Area of research
Orthopedics and Sports Medicine · Radiology, Nuclear Medicine and Imaging
Research interest
Research focused on Microbubbles and Ultrasound, with related work in Mechanotransduction, Low-intensity pulsed ultrasound, Cavitation. Notable publications include 'Stimulation of bone repair with ultrasound: A review of the possible mechanic effects', 'A Bio‐Acoustic Levitational (BAL) Assembly Method for Engineering of Multilayered, 3D Brain‐Like Constructs, Using Human Embryonic Stem Cell Derived Neuro‐Progenitors', and 'Ultrasound-Targeted Microbubble Destruction (UTMD) for Localized Drug Delivery into Tumor Tissue'.
Overview of Therapeutic Ultrasound Applications and Safety Considerations: 2024 Update
A simulation study on the sensitivity of transcranial ray-tracing ultrasound modeling to skull properties
Combination of Focused Ultrasound, Immunotherapy, and Chemotherapy
Enhanced Stable Cavitation and Nonlinear Acoustic Properties of Poly(butyl cyanoacrylate) Polymeric Microbubbles after Bioconjugation
Pulsed ultrasound for bone regeneration – outcomes and hurdles in the clinical application: a systematic review
Ultrasound Molecular Imaging With BR55, a Predictive Tool of Antiangiogenic Treatment Efficacy in a Chemo-Induced Mammary Tumor Model
In vitro potentiation of doxorubicin by unseeded controlled non-inertial ultrasound cavitation
Ultrasound-Targeted Microbubble Destruction (UTMD) for Localized Drug Delivery into Tumor Tissue
Preparation and characterization of perfluorocarbon microbubbles using Shirasu Porous Glass (SPG) membranes
Ultrasound molecular imaging as a non-invasive companion diagnostic for netrin-1 interference therapy in breast cancer
A Bio‐Acoustic Levitational (BAL) Assembly Method for Engineering of Multilayered, 3D Brain‐Like Constructs, Using Human Embryonic Stem Cell Derived Neuro‐Progenitors
Stimulation of Bone Repair with Ultrasound
Stimulation of bone repair with ultrasound: A review of the possible mechanic effects