Ex vivo validation of a stoichiometric dual energy CT proton stopping power ratio calibration

التفاصيل البيبلوغرافية
العنوان: Ex vivo validation of a stoichiometric dual energy CT proton stopping power ratio calibration
المؤلفون: Timothy D. Solberg, C. Ainsley, James McDonough, Alexander Lin, Boon-Keng Kevin Teo, Lingshu Yin, Yunhe Xie, Wei Zou
المصدر: Physics in medicine and biology. 63(5)
سنة النشر: 2018
مصطلحات موضوعية: Materials science, Swine, Analytical chemistry, Kidney, Imaging phantom, Bone and Bones, 030218 nuclear medicine & medical imaging, 03 medical and health sciences, 0302 clinical medicine, Hounsfield scale, Calibration, Dosimetry, Animals, Radiology, Nuclear Medicine and imaging, Muscle, Skeletal, Proton therapy, Radiological and Ultrasound Technology, Phantoms, Imaging, Brain, 030220 oncology & carcinogenesis, Ionization chamber, Measuring instrument, Cattle, Protons, Tomography, X-Ray Computed, Effective atomic number
الوصف: A major source of uncertainty in proton therapy is the conversion of Hounsfield unit (HU) to proton stopping power ratio relative to water (SPR). In this study, we measured and quantified the accuracy of a stoichiometric dual energy CT (DECT) SPR calibration. We applied a stoichiometric DECT calibration method to derive the SPR using CT images acquired sequentially at and . The dual energy index was derived based on the HUs of the paired spectral images and used to calculate the effective atomic number (Z eff), relative electron density (), and SPRs of phantom and biological materials. Two methods were used to verify the derived SPRs. The first method measured the sample's water equivalent thicknesses to deduce the SPRs using a multi-layer ion chamber (MLIC) device. The second method utilized Gafchromic EBT3 film to directly compare relative ranges between sample and water after proton pencil beam irradiation. Ex vivo validation was performed using five different types of frozen animal tissues with the MLIC and three types of fresh animal tissues using film. In addition, the residual ranges recorded on the film were used to compare with those from the treatment planning system using both DECT and SECT derived SPRs. Bland–Altman analysis indicates that the differences between DECT and SPR measurement of tissue surrogates, frozen and fresh animal tissues has a mean of 0.07% and standard deviation of 0.58% compared to 0.55% and 1.94% respectively for single energy CT (SECT) and SPR measurement. Our ex vivo study indicates that the stoichiometric DECT SPR calibration method has the potential to be more accurate than SECT calibration under ideal conditions although beam hardening effects and other image artifacts may increase this uncertainty.
تدمد: 1361-6560
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::fdc61fa72a61f99f1c2cc6e90dd3cdec
https://pubmed.ncbi.nlm.nih.gov/29513647
حقوق: CLOSED
رقم الأكسشن: edsair.doi.dedup.....fdc61fa72a61f99f1c2cc6e90dd3cdec
قاعدة البيانات: OpenAIRE