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1.
Phys Med Biol ; 53(20): N387-96, 2008 Oct 21.
Article in English | MEDLINE | ID: mdl-18827319

ABSTRACT

Following the implementation of advanced treatment procedures in radiotherapy, there is a need for dynamic dose verification in 3D. Gel dosimetry could potentially be used for such measurements. However, recently published data show that certain types of gels have a dose rate and fractionation dependence. The aim of this study was to investigate the feasibility of using a polymer gel dosimeter for dose verification of dynamic radiotherapy. To investigate the influence of dose rate dependence during respiratory-like motion in and out of the beam, a respiration robot together with two types of gel systems (normoxic methacrylic acid gel (nMAG) and normoxic polyacrylamide gel (nPAG)) were used. Reference measurements were obtained using a linear diode array (LDA). Expected results, if there was no influence of the dose rate variation, were calculated by convolving the static irradiated gel data with the motion function controlling the robot. To investigate the fractionation dependence, the gels were irradiated using gated and ungated deliveries. Magnetic resonance imaging was used to evaluate the absorbed dose response of the gel. The measured gel data coincided well with the LDA data. Also, the calculated data agreed well with the measured dynamic gel data, i.e. no dose rate dependence due to motion was observed. The difference in the R2 response for the gels receiving ungated and gated, i.e. fractionated, deliveries was less than 1% for the nPAG and 4% for the nMAG, for absorbed doses up to 2 Gy. The maximum difference was 1.2% for the nPAG and 9% for the nMAG, which occurred at the highest given dose (4 Gy). The investigated gels were found to be feasible detectors for dose measurements under respiratory-like motion. For dose verification of dynamic RT involving gated delivery, e.g. breathing-adapted radiotherapy, relative absorbed dose evaluation should be used in order to minimize the effects of fractionated irradiation.


Subject(s)
Gels/chemistry , Gels/radiation effects , Radiometry/methods , Radiotherapy, Conformal/methods , Respiratory Mechanics , Dose-Response Relationship, Radiation , Feasibility Studies , Humans , Materials Testing , Motion , Radiation Dosage , Radiometry/instrumentation , Reproducibility of Results , Sensitivity and Specificity
2.
Phys Med Biol ; 52(15): 4697-706, 2007 Aug 07.
Article in English | MEDLINE | ID: mdl-17634658

ABSTRACT

Dose integration properties were investigated for normoxic polymer gels based on methacrylic acid (nMAG) and acrylamide/N, N'-methylenebisacrylamide (nPAG). The effect of sequential irradiation was studied for different fractionation schemes and varying amounts of methacrylic acid for the nMAG gels. Magnetic resonance imaging (MRI) was used for read out of the absorbed dose response. The investigated gels exhibited a dependence on the fractionation scheme. The response when the total dose was divided into fractions of 0.5 Gy was compared with the response when the total dose was delivered in a single fraction. The slope of the R2 versus the absorbed dose response decreased when the absorbed dose per fraction was increased. Also, for higher amounts of methacrylic acid in the nMAG system the difference in the response increased. For gels containing 2, 4, 6 and 8% methacrylic acid, the R2 versus the absorbed dose response increased by 35, 37, 63 and 93%, respectively. Furthermore, the effect of the fractionation was larger when a higher total absorbed dose was given. The effect was less pronounced for the investigated nPAG, containing 3% acrylamide and 3% N, N'-methylenebisacrylamide, than for the nMAG systems. Consequently, this study indicates that the nPAG system has preferable beam integration characteristics compared with the nMAG system.


Subject(s)
Artifacts , Gels/radiation effects , Polymers/radiation effects , Radiometry/methods , Radiotherapy, Conformal/methods , Dose-Response Relationship, Radiation , Gels/chemistry , Polymers/chemistry , Radiometry/instrumentation , Radiotherapy Dosage , Reproducibility of Results , Sensitivity and Specificity
3.
Phys Med Biol ; 51(4): 919-28, 2006 Feb 21.
Article in English | MEDLINE | ID: mdl-16467587

ABSTRACT

A low-density (approximately 0.6 g cm(-3)) normoxic polymer gel, containing the antioxidant tetrakis (hydroxymethyl) phosponium (THP), has been investigated with respect to basic absorbed dose response characteristics. The low density was obtained by mixing the gel with expanded polystyrene spheres. The depth dose data for 6 and 18 MV photons were compared with Monte Carlo calculations. A large volume phantom was irradiated in order to study the 3D dose distribution from a 6 MV field. Evaluation of the gel was carried out using magnetic resonance imaging. An approximately linear response was obtained for 1/T2 versus dose in the dose range of 2 to 8 Gy. A small decrease in the dose response was observed for increasing concentrations of THP. A good agreement between measured and Monte Carlo calculated data was obtained, both for test tubes and the larger 3D phantom. It was shown that a normoxic polymer gel with a reduced density could be obtained by adding expanded polystyrene spheres. In order to get reliable results, it is very important to have a uniform distribution of the gel and expanded polystyrene spheres in the phantom volume.


Subject(s)
Gels/radiation effects , Magnetic Resonance Imaging/instrumentation , Polymers/radiation effects , Radiometry/instrumentation , Radiotherapy Planning, Computer-Assisted/instrumentation , Dose-Response Relationship, Radiation , Equipment Design , Equipment Failure Analysis , Feasibility Studies , Gels/chemistry , Magnetic Resonance Imaging/methods , Photons , Polymers/chemistry , Radiation Dosage , Radiometry/methods , Radiotherapy Planning, Computer-Assisted/methods , Reproducibility of Results , Sensitivity and Specificity
4.
Appl Radiat Isot ; 56(6): 895-9, 2002 Jun.
Article in English | MEDLINE | ID: mdl-12102349

ABSTRACT

The relationship between the radiation absorbed dose and the NMR longitudinal and transversal relaxation rates, R1 and R2, respectively, of a ceric sulphate dosimeter was examined. By adding copper sulphate, the R1 and R2 dose-responses were found to be linear up to 60 kGy with dose sensitivities of 13 x 10(-6) and 15 x 10(-6) s(-1) Gy(-1) , respectively. There is thus the potential for a three-dimensional ceric dosimeter for high dose applications, provided a suitable gelling substance is used.


Subject(s)
Radiation Monitoring/methods , Sulfuric Acids , Magnetic Resonance Spectroscopy , Reproducibility of Results , Sensitivity and Specificity
5.
Phys Med Biol ; 47(11): 1881-90, 2002 Jun 07.
Article in English | MEDLINE | ID: mdl-12108773

ABSTRACT

Off-resonance RF pre-saturation was used to obtain contrast in MRI images of polymer gel dosimeters irradiated to doses up to 50 Gy. Two different polymer gel dosimeters composed of 2-hydroxyethyl-acrylate or methacrylic acid monomers mixed with N, N'-methylene-bisacrylamide (BIS), dispersed in an aqueous gelatin matrix were evaluated. Radiation-induced polymerization of the co-monomers generates a fast-relaxing insoluble polymer. Saturation of the polymer using off-resonance Gaussian RF pulses prior to a spin-echo readout with a short echo time leads to contrast that is dependent on the absorbed dose. This contrast is attributed to magnetization transfer (MT) between free water and the polymer, and direct saturation of water was found to be negligible under the prevailing experimental conditions. The usefulness of MT imaging was assessed by computing the dose resolution obtained with this technique. We found a low value of dose resolution over a wide range of doses could be obtained with a single experiment. This is an advantage over multiple spin echo (MSE) experiments using a single echo spacing where an optimal dose resolution is achieved over only very limited ranges of doses. The results suggest MT imaging protocols may be developed into a useful tool for polymer gel dosimetry.


Subject(s)
Gels , Magnetics , Polymers , Radiometry/instrumentation , Radiometry/methods , Dose-Response Relationship, Radiation , Magnetic Resonance Imaging/methods , Water/chemistry
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