Giorgio Bonmassar
Associate Professor of Radiology
Email: giorgio.bonmassar@nmgh.harvard.edu
Further Information
A 29-month-old toddler MARTIN V1.0, a new open-source whole-body computational model
A new, open-access, whole-body computational model, called ATHENA V1.0, of a 3.5-year-old girl, is segmented into 267 tissue compartments
Thalia, a non-morphed, high-resolution numerical model of a healthy 10-month-old female. The model was constructed by segmenting 442 tissues from Magnetic Resonance Imaging data
Research Spotlight: Non-Invasive Spinal Cord Treatments with Magnetic Fields
A 29-month-old toddler MARTIN V1.0, a new open-source whole-body computational model
A new, open-access, whole-body computational model, called ATHENA V1.0, of a 3.5-year-old girl, is segmented into 267 tissue compartments
Thalia, a non-morphed, high-resolution numerical model of a healthy 10-month-old female. The model was constructed by segmenting 442 tissues from Magnetic Resonance Imaging data
Research Spotlight: Non-Invasive Spinal Cord Treatments with Magnetic Fields
Recent Publications
- Albrecht A, Ntolkeras G, Zölleia L, Sideris GA, Marturano F, Lev MH, Grant PE, Bonmassar G. Development and Validation of Thalia: A High-Resolution Pediatric Computational Model of a 10-Month-Old Infant. bioRxiv. 2026 Jul 16.
- Zaidi T, Marturano F, Sanpitak P, Ullah S, Bhusal B, Tummala A, Bonmassar G, Golestanirad L. A Novel Lead Construct to Reduce MRI-Induced RF Heating: Construction, In Vitro Validation, and In Vivo Predictions. IEEE Trans Biomed Eng. 2026 Jul 15. PP
- Jiang F, Vu J, Bhusal B, Qian Y, Hameed S, Kim D, Webster G, Bonmassar G, Golestanirad L. Cumulative Transfer Function for Assessment of MRI-Induced RF Heating Risk in Pediatric Patients Implanted with Bifurcated Leads. bioRxiv. 2026 Jul 10.
- Tummala A, Marturano F, Bonmassar G. Modeling and validation of anisotropic thin-film deposition on cylindrical substrates for predictable resistance control in MEMS fabrication. Discov Mech Eng. 2026. 5(1):74
- Tummala A, Marturano F, Bonmassar G. Modeling and Validation of Anisotropic Thin-Film Deposition on Cylindrical Substrates for Predictable Resistance Control in MEMS Fabrication. Res Sq. 2025 Dec 09.
