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Purpose: The purpose of this study was to simulate and validate organ doses from different computed tomography (CT) localizer radiograph geometries using Monte Carlo methods for a population of patients.
Methods: A Monte Carlo method was developed to estimate organ doses from CT localizer radiographs using PENELOPE. The method was validated by comparing dosimetry estimates with measurements using an anthropomorphic phantom imbedded with thermoluminescent dosimeters (TLDs) scanned on a commercial CT system (Siemens SOMATOM Flash). The Monte Carlo simulation platform was then applied to conduct a population study with 57 adult computational phantoms (XCAT). In the population study, clinically relevant chest localizer protocols were simulated with the x-ray tube in anterior-posterior (AP), right lateral, and PA positions. Mean organ doses and associated standard deviations (in mGy) were then estimated for all simulations. The obtained organ doses were studied as a function of patient chest diameter. Organ doses for breast and lung were compared across different views and represented as a percentage of organ doses from rotational CT scans.
Results: The validation study showed an agreement between the Monte Carlo and physical TLD measurements with a maximum percent difference of 15.5% and a mean difference of 3.5% across all organs. The XCAT population study showed that breast dose from AP localizers was the highest with a mean value of 0.24 mGy across patients, while the lung dose was relatively consistent across different localizer geometries. The organ dose estimates were found to vary across the patient population, partially explained by the changes in the patient chest diameter. The average effective dose was 0.18 mGy for AP, 0.09 mGy for lateral, and 0.08 mGy for PA localizer.
Conclusion: A platform to estimate organ doses in CT localizer scans using Monte Carlo methods was implemented and validated based on comparison with physical dose measurements. The simulation platform was applied to a virtual patient population, where the localizer organ doses were found to range within 0.4%-8.6% of corresponding organ doses for a typical CT scan, 0.2%-3.3% of organ doses for a CT pulmonary angiography scan, and 1.1%-20.8% of organ doses for a low-dose lung cancer screening scan.
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http://dx.doi.org/10.1002/mp.13781 | DOI Listing |
Microbiol Spectr
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King Abdullah International Medical Research Center, Jeddah, Saudi Arabia.
Recently, to achieve cure, physicians have been resorting to overuse or misuse of antimicrobials to treat resistant infections, leading to the emergence of further resistant organisms. To overcome this issue, antimicrobial guidelines have been developed. Nevertheless, recently, controversy regarding the effect of adherence to antimicrobial guidelines on patient outcomes has been raised.
View Article and Find Full Text PDFRep Pract Oncol Radiother
August 2025
Department of Electroradiology, Poznan University of Medical Sciences, Poznan, Poland.
Background: To compare doses deposited to the liver during right breast radiotherapy with static and dynamic radiotherapy techniques. The second aim was to introduce the liver load index (LLI), a novel index developed to estimate radiation exposure to the liver prior to treatment selection.
Materials And Methods: We prepared radiotherapy treatment plans for ten patients with right breast cancer.
Front Pharmacol
August 2025
School of Integrated Traditional Chinese and Western Medicine, Hebei University of Chinese Medicine, Shijiazhuang, Hebei, China.
Ethnopharmacological Relevance: Baicalin, an extract derived from the dried root of Scutellaria baicalensis Georgi (Huang Qin), has demonstrated neuroprotective properties. Nonetheless, the safety profile of baicalin has not yet been fully elucidated.
Aim Of The Study: The objective was to characterize the acute and subacute toxicity profiles of baicalin across various organ systems, thereby establishing safe therapeutic windows for its clinical application in the treatment of chronic neurodegenerative disorders.
Recent Pat Anticancer Drug Discov
September 2025
Department of Biophysics, Faculty of Applied Health Sciences, October 6 University, Egypt.
Introduction: Leukemia and radiation-induced liver toxicity are significant health challenges requiring effective therapeutic strategies. This study aimed to evaluate the therapeutic efficacy and radiosensitizing effects of Diosgenin-loaded silver nanoparticles (Dio-AgNPs) in ENU-induced leukemic mice, with a focus on their dual role in mitigating leukemia progression and γ-irradiation-induced hepatotoxicity.
Methods: Dio-AgNPs were synthesized and characterized using TEM, UV-Vis spectroscopy, FT-IR spectroscopy, and encapsulation efficiency analysis.
Curr Med Chem
September 2025
Laboratory of Molecular Basis of Action of physiologically active compounds, Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, 119991, Moscow, Russia.
Introduction: Chemotherapy remains essential despite advances in immunotherapy, radiotherapy, and biological therapy. However, the wide range of chemical drugs is limited by a narrow therapeutic index, low selectivity, and the development of resistance. In this regard, new high-efficiency drugs are in extremely high demand.
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