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Maida Ranjbar
Maida Ranjbar
Medical Physics Resident
Verified email at health.ucsd.edu
Title
Cited by
Cited by
Year
Mild hyperthermia as a localized radiosensitizer for deep-seated tumors: Investigation in an orthotopic prostate cancer model in mice
J Cohen, A Anvari, S Samanta, Y Poirier, S Soman, A Alexander, ...
The British Journal of Radiology 92 (1095), 20180759, 2019
162019
A novel deformable lung phantom with programably variable external and internal correlation
M Ranjbar, P Sabouri, C Repetto, A Sawant
Medical physics 46 (5), 1995-2005, 2019
102019
Development and prospective in‐patient proof‐of‐concept validation of a surface photogrammetry+ CT‐based volumetric motion model for lung radiotherapy
M Ranjbar, P Sabouri, S Mossahebi, D Leiser, M Foote, J Zhang, G Lasio, ...
Medical physics 46 (12), 5407-5420, 2019
72019
Validation of a CT-based motion model with in-situ fluoroscopy for lung surface deformation estimation
M Ranjbar, P Sabouri, S Mossahebi, A Sawant, P Mohindra, G Lasio, ...
Physics in Medicine & Biology 66 (4), 045035, 2021
62021
An externally and internally deformable lung motion phantom with programmable, variable external-internal correlation
M Ranjbar, P Sabouri, C Repetto, A Sawant
Medical physics 45 (6), E661-E661, 2018
32018
A novel method using surface monitoring to capture breathing-induced cycle-to-cycle variations with 4DCT
P Sabouri, M Foote, M Ranjbar, M Tajdini, S Mossahebi, S Joshi, ...
59th Annual Meeting of The American Association of Physicists in Medicine …, 2017
32017
Evaluation of the Gain in Using Higher Order Components of the Thoraco-Abdominal Surface to Estimate Volumetric Tidal Flow
P Sabouri, M Ranjbar, U Langner, A Sawant, K Langen, S Mossahebi
Medical physics 45 (6), E364-E364, 2018
22018
Simulating the breathing of lung cancer patients to estimate tumor motion and deformation at the time of radiation treatment
M Ranjbar
University of Maryland, Baltimore County, 2021
12021
Systematic Analysis of Sensitivity of Respiratory-Correlated 4DCT Images to External Respiratory Surrogate Signal
M Ranjbar, P Sabouri, A Sawant
Medical physics 45 (6), E363-E363, 2018
12018
Manipulating the K-Space for Reduction of Respiratory Induced Motion Artifacts
M Ranjbar
12016
Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
P Sabouri, J Molitoris, M Ranjbar, J Moreau, CB Simone II, P Mohindra, ...
Advances in Radiation Oncology 9 (3), 101392, 2024
2024
How Linear Elastic Material Properties Affect Lung Tumor Motion and Deformation: A Finite Element Analysis
N Ray, M Ranjbar, P Sabouri, LDT Topoleski
International Journal of Radiation Oncology, Biology, Physics 117 (2), e710, 2023
2023
Benchmark of 4DCT Derived Motion Models with a Biomechanical Lung Model for Tumor Position Estimation
P Sabouri, M Ranjbar, S Mossahebi, A Sawant, P Mohindra, G Lasio, ...
MEDICAL PHYSICS 48 (6), 2021
2021
Biomechanical Simulation of Lung Motion for Tumor Position Estimation During Radiation Therapy
M Ranjbar, P Sabouri, S Mossahebi, A Sawant, P Mohindra, G Lasio, ...
MEDICAL PHYSICS 48 (6), 2021
2021
Deformable lung model apparatus
A Sawant, M Ranjbar, P Sabouri, C Repetto
US Patent 10,898,157, 2021
2021
In-Situ Validation of a Surrogate-based Lung Motion Model for the Long-term Capture of Cycle-To-Cycle Variations with 4DCT
M Ranjbar, P Sabouri, S Mossahebi, A Sawant, P Mohindra, G Lasio, ...
International Journal of Radiation Oncology, Biology, Physics 108 (3), S170, 2020
2020
Evaluation of Proton Dose Accuracy Improvements with Dual-Energy CT
S Mossahebi, P Sabouri, M Ranjbar, J Strauss, M O’Neil, JC Polf
International Journal of Radiation Oncology, Biology, Physics 108 (3), S77, 2020
2020
Using In-Situ KV Images to Update a CT-Based Volumetric Lung Motion Model
P Sabouri, M Ranjbar, S Mossahebi, A Sawant, P Mohindra, G Lasio, ...
MEDICAL PHYSICS 47 (6), E361-E361, 2020
2020
Measuring lung motion for better lung cancer treatment
M Ranjbar, P Sabouri, C Repetto, A Sawant
2019
Development and In-Patient Validation of Inter-Fraction Fidelity of a Surface Photogrammetry plus CT-Based Volumetric Motion Model for Lung Radiotherapy
M Ranjbar, P Sabouri, S Mossahebi, D Leiser, G Lasio, J Hung, A Sawant, ...
MEDICAL PHYSICS 46 (6), E568-E568, 2019
2019
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