| Literature DB >> 26180678 |
Julian R Perks1, Steven Lucero2, Arta M Monjazeb1, Jian Jian Li1.
Abstract
Three dimensional (3D) scanning and printing technology is utilized to create phantom models of mice in order to assess the accuracy of ionizing radiation dosing from a clinical, human-based linear accelerator. Phantoms are designed to simulate a range of research questions, including irradiation of lung tumors and primary subcutaneous or orthotopic tumors for immunotherapy experimentation. The phantoms are used to measure the accuracy of dose delivery and then refine it to within 1% of the prescribed dose.Entities:
Keywords: 3d printing; linear accelerator small field radiation
Year: 2015 PMID: 26180678 PMCID: PMC4494576 DOI: 10.7759/cureus.254
Source DB: PubMed Journal: Cureus ISSN: 2168-8184
Figure 1Percentage depth dose plots for the 6MV photons, 6MeV and 9MeV electrons used in this study
Figure 2Mice in position for whole body irradiation, under bolus at linac room isocenter (as marked by room lasers)
Figure 33D printed mouse phantom with A1SL ion chamber, used to confirm dose in whole body irradiation
Figure 43D printed mouse phantom with MOSFET detectors for confirmation of focal electron radiation
Density measurements from real and phantom mice
The electron density measurements of the real and 3D printed phantom mice, showing the tissue equivalence necessary to derive the guidelines for accurate irradiations.
| Scanned area | Density g/cm3 |
| Solid water | 1.06 |
| Bolus material (superflab) | 1.00 |
| Phantom mouse material | 1.15 |
| Phantom mouse (lung) | 1.06 |
| Mouse gut | 1.12 |
| Mouse lung | 0.66 |
| Mouse bone | 1.21 |
Weights of real and phantom mice assessed by CT scanning
The weight (in grams) of the real and 3D printed phantom mice used in the research and confirmation measurements, respectively.
| Description | Weight / g |
| Live, Balb/c mice (average of four animals) | 22.2 (average) 19.8 – 24.5 (range) |
| Whole body phantom | 31.2 |
| Lung phantom | 31.1 |
| CT phantom | 32.9 |
| Subcutaneous phantom | 35.4 |
Prescribed and measured doses for the mouse irradiations
A comparison of the expected and measured dose (in Gy) for each mouse phantom
| Setup of Phantom Irradiation | Energy | Prescribed dose / monitor units | Measured dose (Gy) | Comments |
| Whole body, 1 cm bolus directly on mouse | 6MV X-rays | 2Gy / 191MU | 2.001 | |
| Whole body in cage, 1 cm bolus material draped over cage | 6MV X-rays | 2Gy / 191MU | 1.968 | 1.7% lower due to loss indirect bolus |
| Mouse gut, 1 cm bolus, half blocked field | 6MV X-rays | 2Gy / 203MU | 2.003 | Average measured dose from three positions |
| Mouse lung, solid mouse, 1 cm bolus, 3x3 cm field size | 9MeV electrons | 2Gy / 227MU | 1.958 | 2.1% lower than prescribed |
| Mouse lung, solid mouse, 1 cm bolus, 3x3 cm field size | 9MeV electrons | 2Gy / 223MU | 2.001 | Monitor units adjusted |
| Mouse gut when lungs are irradiated, 1 cm bolus, 3x3 cm field size | 9MeV electrons | 2Gy / 223MU | 2.022 | 1.1% increase in measured dose due to lower attenuation in lung area |
| Mouse lung, mouse with lungs, 1 cm bolus, 3x3 cm field size | 9MeV electrons | 2Gy / 223MU | 0.178 | Equivalent of the 9% isodose line |
| Tumor on mouse flank, 1 cm circular field, | 6MeV electrons | 1Gy / 147MU | 0.957 | MOS / FET detector |
| Tumor on mouse flank, 1 cm circular field, | 6MeV electrons | 1Gy / 155MU | 1.015 | Adjusted monitor units |
| Contralateral tumor mouse flank | 6MeV electrons | 1Gy / 155MU | 0.04 | Equivalent of the 4% isodose line |
Guidelines for mice irradiations
The appropriate linac settings (in monitor units) for each experiment.
| Scenario | Prescription and setup | MU / Gy |
| Whole body | Mice in cage, cage on 5 cm thick block of solid water, couch raised to set laser isocenter at mid plane of mouse, 1 cm bolus over cage, 6MV X-rays, 20x20 cm field (scatter factor 1.05), prescription dmax at mouse midplane. | 97 |
| Lung | Anaesthetized individual mouse on 5 cm solid water block, couch raised to set laser isocenter at mid plane of mouse, 3x3 cm electron cutout, 1 cm bolus directly over mouse, 9MeV electrons, prescription dmax at lung central plane. | 116.5 |
| Gut | Anaesthetized line of mice on 5 cm solid water block, couch raised to set laser isocenter at mid plane of mouse, 1 cm bolus material directly over mouse, 6MV X-rays, 5x20 cm field (scatter factor 0.984), prescription dmax at gut midplane. | 100 |
| Subcutaneous/Orthotopic tumor | Anaesthetized individual mouse on 5 cm solid water block, tumor requiring radiation at laser isocenter, linac gantry angled to provide optimal coverage, 0.5 cm bolus over tumor, 6MeV electrons, 2 cm circular cutout, prescription at tumor center. | 153 |