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1.
Phys Imaging Radiat Oncol ; 16: 12-17, 2020 Oct.
Article in English | MEDLINE | ID: mdl-33458337

ABSTRACT

BACKGROUND AND PURPOSE: Total body irradiation (TBI) is a treatment used in the conditioning of patients prior to hematopoietic stem cell transplantation. We developed an extended-distance TBI technique using a conventional linac with multi-leaf collimator to deliver a homogeneous dose, and spare critical organs. MATERIALS AND METHODS: Patients were treated either in lateral recumbent or in supine position depending on the dose level. A conventional linac was used with the patient midline at 350 cm from the beam source. A series of beams was prepared manually using a 3D treatment planning system (TPS) aiming to improve dose homogeneity, spare the organs at risk and facilitate accurate patient positioning. An optimized dose calculation model for extended-distance treatments was developed using phantom measurements. During treatment, in-vivo dosimetry was performed using electronic dosimeters, and accurate positioning was verified using a mobile megavoltage imager. We analyzed dose volume histogram parameters for 19 patients, and in-vivo measurements for 46 delivered treatment fractions. RESULTS: Optimization of the dose calculation model for TBI improved dose calculation by 2.1% at the beam axis, and 17% at the field edge. Treatment planning dose objectives and constraints were met for 16 of 19 patients. Results of in-vivo dosimetry were within the set limitations (±10%) with mean deviations of 3.7% posterior of the lungs and 0.6% for the abdomen. CONCLUSIONS: We developed a TBI treatment technique using a conventional linac and TPS that can reliably be used in the conditioning regimen of patients prior to stem cell transplantation.

3.
Int J Radiat Oncol Biol Phys ; 81(5): 1405-14, 2011 Dec 01.
Article in English | MEDLINE | ID: mdl-21300472

ABSTRACT

PURPOSE: To develop a treatment technique for craniospinal irradiation using intensity-modulated radiotherapy (IMRT) with improved dose homogeneity at the field junction(s), increased target volume conformity, and minimized dose to the organs at risk (OARs). METHODS AND MATERIALS: Five patients with high-risk medulloblastoma underwent CT simulation in supine position. For each patient, an IMRT plan with daily intrafractionally modulated junction(s) was generated, as well as a treatment plan based on conventional three-dimensional planning (3DCRT). A dose of 39.6 Gy in 22 daily fractions of 1.8 Gy was prescribed. Dose-volume parameters for target volumes and OARs were compared for the two techniques. RESULTS: The maximum dose with IMRT was <107% in all patients. V<95 and V>107 were <1 cm3 for IMRT compared with 3-9 cm3 for the craniospinal and 26-43 cm3 for the spinal-spinal junction with 3DCRT. These observations corresponded with a lower homogeneity index and a higher conformity index for the spinal planning target volume with IMRT. IMRT provided considerable sparing of acute and late reacting tissues. V75 for the esophagus, gastroesophageal junction, and intestine was 81%, 81%, and 22% with 3DCRT versus 5%, 0%, and 1% with IMRT, respectively. V75 for the heart and thyroid was 42% and 32% vs. 0% with IMRT. CONCLUSION: IMRT with daily intrafractionally modulated junction results in a superior target coverage and junction homogeneity compared with 3DCRT. A significant dose reduction can be obtained for acute as well as late-reacting tissues.


Subject(s)
Cerebellar Neoplasms/radiotherapy , Cranial Irradiation/methods , Medulloblastoma/radiotherapy , Organs at Risk/radiation effects , Radiation Injuries/prevention & control , Radiotherapy, Intensity-Modulated/methods , Spine/radiation effects , Adolescent , Atlanto-Occipital Joint/radiation effects , Child , Child, Preschool , Dose Fractionation, Radiation , Esophagogastric Junction/radiation effects , Esophagus/radiation effects , Heart/radiation effects , Humans , Intestines/radiation effects , Radiotherapy Planning, Computer-Assisted/methods , Stomach/radiation effects , Thyroid Gland/radiation effects , Young Adult
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