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Practical guidelines that are not explicit in the TG-51 protocol and its Addendum for photon beam dosimetry are presented for the implementation of the TG-51 protocol for reference dosimetry of external high-energy photon and electron beams. These guidelines pertain to: (i) measurement of depth-ionization curves required to obtain beam quality specifiers for the selection of beam quality conversion factors, (ii) considerations for the dosimetry system and specifications of a reference-class ionization chamber, (iii) commissioning a dosimetry system and frequency of measurements, (iv) positioning/aligning the water tank and ionization chamber for depth ionization and reference dose measurements, (v) requirements for ancillary equipment needed to measure charge (triaxial cables and electrometers) and to correct for environmental conditions, and (vi) translation from dose at the reference depth to that at the depth required by the treatment planning system. Procedures are identified to achieve the most accurate results (errors up to 8% have been observed) and, where applicable, a commonly used simplified procedure is described and the impact on reference dosimetry measurements is discussed so that the medical physicist can be informed on where to allocate resources.
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http://dx.doi.org/10.1002/mp.15949 | DOI Listing |
Nuklearmedizin
September 2025
Nuclear Medicine, Ulm University Hospital, Ulm, Germany.
Silicon-based ligands are of interest in increasingly used Prostate-specific membrane antigen (PSMA) tracers for prostate cancer (PCa) staging due to their simple and scalable production. Here, we present first data on dosimetry and biodistribution of the novel PSMA-specific tracer [¹⁸F]siPSMA-14.Seven PCa patients referred for PSMA-PET/CT imaging were imaged at 60 and 120 min p.
View Article and Find Full Text PDFNihon Hoshasen Gijutsu Gakkai Zasshi
September 2025
Department of Radiological Technology, Kurashiki Central Hospital.
Purpose: The purpose of this study was to understand the temporal changes in the volume CT dose index (CTDI) and Image noise.
Methods: The following 3 types of X-ray CT scanners were used: Aquilion PRIME Beyond Edition (CANON MEDICAL SYSTEMS, Tochigi, Japan; referred to as System A), Aquilion PRIME SP (CANON MEDICAL SYSTEMS; referred to as System B), and SOMATOM Definition Flash (Siemens Healthineers, Erlangen, Germany; referred to as System C). The CTDI was measured by placing an ion chamber in an acrylic phantom.
J Radiol Prot
September 2025
Radiological Physics & Advisory Division, Bhabha Atomic Research Centre, Mumbai, Maharashtra, INDIA.
Purpose This foundational study aims to support the development of regional Diagnostic Reference Levels (DRLs) for mammography screening in India by estimating Mean Glandular Dose (MGD) using appropriate breast-equivalent phantoms across Computed Mammography (CR), Digital Mammography (DR), and Digital Breast Tomosynthesis (DBT) systems. Additionally, system-displayed MGD values were compared with calculated MGDs to evaluate their accuracy for routine clinical use. Methods A total of 5,000 mammographic views were collected across CR, DR, and DBT units.
View Article and Find Full Text PDFWorld J Urol
September 2025
Department of Urology, Tianjin Institute of Urology, The Second Hospital of Tianjin Medical University, No. 23 Pingjiang Road, Hexi District, Tianjin, 300211, People's Republic of China.
Purpose: To compare the diagnostic accuracy of intraoperative endoscopic assessment with postoperative low-dose computed tomography (LDCT) for determining stone-free status (SFS) following retrograde vacuum-assisted dedusting lithotripsy (VADL) using a tip-flexible vacuum-assisted suction ureteral access sheath (tFVS-UAS) and evaluate the feasibility of replacing routine LDCT with intraoperative evaluation.
Methods: This single-center retrospective study analyzed 1,105 patients undergoing unilateral VADL (December 2022-December 2024). All VADL procedures were performed retrograde using tFVS-UAS.
Phys Med Biol
September 2025
Radiation Oncology, The University of Texas Southwestern Medical Center, 2280 Inwood Road, Dallas, Texas, 75235, UNITED STATES.
Objective: This study aims to investigate the responses of prototype diamond detectors under pulsed ultra-high dose rates (UHDR) pencil-beam-scanning (PBS) protons from a compact proton synchrocyclotron (IBA Proteus®ONE) for small-field UHDR dosimetry.
Approach: flashDiamond detectors (fD) were cross-calibrated with their relative proton responses characterized at conventional dose rates (CONV). Then, absolute UHDR dosimetry was performed and small-field response assessed.