Literature DB >> 20950958

A treatment planning method for sequentially combining radiopharmaceutical therapy and external radiation therapy.

Robert F Hobbs1, Todd McNutt, Sébastien Baechler, Bin He, Caroline E Esaias, Eric C Frey, David M Loeb, Richard L Wahl, Ori Shokek, George Sgouros.   

Abstract

PURPOSE: Effective cancer treatment generally requires combination therapy. The combination of external beam therapy (XRT) with radiopharmaceutical therapy (RPT) requires accurate three-dimensional dose calculations to avoid toxicity and evaluate efficacy. We have developed and tested a treatment planning method, using the patient-specific three-dimensional dosimetry package 3D-RD, for sequentially combined RPT/XRT therapy designed to limit toxicity to organs at risk. METHODS AND MATERIALS: The biologic effective dose (BED) was used to translate voxelized RPT absorbed dose (D(RPT)) values into a normalized total dose (or equivalent 2-Gy-fraction XRT absorbed dose), NTD(RPT) map. The BED was calculated numerically using an algorithmic approach, which enabled a more accurate calculation of BED and NTD(RPT). A treatment plan from the combined Samarium-153 and external beam was designed that would deliver a tumoricidal dose while delivering no more than 50 Gy of NTD(sum) to the spinal cord of a patient with a paraspinal tumor.
RESULTS: The average voxel NTD(RPT) to tumor from RPT was 22.6 Gy (range, 1-85 Gy); the maximum spinal cord voxel NTD(RPT) from RPT was 6.8 Gy. The combined therapy NTD(sum) to tumor was 71.5 Gy (range, 40-135 Gy) for a maximum voxel spinal cord NTD(sum) equal to the maximum tolerated dose of 50 Gy.
CONCLUSIONS: A method that enables real-time treatment planning of combined RPT-XRT has been developed. By implementing a more generalized conversion between the dose values from the two modalities and an activity-based treatment of partial volume effects, the reliability of combination therapy treatment planning has been expanded.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 20950958      PMCID: PMC3090537          DOI: 10.1016/j.ijrobp.2010.08.022

Source DB:  PubMed          Journal:  Int J Radiat Oncol Biol Phys        ISSN: 0360-3016            Impact factor:   7.038


  26 in total

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6.  High-dose samarium-153 ethylene diamine tetramethylene phosphonate: low toxicity of skeletal irradiation in patients with osteosarcoma and bone metastases.

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9.  Dose-finding study of 153Sm-EDTMP in patients with poor-prognosis osteosarcoma.

Authors:  David M Loeb; Elizabeth Garrett-Mayer; Robert F Hobbs; Andrew R Prideaux; George Sgouros; Ori Shokek; Moody D Wharam; Tammy Scott; Cindy L Schwartz
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10.  Three-dimensional radiobiologic dosimetry: application of radiobiologic modeling to patient-specific 3-dimensional imaging-based internal dosimetry.

Authors:  Andrew R Prideaux; Hong Song; Robert F Hobbs; Bin He; Eric C Frey; Paul W Ladenson; Richard L Wahl; George Sgouros
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  17 in total

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Review 2.  Improving external beam radiotherapy by combination with internal irradiation.

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3.  Redefining relative biological effectiveness in the context of the EQDX formalism: implications for alpha-particle emitter therapy.

Authors:  Robert F Hobbs; Roger W Howell; Hong Song; Sébastien Baechler; George Sgouros
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4.  Radiopharmaceutical Therapy.

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Journal:  Health Phys       Date:  2019-02       Impact factor: 1.316

5.  3D dosimetry in patients with early breast cancer undergoing Intraoperative Avidination for Radionuclide Therapy (IART) combined with external beam radiation therapy.

Authors:  Mahila E Ferrari; Marta Cremonesi; Amalia Di Dia; Francesca Botta; Concetta De Cicco; Anna Sarnelli; Piernicola Pedicini; Michele Calabrese; Roberto Orecchia; Guido Pedroli; Giovanni Paganelli
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6.  Improving the dose-myelotoxicity correlation in radiometabolic therapy of bone metastases with 153Sm-EDTMP.

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7.  Development and evaluation of convergent and accelerated penalized SPECT image reconstruction methods for improved dose-volume histogram estimation in radiopharmaceutical therapy.

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8.  Strengths and Weaknesses of a Planar Whole-Body Method of (153)Sm Dosimetry for Patients with Metastatic Osteosarcoma and Comparison with Three-Dimensional Dosimetry.

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9.  Improved dose-volume histogram estimates for radiopharmaceutical therapy by optimizing quantitative SPECT reconstruction parameters.

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Review 10.  Dosimetry for radiopharmaceutical therapy.

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