Medical Physics · 2000 · 98 citations · 15 references
MeasurementSurgeryCalibrationHematologyBiostatisticsRadiation Therapy PlanningInstrumentationLaboratory MedicineCdte Semiconductor DetectorsRadiation OncologyImaging SystemNuclear MedicineRadiologyHealth SciencesPg-spect-conceptual StudyRadiation DetectionMedical ImagingRadiation TherapyMedicineProton TherapyCdte Semiconductor DetectorDosimetryOncologyClinical Bnct
A noninvasive method for measuring the absorbed dose distribution during the administration of clinical boron neutron capture therapy (BNCT) using an online three-dimensional (3D) imaging system is presented. This system is designed to provide more accurate information for treatment planning and dosimetry. The single-photon emission computed tomography (SPECT) technique is combined with prompt gamma-ray analysis (PGA) to provide an ideal dose estimation system for BNCT. This system is termed PG-SPECT. The fundamental feasibility of the PG-SPECT system for BNCT is confirmed under the following conditions: (1) a voxel size of 1 x 1 x 1 cm3, comparable to the spatial resolution of our standard dosimetric technique using gold wire activation, where data are available for every 5-10 mm of wire length; (2) a reaction rate of 10B(n,alpha)7Li within the measurement volume is greater than 1.1 x l0(6) interactions/cm3/s, corresponding to a thermal neutron flux of 5 x 10(8) n/cm2/s and a 10B concentration of greater than 10 ppm for the deepest part of the tumor volume under typical BNCT clinical conditions; (3) statistical uncertainty of the count rate for 10B(n,alpha)7Li prompt gamma rays is 10% or less. The desirable characteristics of a detector for the PG-SPECT system were determined by basic experiments using both HPGe and CdTe semiconductor detectors. The CdTe semiconductor detector has the greatest potential for this system because of its compactness and simplicity of maintenance.
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Kerma Factors for Neutron Energies below 30 MeV
Randall S. Caswell, J. Coyne, M. L. Randolph · Radiation Research · 1980 · 235 citations