Pouya Sabouri
Assistant Professor
Also affiliated: University of Maryland, Baltimore (2016–2021); Baptist Hospital of Miami (2021–2022); Amirkabir University of Technology (2020–2024); Cancer Institute (WIA) (2020); Auckland University of Technology (2014); Baptist Health South Florida (2021–2022); Baltimore VA Medical Center (2020); Laboratoire de Physique Subatomique et de Cosmologie (2013); U-M Rogel Cancer Center (2021); University of Baltimore (2016); The University of Texas Southwestern Medical Center (2015–2016)
Faculty Researcher
Radiation Oncology, College of Medicine
Research Areas
Biomedical Subjects
Biography and Research Information
OverviewAI-generated summary
Pouya Sabouri's research focuses on advanced radiation therapy techniques, particularly intensity-modulated proton therapy and spatially fractionated radiation therapy. He has investigated the dosimetric evaluation and reproducibility of breath-hold plans in intensity-modulated proton therapy and the effectiveness of GRID therapy for bulky tumors. Sabouri has also contributed to consensus statements on proton therapy for spinal tumors. His work includes the design and performance evaluation of imaging systems for proton therapy monitoring, such as slit-slat cameras for prompt gamma imaging, utilizing Monte Carlo simulations.
His scholarship includes 51 publications with 197 citations and an h-index of 8. Sabouri collaborates with researchers at the University of Arkansas for Medical Sciences, including Faraz Kalantari and Forouh Kalantari, with whom he has co-authored five publications each. His recent work also touches upon biomechanical properties of biological tissues, such as the effect of loading direction on knee meniscus failure patterns.
Metrics
- h-index: 8
- Publications: 51
- Citations: 207
Selected Publications
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Novel use of peak optimized particle therapy for the delivery of three-dimensional spatially fractionated radiotherapy (2026)
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ARTIA-Cervix: a prospective trial of adaptive radiation therapy for cervical cancer (2025)
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Interstitial Brachytherapy for Soft Tissue Sarcomas: Outcomes and Patterns of Failure Patterns from a Single Institution Experience (2025)
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Grid Spatially Fractionated Radiation Therapy for Bulky Tumors: A Large Single Institution Experience (2025)
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Spatially Fractionated Radiotherapy GRID for Bulky Tumor: A Large Single Institution Experience (2024)
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Spectral CT Imaging for the Visualization of Hyaluronic Acid Based Rectal Spacers prior to Radiation Therapy (2024)
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Proton Therapy for Spinal Tumors: A Consensus Statement From the Particle Therapy Cooperative Group (2024)
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STOPPING POWER RATIO DISCREPANCIES AND DOSIMETRIC IMPACT IN CNS PROTON THERAPY: A DUAL-ENERGY CT EVALUATION (2024)
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Quantifying dosimetric differences between SECT and DECT in brain malignancy patients undergoing IMPT: Mitigating proton range uncertainties (2024)
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Comparative dosimetric analysis of dual-energy CT and single-energy CT in Pelvis IMPT patients: Assessing target coverage and organ dose accuracy (2024)
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Dosimetric benefits of breath-hold technique in intensity-modulated proton therapy: Evaluating target motion mitigation and organ dose reduction (2024)
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Dosimetric disparities between single-energy and dual-energy CT in breast cancer patients undergoing intensity modulated proton therapy (2024)
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Overview and Recommendations for Prospective Multi-institutional Spatially Fractionated Radiation Therapy Clinical Trials (2023)
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Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience (2023)
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How Linear Elastic Material Properties Affect Lung Tumor Motion and Deformation: A Finite Element Analysis (2023)
Collaboration Network
Top Collaborators
- Overview and Recommendations for Prospective Multi-institutional Spatially Fractionated Radiation Therapy Clinical Trials
- Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
- Proton Therapy for Spinal Tumors: A Consensus Statement From the Particle Therapy Cooperative Group
- Pelvis Treatment Plan Dose Comparison for Proton Therapy Using Single Energy and Dual Energy Computed Tomography Simulation Methods
- Dosimetric disparities between single-energy and dual-energy CT in breast cancer patients undergoing intensity modulated proton therapy
Showing 5 of 9 shared publications
- Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
- Pelvis Treatment Plan Dose Comparison for Proton Therapy Using Single Energy and Dual Energy Computed Tomography Simulation Methods
- Dosimetric disparities between single-energy and dual-energy CT in breast cancer patients undergoing intensity modulated proton therapy
- Dosimetric benefits of breath-hold technique in intensity-modulated proton therapy: Evaluating target motion mitigation and organ dose reduction
- Comparative dosimetric analysis of dual-energy CT and single-energy CT in Pelvis IMPT patients: Assessing target coverage and organ dose accuracy
Showing 5 of 7 shared publications
- Pelvis Treatment Plan Dose Comparison for Proton Therapy Using Single Energy and Dual Energy Computed Tomography Simulation Methods
- Dosimetric disparities between single-energy and dual-energy CT in breast cancer patients undergoing intensity modulated proton therapy
- Comparative dosimetric analysis of dual-energy CT and single-energy CT in Pelvis IMPT patients: Assessing target coverage and organ dose accuracy
- Quantifying dosimetric differences between SECT and DECT in brain malignancy patients undergoing IMPT: Mitigating proton range uncertainties
- STOPPING POWER RATIO DISCREPANCIES AND DOSIMETRIC IMPACT IN CNS PROTON THERAPY: A DUAL-ENERGY CT EVALUATION
- Pelvis Treatment Plan Dose Comparison for Proton Therapy Using Single Energy and Dual Energy Computed Tomography Simulation Methods
- Dosimetric disparities between single-energy and dual-energy CT in breast cancer patients undergoing intensity modulated proton therapy
- Comparative dosimetric analysis of dual-energy CT and single-energy CT in Pelvis IMPT patients: Assessing target coverage and organ dose accuracy
- Quantifying dosimetric differences between SECT and DECT in brain malignancy patients undergoing IMPT: Mitigating proton range uncertainties
- STOPPING POWER RATIO DISCREPANCIES AND DOSIMETRIC IMPACT IN CNS PROTON THERAPY: A DUAL-ENERGY CT EVALUATION
- Pelvis Treatment Plan Dose Comparison for Proton Therapy Using Single Energy and Dual Energy Computed Tomography Simulation Methods
- Dosimetric disparities between single-energy and dual-energy CT in breast cancer patients undergoing intensity modulated proton therapy
- Comparative dosimetric analysis of dual-energy CT and single-energy CT in Pelvis IMPT patients: Assessing target coverage and organ dose accuracy
- Quantifying dosimetric differences between SECT and DECT in brain malignancy patients undergoing IMPT: Mitigating proton range uncertainties
- Pelvis Treatment Plan Dose Comparison for Proton Therapy Using Single Energy and Dual Energy Computed Tomography Simulation Methods
- Dosimetric disparities between single-energy and dual-energy CT in breast cancer patients undergoing intensity modulated proton therapy
- Comparative dosimetric analysis of dual-energy CT and single-energy CT in Pelvis IMPT patients: Assessing target coverage and organ dose accuracy
- Quantifying dosimetric differences between SECT and DECT in brain malignancy patients undergoing IMPT: Mitigating proton range uncertainties
- Overview and Recommendations for Prospective Multi-institutional Spatially Fractionated Radiation Therapy Clinical Trials
- Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
- Proton Therapy for Spinal Tumors: A Consensus Statement From the Particle Therapy Cooperative Group
- Dosimetric benefits of breath-hold technique in intensity-modulated proton therapy: Evaluating target motion mitigation and organ dose reduction
- Design and performance evaluation of a slit‐slat camera for 2D prompt gamma imaging in proton therapy monitoring: A Monte Carlo simulation study
- Cleaning the dose falloff with low modulation in SBRT lung plans
- A phantom-based study and clinical implementation of brainlab’s treatment planning system for radiosurgical treatments of arteriovenous malformations
- Pelvis Treatment Plan Dose Comparison for Proton Therapy Using Single Energy and Dual Energy Computed Tomography Simulation Methods
- Comparative dosimetric analysis of dual-energy CT and single-energy CT in Pelvis IMPT patients: Assessing target coverage and organ dose accuracy
- Quantifying dosimetric differences between SECT and DECT in brain malignancy patients undergoing IMPT: Mitigating proton range uncertainties
- Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
- How Linear Elastic Material Properties Affect Lung Tumor Motion and Deformation: A Finite Element Analysis
- Dosimetric benefits of breath-hold technique in intensity-modulated proton therapy: Evaluating target motion mitigation and organ dose reduction
- Cleaning the dose falloff with low modulation in SBRT lung plans
- A phantom-based study and clinical implementation of brainlab’s treatment planning system for radiosurgical treatments of arteriovenous malformations
- A phantom-based study and clinical implementation of brainlab’s treatment planning system for radiosurgical treatments of arteriovenous malformations
- Grid Spatially Fractionated Radiation Therapy for Bulky Tumors: A Large Single Institution Experience
- Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
- Dosimetric benefits of breath-hold technique in intensity-modulated proton therapy: Evaluating target motion mitigation and organ dose reduction
- Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
- Dosimetric benefits of breath-hold technique in intensity-modulated proton therapy: Evaluating target motion mitigation and organ dose reduction
- Dosimetric Evaluation and Reproducibility of Breath-hold Plans in Intensity Modulated Proton Therapy: An Initial Clinical Experience
- Dosimetric benefits of breath-hold technique in intensity-modulated proton therapy: Evaluating target motion mitigation and organ dose reduction
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