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1.
J Radiol Prot ; 44(2)2024 May 17.
Article in English | MEDLINE | ID: mdl-38722292

ABSTRACT

According to International Commission of Radiological Protection, the equivalent dose limit for the eye lens for occupational exposure is recommended to be 20 mSv yr-1, averaged over 5 years, with no single year above 50 mSv. Some studies reported the measurement of assistant's lens exposure in diagnostic computed tomography (CT) examinations, but further investigation is still required in the association between the lens dose for assistants and various dose parameters. Therefore, we measured the assistant's lens exposure using small optically stimulated luminescence dosimeters. The type of occupation, type of assistance, total scan time, total mAs, total scan length, and dose-length product (DLP) were recorded and analyzed in association with air kerma at the lens position. The assistance was classified into four types: 'assisted ventilation,' 'head holding,' 'body holding,' and 'raising patient's arm.' The air kerma of lens position was not significantly different for each assistance type (p< 0.05, Kruskal-Wallis test). Further, the lens doses for assistants correlated with DLP, but with various strengths of correlation with the assistance type and were influenced by the distance from the CT gantry. In conclusion, lens dose during assistance and DLP demonstrated the strongest correlation. 'Raising patient's arm' and 'head holding' exhibited stronger correlations, which required less table movement during the CT scan than 'assisted ventilation' and 'body holding'.


Subject(s)
Lens, Crystalline , Occupational Exposure , Radiation Dosage , Tomography, X-Ray Computed , Lens, Crystalline/radiation effects , Humans , Occupational Exposure/analysis , Radiation Protection , Radiation Exposure/analysis
2.
J Radiol Prot ; 44(2)2024 May 28.
Article in English | MEDLINE | ID: mdl-38722296

ABSTRACT

The purpose of this study is to evaluate the occupational doses (eye lens, extremities and whole body) in paediatric cardiac interventional and diagnostic catheterization procedures performed in a paediatric reference hospital located in Recife, Pernambuco. For eye lens dosimetry, the results show that the left eye receives a higher dose than the right eye, and there is a small difference between the doses received during diagnostic (D) and therapeutic (T) procedures. The extrapolated annual values for the most exposed eye are close to the annual limit. For doses to the hands, it was observed that in a significant number of procedures (37 out of 45 therapeutic procedures, or 82%) at least one hand of the physician was exposed to the primary beam. During diagnostic procedures, the physician's hand was in the radiation field in 11 of the 17 catheterization procedures (65%). This resulted in a 10-fold increase in dose to the hands. The results underscore the need for optimization of radiation safety and continued efforts to engage staff in a radiation safety culture.


Subject(s)
Occupational Exposure , Radiation Dosage , Humans , Occupational Exposure/analysis , Child , Cardiac Catheterization , Radiation Protection , Lens, Crystalline/radiation effects , Radiography, Interventional , Radiation Exposure/analysis
3.
Radiat Prot Dosimetry ; 200(8): 755-762, 2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38702851

ABSTRACT

This study focuses on patient radiation exposure in interventional neuroradiology (INR) procedures, a field that has advanced significantly since its inception in the 1980s. INR employs minimally invasive techniques to treat complex cerebrovascular diseases in the head, neck, and spine. The study establishes diagnostic reference levels (DRLs) for three clinical indications (CIs): stroke (S), brain aneurysms (ANs), and brain arteriovenous malformation (AVM). Data from 209 adult patients were analyzed, and DRLs were determined in terms of various dosimetric and technical quantities. For stroke, the established DRLs median values were found to be 78 Gy cm2, 378 mGy, 118 mGy, 12 min, 442 images, and 15 runs. Similarly, DRLs for brain AN are 85 Gy cm2, 611 mGy, 95.5 mGy, 19.5, 717 images, and 26 runs. For brain AVM, the DRL's are 180 Gy cm2, 1144 mGy, 537 mGy, 36 min, 1375 images, and 31 runs. Notably, this study is unique in reporting DRLs for specific CIs within INR procedures, providing valuable insights for optimizing patient safety and radiation exposure management.


Subject(s)
Radiation Dosage , Humans , Adult , Male , Middle Aged , Female , Aged , Radiation Exposure/analysis , Intracranial Arteriovenous Malformations/radiotherapy , Intracranial Arteriovenous Malformations/diagnostic imaging , Stroke/diagnostic imaging , Intracranial Aneurysm/diagnostic imaging , Diagnostic Reference Levels , Neuroradiography/methods , Aged, 80 and over , Young Adult
4.
Radiat Prot Dosimetry ; 200(8): 763-769, 2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38712384

ABSTRACT

Veterinary practitioners and other personnel involved in the examination are exposed to ionizing radiation while performing portable radiographs on horses. An online survey was distributed to all Veterinary Council of Ireland-registered practices where the self-reported practice profile is at least 20% equine work. The survey contained questions relating to radiation safety training, protocols, personal dosimetry and lead protection usage, repeat exposures, sedation, and personnel roles during the examination. The aim of the survey was to document the current radiation safety practices of equine veterinary practitioners during portable radiography. The results showed that although adherence to guidance set out by the Environmental Protection Agency (EPA) is reasonably good, compliance rates can be improved. Personal dosemeter usage and repeat rate reduction could particularly benefit from further improvement. This is of the utmost importance in ensuring that occupational radiation exposure to veterinary practitioners is kept to an absolute minimum during their daily practice.


Subject(s)
Occupational Exposure , Radiation Protection , Ireland , Horses , Animals , Occupational Exposure/analysis , Occupational Exposure/prevention & control , Humans , Surveys and Questionnaires , Radiography/statistics & numerical data , Radiography/standards , Radiography/adverse effects , Veterinarians , Radiation Dosage , Radiation Exposure/analysis
5.
Radiat Prot Dosimetry ; 200(8): 745-754, 2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38702838

ABSTRACT

This study analysed the occupational dose in Korean pressurized heavy-water reactors (PHWRs) and identified tasks involving high radiation exposure. The average individual dose was sufficiently low to be below the annual effective dose limit for radiation workers and is even lower than the dose limit for the general public. However, some workers received relatively higher doses than others. Furthermore, most PHWR workers are exposed to radiation during planned maintenance periods. In this study, the radiation dose was normalized (radiation dose per unit time) to determine the high-radiation-exposure tasks in Korean PHWRs. Consequently, end-fitting lapping, delayed neutron tube work and fuel channel fixed-end change tasks were identified as high-radiation-exposure tasks in Korean PHWRs. If appropriate radiation protection measures are prioritized for the identified high-dose exposure tasks, optimization of radiological protection will be effectively achieved by reducing the dose that is relatively higher than the average.


Subject(s)
Occupational Exposure , Radiation Dosage , Radiation Monitoring , Occupational Exposure/analysis , Occupational Exposure/prevention & control , Humans , Republic of Korea , Radiation Monitoring/methods , Radiation Monitoring/instrumentation , Radiation Protection/instrumentation , Radiation Exposure/analysis , Nuclear Reactors , Water
6.
Health Phys ; 126(6): 397-404, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38568172

ABSTRACT

ABSTRACT: Experiments that examine the impacts of subnatural background radiation exposure provide a unique approach to studying the biological effects of low-dose radiation. These experiments often need to be conducted in deep underground laboratories in order to filter surface-level cosmic radiation. This presents some logistical challenges in experimental design and necessitates a model organism with minimal maintenance. As such, desiccated yeast ( Saccharomyces cerevisiae ) is an ideal model system for these investigations. This study aimed to determine the impact of prolonged sub-background radiation exposure in anhydrobiotic (desiccated) yeast at SNOLAB in Sudbury, Ontario, Canada. Two yeast strains were used: a normal wild type and an isogenic recombinational repair-deficient rad51 knockout strain ( rad51 Δ). Desiccated yeast samples were stored in the normal background surface control laboratory (68.0 nGy h -1 ) and in the sub-background environment within SNOLAB (10.1 nGy h -1 ) for up to 48 wk. Post-rehydration survival, growth rate, and metabolic activity were assessed at multiple time points. Survival in the sub-background environment was significantly reduced by a factor of 1.39 and 2.67 in the wild type and rad51 ∆ strains, respectively. Post-rehydration metabolic activity measured via alamarBlue reduction remained unchanged in the wild type strain but was 26% lower in the sub-background rad51 ∆ strain. These results demonstrate that removing natural background radiation negatively impacts the survival and metabolism of desiccated yeast, highlighting the potential importance of natural radiation exposure in maintaining homeostasis of living organisms.


Subject(s)
Desiccation , Saccharomyces cerevisiae , Saccharomyces cerevisiae/radiation effects , Rad51 Recombinase/metabolism , Radiation Exposure/adverse effects , Radiation Exposure/analysis , Radiation Dosage
7.
PLoS One ; 19(4): e0301418, 2024.
Article in English | MEDLINE | ID: mdl-38683751

ABSTRACT

In the event of a widespread radiological incident, thousands of individuals will require rapid assessment of exposure using validated biodosimetry assays to inform clinical triage. In this scenario, multiple biodosimetry laboratories may be necessary for large-volume sample processing. To meet this need, we have developed a high-throughput assay for the rapid measurement of intracellular protein biomarkers in human peripheral blood samples using an Imaging Flow Cytometry (IFC) platform. The objective of this work was to harmonize and validate the reproducibility of our blood biomarker assay for radiation exposure across three IFC instruments, two located at Columbia University (CU) and the third at Health Canada. The Center for Radiological Research (CRR) at CU served as the central laboratory and reference instrument, where samples were prepared in triplicate, labeled with two radiation responsive leukocyte biomarkers (BAX and phosphor-p53 (Ser37)), and distributed for simultaneous interrogation by each IFC. Initial tests showed that significantly different baseline biomarker measurements were generated on each instrument when using the same acquisition settings, suggesting that harmonization of signal intensities is necessary. Subsequent tests harmonized biomarker measurements after irradiation by modulating laser intensity using two reference materials: unstained samples and standardized rainbow beads. Both methods generated measurements on each instrument without significant differences between the new and references instruments, allowing for the use of one master template to quantify biomarker expression across multiple instruments. Deming regression analyses of 0-5 Gy dose-response curves showed overall good correlation of BAX and p53 values across new and reference instruments. While Bland-Altman analyses indicated low to moderate instrument biases, ROC Curve analyses ultimately show successful discrimination between exposed and unexposed samples on each instrument (AUC values > 0.85).


Subject(s)
Biomarkers , Radiation Exposure , Humans , Radiation Exposure/analysis , Flow Cytometry/methods , Reproducibility of Results , High-Throughput Screening Assays/methods , Tumor Suppressor Protein p53
8.
Radiat Prot Dosimetry ; 200(7): 640-647, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38648184

ABSTRACT

According to UNSCEAR, cosmic radiation contributes to ~16% (0.39 mSv/y) of the total dose received by the public at sea level. The exposure to cosmic rays at a specific location is therefore a non-negligible parameter that contributes to the assessment of the overall public exposure to radiation. In this study, simulations were conducted with the Particle and Heavy Ion Transport code System, a Monte Carlo code, to determine the fluxes and effective dose due to cosmic rays received by the population of Douala. In minimum solar activity, the total effective dose considering the contribution of neutron, muon+, muon-, electron, positron and photon, was found to be 0.31 ± 0.02 mSv/y at the ground level. For maximum solar activity, it was found to be 0.27 ± 0.02 mSv/y at ground level. During maximum solar activity, galactic cosmic rays are reduced by solar flares and winds, resulting in an increase in the solar cosmic-ray component and a decrease in the galactic cosmic-ray component on Earth. This ultimately leads to a decrease in the total cosmic radiation on Earth. These results were found to be smaller than the UNSCEAR values, thus suggesting a good estimation for the population of Douala city located near the equatorial line. In fact, the cosmic radiation is more deflected at the equator than near the pole. Muons+ were found to be the main contributors to human exposure to cosmic radiation at ground level, with ~38% of the total effective dose due to cosmic exposure. However, electrons and positrons were found to be the less contributors to cosmic radiation exposure. As regards the obtained results, the population of Douala is not significantly exposed to cosmic radiation.


Subject(s)
Cosmic Radiation , Heavy Ions , Monte Carlo Method , Radiation Dosage , Radiation Monitoring , Humans , Cameroon , Radiation Monitoring/methods , Solar Activity , Computer Simulation , Radiation Exposure/analysis
9.
Radiat Prot Dosimetry ; 200(7): 687-692, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38678363

ABSTRACT

The objective of this study was to evaluate patient knowledge and understanding of ionising radiation and dosage, as well as the accompanying risks related to computed tomography scans. A total of 412 outpatients who underwent computed tomography (CT) scans were surveyed to assess their understanding of radiation dose and exposure risks. CT was correctly classified as an ionising radiation by 56.8% of the respondents. More than half of the patients reported that a CT scan increases the probability of inducing cancer. Awareness of varying radiation doses in different CT exams was noted in 75.2% of patients, but only 21.4% reported having discussions with their physician about radiation dose. Gender, age and employment were significantly correlated with knowledge levels. The survey findings indicate a limited understanding of the hazards associated with ionising radiation used in CT scans, highlighting a need for increased awareness and education on radiation protection to ensure informed consent.


Subject(s)
Health Knowledge, Attitudes, Practice , Radiation Dosage , Radiation Exposure , Radiation, Ionizing , Tomography, X-Ray Computed , Humans , Saudi Arabia , Male , Tomography, X-Ray Computed/methods , Female , Middle Aged , Adult , Radiation Exposure/analysis , Surveys and Questionnaires , Aged , Young Adult , Radiation Protection , Adolescent
10.
Radiat Prot Dosimetry ; 200(7): 693-699, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38679858

ABSTRACT

This study presented a model applied for potential risk assessment in an interventional radiology setting. The model of potential risk assessment (MARP) consisted of the creation of a scale of indicators ranging from 0 to 5. The radiation levels were categorized according to gender, kind of procedure, value of kerma air product (Pka), and accumulated radiation dose (mGy). The MARP model was applied in 121 institutions over 8 y. A total of 201 656 patient radiation doses (Dose-area product and accumulated kerma) data were launched into the system over time, with an average of 22 406 doses per year. In the context of the workers (cardiologists, radiographers, and nurses) monitored during the MARP application, 8007 cases (with an average of 890 per year) of occupational radiation doses were recorded. This study showed a strategy for quality evaluation in fluoroscopy using a model with a compulsory information system for monitoring safety.


Subject(s)
Occupational Exposure , Radiation Dosage , Humans , Fluoroscopy/methods , Risk Assessment/methods , Occupational Exposure/analysis , Occupational Exposure/prevention & control , Female , Male , Radiography, Interventional/adverse effects , Radiation Monitoring/methods , Radiation Protection/standards , Radiation Protection/methods , Radiology, Interventional/methods , Radiology, Interventional/standards , Radiation Exposure/analysis
11.
Radiol Phys Technol ; 17(2): 561-568, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38668938

ABSTRACT

The purpose of this study was to investigate the risk of overexposure associated with automatic tube current modulation (ATCM) and automatic couch height positioning compensation mechanism (AHC) in computed tomography (CT) systems, particularly in scenarios involving a gap between the subject and the couch. Results revealed that when AHC was enabled, CT dose index volume (CTDIvol) increased by approximately 10% at 2.5 cm, 20% at 5.0 cm, and 40% at 10.0 cm gaps compared to close contact conditions. While the AHC function ensures consistent exposure doses and image quality regardless of subject positioning relative to the CT gantry isocenter, the study highlights a potential risk of overexposure when a gap exists between the subject and the couch. These findings offer valuable insights for optimizing CT imaging protocols and underscore the importance of carefully considering subject positioning in clinical practice.


Subject(s)
Phantoms, Imaging , Tomography, X-Ray Computed , Tomography, X-Ray Computed/instrumentation , Humans , Radiation Dosage , Patient Positioning , Risk , Radiation Exposure/analysis
12.
Radiat Prot Dosimetry ; 200(6): 580-587, 2024 Apr 20.
Article in English | MEDLINE | ID: mdl-38486458

ABSTRACT

This study aimed to assess fetal radiation exposure in pregnant women undergoing computed tomography (CT) and rotational angiography (RA) examinations for the diagnosis of pelvic trauma. In addition, this study aimed to compare the dose distributions between the two examinations. Surface and average fetal doses were estimated during CT and RA examinations using a pregnant phantom model and real-time dosemeters. The pregnant model phantom was constructed using an anthropomorphic phantom, and a custom-made abdominal phantom was used to simulate pregnancy. The total average fetal dose received by pregnant women from both CT scans (plain, arterial and equilibrium phases) and a single RA examination was ~60 mGy. Because unnecessary repetition of radiographic examinations, such as CT or conventional 2D angiography can increase the radiation risk, the irradiation range should be limited, if necessary, to reduce overall radiation exposure.


Subject(s)
Fetus , Pelvis , Phantoms, Imaging , Radiation Dosage , Radiation Exposure , Tomography, X-Ray Computed , Humans , Female , Pregnancy , Radiation Exposure/analysis , Fetus/radiation effects , Fetus/diagnostic imaging , Tomography, X-Ray Computed/methods , Pelvis/diagnostic imaging , Pelvis/radiation effects , Angiography/methods , Adult
13.
Sci Rep ; 14(1): 6119, 2024 03 13.
Article in English | MEDLINE | ID: mdl-38480827

ABSTRACT

Non-invasive methods of detecting radiation exposure show promise to improve upon current approaches to biological dosimetry in ease, speed, and accuracy. Here we developed a pipeline that employs Fourier transform infrared (FTIR) spectroscopy in the mid-infrared spectrum to identify a signature of low dose ionizing radiation exposure in mouse ear pinnae over time. Mice exposed to 0.1 to 2 Gy total body irradiation were repeatedly measured by FTIR at the stratum corneum of the ear pinnae. We found significant discriminative power for all doses and time-points out to 90 days after exposure. Classification accuracy was maximized when testing 14 days after exposure (specificity > 0.9 with a sensitivity threshold of 0.9) and dropped by roughly 30% sensitivity at 90 days. Infrared frequencies point towards biological changes in DNA conformation, lipid oxidation and accumulation and shifts in protein secondary structure. Since only hundreds of samples were used to learn the highly discriminative signature, developing human-relevant diagnostic capabilities is likely feasible and this non-invasive procedure points toward rapid, non-invasive, and reagent-free biodosimetry applications at population scales.


Subject(s)
Radiation Exposure , Radiometry , Humans , Mice , Animals , Spectroscopy, Fourier Transform Infrared , Fourier Analysis , Radiometry/methods , Proteins , Radiation, Ionizing , Radiation Exposure/analysis , Radiation Dosage
14.
Radiat Prot Dosimetry ; 200(7): 623-628, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38527175

ABSTRACT

Although boron neutron capture therapy (BNCT) causes minor damage to normal cells owing to the nuclear reactions induced by neutrons with major elements of tissues such as hydrogen and nitrogen, it is useful to estimate the accurate exposure dose for radiation protection. This study aims to estimate the contribution of internal exposure in radiation exposure dose for BNCT. The study was performed by referring to clinical studies at a reactor-based BNCT facility on the basis of computational dosimetry. Five irradiation regions of head and neck were selected for the estimation. The results suggest that external exposure occurred primarily in and around the irradiation field. Furthermore, during the exposure dose estimation in BNCT, internal exposure was found to be not negligible, implying that the irradiation regions in treatment planning must be considered for avoiding damage to certain critical organs that are susceptible to internal exposure.


Subject(s)
Boron Neutron Capture Therapy , Boron Neutron Capture Therapy/methods , Humans , Radiotherapy Dosage , Neutrons , Radiation Dosage , Radiometry/methods , Radiation Protection/methods , Radiation Exposure/analysis , Radiotherapy Planning, Computer-Assisted/methods , Monte Carlo Method , Head and Neck Neoplasms/radiotherapy , Phantoms, Imaging , Computer Simulation
15.
Radiat Prot Dosimetry ; 200(7): 629-639, 2024 May 08.
Article in English | MEDLINE | ID: mdl-38555495

ABSTRACT

Ensuring the safety of healthcare workers in interventional cardiology necessitates effective monitoring of occupational radiation exposure. This study aims to assess the accuracy of the over-apron single dosimetric approach compared with double dosimetric methods and explore the relationship between under-apron and over-apron doses. This investigation showed that the prescribed annual dose constraint of 20 mSv year-1 was not exceeded by the maximum annual occupational doses determined by dosimetric algorithms, which were 0.13 ± 0.02, 0.15 ± 0.02 and 0.27 ± 0.04 mSv, respectively. The study demonstrated excellent statistically significant correlations among single and double dosimetric algorithms and between direct under-apron and over-apron doses. Consequently, single dosimetric algorithms could effectively estimate doses for double dosimetric algorithms, highlighting the limited added value of under-apron measurements. These findings significantly impact the practice of interventional cardiology in Sri Lanka, playing a crucial role in enhancing radiation protection measures.


Subject(s)
Cardiology , Occupational Exposure , Radiation Dosage , Radiation Monitoring , Radiation Protection , Humans , Occupational Exposure/analysis , Occupational Exposure/prevention & control , Radiation Protection/methods , Cardiology/methods , Radiation Monitoring/methods , Algorithms , Protective Clothing , Radiation Exposure/analysis
16.
Environ Geochem Health ; 46(3): 82, 2024 Feb 17.
Article in English | MEDLINE | ID: mdl-38367080

ABSTRACT

Characterizing the interplay between exposures shaping the human exposome is vital for uncovering the etiology of complex diseases. For example, cancer risk is modified by a range of multifactorial external environmental exposures. Environmental, socioeconomic, and lifestyle factors all shape lung cancer risk. However, epidemiological studies of radon aimed at identifying populations at high risk for lung cancer often fail to consider multiple exposures simultaneously. For example, moderating factors, such as PM2.5, may affect the transport of radon progeny to lung tissue. This ecological analysis leveraged a population-level dataset from the National Cancer Institute's Surveillance, Epidemiology, and End-Results data (2013-17) to simultaneously investigate the effect of multiple sources of low-dose radiation (gross [Formula: see text] activity and indoor radon) and PM2.5 on lung cancer incidence rates in the USA. County-level factors (environmental, sociodemographic, lifestyle) were controlled for, and Poisson regression and random forest models were used to assess the association between radon exposure and lung and bronchus cancer incidence rates. Tree-based machine learning (ML) method perform better than traditional regression: Poisson regression: 6.29/7.13 (mean absolute percentage error, MAPE), 12.70/12.77 (root mean square error, RMSE); Poisson random forest regression: 1.22/1.16 (MAPE), 8.01/8.15 (RMSE). The effect of PM2.5 increased with the concentration of environmental radon, thereby confirming findings from previous studies that investigated the possible synergistic effect of radon and PM2.5 on health outcomes. In summary, the results demonstrated (1) a need to consider multiple environmental exposures when assessing radon exposure's association with lung cancer risk, thereby highlighting (1) the importance of an exposomics framework and (2) that employing ML models may capture the complex interplay between environmental exposures and health, as in the case of indoor radon exposure and lung cancer incidence.


Subject(s)
Air Pollution, Indoor , Lung Neoplasms , Radiation Exposure , Radon , Humans , Incidence , Lung Neoplasms/epidemiology , Lung Neoplasms/etiology , Environmental Exposure/adverse effects , Environmental Exposure/analysis , Radon/toxicity , Radon/analysis , Radiation Exposure/adverse effects , Radiation Exposure/analysis , Particulate Matter/toxicity , Particulate Matter/analysis , Air Pollution, Indoor/analysis
17.
Sci Rep ; 14(1): 4518, 2024 02 24.
Article in English | MEDLINE | ID: mdl-38402257

ABSTRACT

Exposure to ionizing radiation (IR) presents a formidable clinical challenge. Total-body or significant partial-body exposure at a high dose and dose rate leads to acute radiation syndrome (ARS), the complex pathologic effects that arise following IR exposure over a short period of time. Early and accurate diagnosis of ARS is critical for assessing the exposure dose and determining the proper treatment. Serum microRNAs (miRNAs) may effectively predict the impact of irradiation and assess cell viability/senescence changes and inflammation. We used a nonhuman primate (NHP) model-rhesus macaques (Macaca mulatta)-to identify the serum miRNA landscape 96 h prior to and following 7.2 Gy total-body irradiation (TBI) at four timepoints: 24, 36, 48, and 96 h. To assess whether the miRNA profile reflects the therapeutic effect of a small molecule ON01210, commonly known as Ex-Rad, that has demonstrated radioprotective efficacy in a rodent model, we administered Ex-Rad at two different schedules of NHPs; either 36 and 48 h post-irradiation or 48 and 60 h post-irradiation. Results of this study corroborated our previous findings obtained using a qPCR array for several miRNAs and their modulation in response to irradiation: some miRNAs demonstrated a temporary increased serum concentration within the first 24-36 h (miR-375, miR-185-5p), whereas others displayed either a prolonged decline (miR-423-5p) or a long-term increase (miR-30a-5p, miR-27b-3p). In agreement with these time-dependent changes, hierarchical clustering of differentially expressed miRNAs showed that the profiles of the top six miRNA that most strongly correlated with radiation exposure were inconsistent between the 24 and 96 h timepoints following exposure, suggesting that different biodosimetry miRNA markers might be required depending on the time that has elapsed. Finally, Ex-Rad treatment restored the level of several miRNAs whose expression was significantly changed after radiation exposure, including miR-16-2, an miRNA previously associated with radiation survival. Taken together, our findings support the use of miRNA expression as an indicator of radiation exposure and the use of Ex-Rad as a potential radioprotectant.


Subject(s)
Acute Radiation Syndrome , Medical Countermeasures , MicroRNAs , Radiation Exposure , Sulfonamides , Animals , Macaca mulatta/genetics , MicroRNAs/genetics , Radiation Exposure/analysis , Radiation, Ionizing
18.
Int J Environ Health Res ; 34(2): 1215-1226, 2024 Feb.
Article in English | MEDLINE | ID: mdl-37165966

ABSTRACT

The variation of dissolved radon levels in water supplies remains of interest since radon ingested through drinking water can give considerable radiation to the lining of the stomach. This study aims to determine the radon concentration levels in bottled spring drinking water (BSW) brands commercially sold in Turkey using a radon gas monitor and to assess the internal radiation exposure caused by the ingestion and inhalation of radon. The activity concentrations of radon analyzed in 77 BSW brands varied from 7.1±0.8 to 28.7±2.7 mBq/L with an average of 15.7±5.1 mBq/L. The total annual effective dose was estimated to assess the radiological risk for three age groups in four different scenarios based on annual drinking water intake. All estimated dose values are well below the recommended reference dose of 100 µSv for drinking water. Therefore, radon gas in the investigated BSW samples poses no significant radiological risk to the public.


Subject(s)
Drinking Water , Radiation Exposure , Radiation Monitoring , Radon , Water Pollutants, Radioactive , Radon/analysis , Turkey , Water Pollutants, Radioactive/analysis , Radiation Exposure/analysis
19.
Sci Rep ; 13(1): 22459, 2023 12 18.
Article in English | MEDLINE | ID: mdl-38105319

ABSTRACT

Temporal variation and fluctuation in environmental contamination in Futaba town and Okuma town, the location of the Fukushima Daiichi Nuclear Power Plant (FDNPP), were evaluated based on a car-borne survey conducted from October 2021 to November 2022. Although the environmental radioactivity in the interim storage facility area (ISF) was higher than that in open areas (i.e., the evacuation order lifted areas in Futaba town and the Specific Reconstruction and Regeneration Base area [SRRB] in Okuma town), only minor temporal changes were seen in the ambient dose and detection rate of radiocesium (the proportion of radiocesium detected points per all measuring points) in those areas, respectively. These findings suggest that the observed variations may result from physical decay and environmental remediation. Resuspension caused by human activities and weather could also affect the detection rate of radiocesium. The annual external effective doses in Futaba town and Okuma town were estimated to be at a limited level (< 1 mSv/year). Nevertheless, to help ensure the safety and future prosperity of residents and communities in the affected areas around the FDNPP, long-term follow-up monitoring of temporal exposure dose levels during the recovery and reconstruction phases is extremely important.


Subject(s)
Fukushima Nuclear Accident , Radiation Exposure , Radiation Monitoring , Radioactivity , Humans , Nuclear Power Plants , Radiation Exposure/analysis , Japan , Cesium Radioisotopes/analysis
20.
Radiat Prot Dosimetry ; 199(18): 2238-2243, 2023 Nov 02.
Article in English | MEDLINE | ID: mdl-37934981

ABSTRACT

X-rays are widely used in interventional cardiology (IC). Medical staff is exposed to ionising radiations with difficulties to accurately estimate the absorbed dose, on the other hand, it is well known that eye lens and extremities are the most exposed. In most IC units, radiological monitoring is performed by measuring the personal dose equivalent with a dosemeter worn under the operator's apron. The ambient dose equivalent is, usually, also measured. Furthermore, doses to the lens and extremities are often not measured because of the absence or difficulty of wearing the appropriate dosemeters. The main aim of our study is to estimate the extremities doses, of the interventional cardiologists, from the personal dose equivalent, the patient's received doses or to the ambient dose equivalent. For this purpose, we use a radiological monitoring, of four (04) interventional cardiologists, carried out at Algiers hospital. A Monte Carlo calculation is performed for comparison. This paper reports the preliminary results of this study.


Subject(s)
Cardiology , Lens, Crystalline , Occupational Exposure , Radiation Exposure , Humans , Radiation Dosage , Radiology, Interventional/methods , Cardiology/methods , Extremities , Radiation Exposure/analysis , Occupational Exposure/analysis
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