside work on magnetic nanomaterials and wireless neural interfaces.

01 / LABORATORY

Ultrasound and Neurotechnology

Focused ultrasound, acoustic simulation and experimental biophysics connect physical stimulation with biological responses. Research develops methods for blood–brain barrier modulation, targeted delivery and neuromodulation. Imaging, cavitation monitoring and histological measurements support the modelling and control of ultrasound exposure, alongside work on magnetic nanomaterials and wireless neural interfaces.

  • Focused ultrasound and acoustic modelling
  • Cavitation monitoring and predictive control
  • Barrier transport and targeted delivery
  • Neuromodulation and wireless interfaces
TheraFUS website

Focused ultrasound, acoustic simulation and experimental biophysics connect physical stimulation with biological responses. Research develops methods for blood–brain barrier modulation, targeted delivery and neuromodulation. Imaging, cavitation monitoring and histological measurements support the modelling and control of ultrasound exposure, alongside work on magnetic nanomaterials and wireless neural interfaces.