FISMED / PEOPLE
Allegra Conti
Tenure-track Researcher · University of Rome Tor Vergata
BACKGROUND
Biography
Allegra Conti is a tenure-track researcher in medical physics at the University of Rome Tor Vergata and Head of the TheraFUS Laboratory. Her research investigates focused ultrasound for blood–brain barrier opening, drug delivery and neuromodulation. She combines experiments in biological models, magnetic resonance imaging and numerical simulations to characterise ultrasound exposure, acoustic fields and transport across the blood–brain barrier.
She earned a master's degree in physics at Sapienza University of Rome and a PhD at Gabriele d'Annunzio University. During a Eurotalents postdoctoral fellowship at CEA Paris-Saclay, she studied ultrasound-assisted delivery of theranostic agents for glioblastoma. Her subsequent work has extended these methods to nanomaterials, targeted delivery and neural stimulation.
RESEARCH & EXPERTISE
Research interests
- Focused ultrasound
- Blood–brain barrier transport
- Acoustic exposure modelling
- Nanomaterials
- MRI
RESEARCH OUTPUT
Selected publications
- A new in silico model to precisely design focused ultrasound brain therapies.Medical physics · 2026
- Ex vivo localization of wireless implantable microdevice using high-resolution 3D imaging techniques.Frontiers in bioengineering and biotechnology · 2026
- Ultrasound-Assisted multimodal neuromodulation via nanosystems.Journal of nanobiotechnology · 2026
- Therapeutic ultrasound for the treatment of demyelinating diseases.Progress in neurobiology · 2026
- Magnetite nanodiscs as vortex-enhanced MRI contrast agents: a novel approach in medical imaging.Nanoscale advances · 2026
LABORATORIES & RESEARCH
Related research
Explore related research
Connections indicate shared research topics, not authorship or project participation.
Focused ultrasound · Magnetic resonance imaging
Related laboratories
Related projects
Related publications
- Ultrasound-Assisted multimodal neuromodulation via nanosystems
- A new in silico model to precisely design focused ultrasound brain therapies
- Magnetite nanodiscs as vortex-enhanced MRI contrast agents: a novel approach in medical imaging
- Therapeutic ultrasound for the treatment of demyelinating diseases
- Ex vivo localization of wireless implantable microdevice using high-resolution 3D imaging techniques
- Magnetic Resonance Methods for Focused Ultrasound-Induced Blood-Brain Barrier Opening
- Exosomes as Advanced Nanocarriers: Overcoming the Blood-Brain Barrier for Targeted Therapeutic Delivery in Neurodegenerative Diseases.
EDUCATION & MENTORING