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1.
Radiat Prot Dosimetry ; 165(1-4): 111-4, 2015 Jul.
Article in English | MEDLINE | ID: mdl-25836684

ABSTRACT

The purpose of the present study was to present the national diagnostic reference levels (DRL) established for panoramic dental examinations in Greece. The establishment of DRL, as a tool for the optimisation of radiological procedures, is a requirement of national regulations. Measurements performed by the Greek Atomic Energy Commission on 90 panoramic systems have been used for the derivation of DRL values. DRL values have been proposed for exposure settings of different patient types (child, small adult and standard adult), both for film and digital imaging. The DRLs for different patient types are grouped in three categories: children, small adults (corresponding to female) and average adults (corresponding to male). Proposed DRLs for these groups are 2.2, 3.3 and 4.1 mGy, respectively. In order to investigate the correlation of DRLs with the available imaging modalities (CR, DR and film), this parameter was taken into account. DR imaging DRL is the lowest at 3.5 mGy, CR imaging the highest at 4.2 mGy and film imaging at 3.7 mGy. In order to facilitate comparison with other studies, kerma-width product values were calculated from Ki, air and field size.


Subject(s)
Radiography, Dental/standards , Radiography, Panoramic/standards , Adult , Air , Child , Databases, Factual , Female , Film Dosimetry/instrumentation , Film Dosimetry/methods , Greece , Humans , Male , Phantoms, Imaging , Radiation Dosage , Radiation Protection/methods , Radiographic Image Enhancement/methods , Radiographic Image Enhancement/standards , Radiography, Dental/methods , Radiography, Panoramic/methods , Radiometry , Reference Values , X-Rays
2.
Radiat Prot Dosimetry ; 163(3): 319-24, 2015 Feb.
Article in English | MEDLINE | ID: mdl-24891405

ABSTRACT

The purpose of this study is to present a national survey that was performed in Greece for the establishment of national Dose Reference Levels (DRLs) for seven common adult Computed Tomography (CT) examinations. Volumetric computed tomography dose index and dose-length product values were collected from the post-data page of 65 'modern' systems that incorporate tube current modulation. Moreover, phantom dose measurements on 26 'older' systems were performed. Finally, the effective dose to the patient from a typical acquisition during these examinations was estimated. The suggested national DRLs are generally comparable with respective published values from similar European studies, with the exception of sinuses CT, which presents significantly higher values. This fact, along with the large variation of the systems' dose values that were observed even for scanners of the same type, indicates a need for further patient protection optimisation without compromising the clinical outcome.


Subject(s)
Cone-Beam Computed Tomography/statistics & numerical data , Cone-Beam Computed Tomography/standards , Environmental Exposure/analysis , Environmental Exposure/standards , Whole-Body Counting/statistics & numerical data , Whole-Body Counting/standards , Adult , Body Burden , Cone-Beam Computed Tomography/instrumentation , Equipment Design , Equipment Failure Analysis/standards , Greece , Guidelines as Topic , Humans , Male , Phantoms, Imaging/standards , Radiation Dosage , Radiation Protection/standards , Radiation Protection/statistics & numerical data , Reference Values
3.
Radiat Prot Dosimetry ; 156(4): 455-7, 2013 Oct.
Article in English | MEDLINE | ID: mdl-23615358

ABSTRACT

Diagnostic reference levels (DRLs) is a tool for the optimisation of radiological procedures. Establishment of a DRL is a requirement of national regulations. Measurements performed by the Greek Atomic Energy Commission on 529 dental intraoral radiographic facilities have been used in order to define DRLs for digital and film imaging modalities, taking into account the region of the mouth to be imaged. Thus, different DRL values have been proposed for minimum (usually incisors), maximum (usually maxillary molars) and average exposure settings, both for film and digital imaging. The results have been compared with similar studies performed in Europe and the USA and are in line with the most recent ones.


Subject(s)
Radiation Protection/methods , Radiography, Dental/standards , Reference Standards , Film Dosimetry/instrumentation , Film Dosimetry/standards , Greece , Humans , Mandible/diagnostic imaging , Molar/diagnostic imaging , Quality Assurance, Health Care/standards , Radiation Dosage , Radiography, Dental, Digital/standards , Radiometry/instrumentation , Radiometry/standards
4.
Radiat Prot Dosimetry ; 147(1-2): 202-5, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21821614

ABSTRACT

The purpose of this study is to evaluate and compare the performance of 52 full field digital (FFD) and computed radiography (CR) mammography systems checked by the Greek Atomic Energy Commission with respect to dose and image quality. Entrance surface air kerma (ESAK) was measured and average glandular dose (AGD) was calculated according to the European protocol on dosimetry in mammography. The exposures were performed using the clinical protocol of each laboratory. The image quality was assessed by the total score of resolved phantom structures incorporated in an American College of Radiology accreditation phantom. The mean ESAK values for FFD and CR systems were 4.59 ± 1.93 and 5.0 ± 1.78 mGy, respectively, whereas the AGD yielded a mean value of 1.06 ± 0.36 mGy for the FFD and 1.04 ± 0.35 mGy for the CR systems. Considering image quality, FFD systems indicated a mean total score of 13.04 ± 0.89, whereas CR systems a mean total score of 11.54 ± 1.06.


Subject(s)
Breast/radiation effects , Mammography , Radiographic Image Enhancement , Tomography, X-Ray Computed , Breast/pathology , Female , Greece , Humans , Phantoms, Imaging , Radiation Dosage
5.
Radiat Prot Dosimetry ; 129(4): 419-25, 2008.
Article in English | MEDLINE | ID: mdl-17971345

ABSTRACT

This study presents the results from a survey conducted by the Greek Atomic Energy Commission (GAEC), during the period 1998-2003, in 530 public and private owned fluoroscopic X-ray systems in Greece. Certain operational parameters for conventional and remote control systems were assessed, according to a quality control protocol developed by GAEC on the basis of the current literature. Public (91.5%) and private (81.5%) owned fluoroscopic units exhibit high-contrast resolution values over 1 lp mm(-1). Moreover, 88.5 and 87.1% of the fluoroscopic units installed in the public and private sector, respectively, present Maximum Patient Entrance Kerma Rate values lower than 100 mGy min(-1). Additionally, 68.3% of the units assessed were found to perform within the acceptance limits. Finally, the third quartile of the Entrance Surface Dose Rate distribution was estimated according to the Dose Reference Level definition and found equal to 35 mGy min(-1).


Subject(s)
Fluoroscopy/methods , Fluoroscopy/standards , Radiation Dosage , Greece , Humans , Private Sector , Public Sector , Quality Control , Radiographic Image Interpretation, Computer-Assisted/instrumentation , Radiographic Image Interpretation, Computer-Assisted/methods
6.
Phys Med ; 23(3-4): 107-14, 2007 Dec.
Article in English | MEDLINE | ID: mdl-18023226

ABSTRACT

This study presents the results of the on-site inspections performed by the Greek Atomic Energy Commission (GAEC) on conventional X-ray systems, both in public and private medical radiology departments. A part of the inspection concerns the assessment of important radiographic parameters obtained according to a specified quality control protocol and the comparison of the measured parameter values with the corresponding acceptance limits. A total number of 1011 radiographic systems were inspected by the GAEC during the period 1998-2004, with 63.4% of them being privately owned. Analysis of 8 different operational parameters is carried out providing information on the overall performance, as well as on each parameter of the inspected X-ray systems. Tube voltage reproducibility values show the highest percentage of acceptability (98.9%, 99.5% for private and public owned radiographic systems respectively), while linearity of radiation output for private systems (72.5%) and time accuracy for public ones (72.7%) show the worst results. The comparison of the results for the private sector to those of a similar study carried out during the period 1995-1997 indicates a substantial improvement in X-ray systems performance. Higher level of improvement shows exposure time accuracy (12.2% percentile increase) and linearity of radiation output (12.5% percentile increase). Nevertheless, the situation can be further optimized if maintenance and quality control of the radiographic systems are carried out on a more regular basis.


Subject(s)
Radiography/methods , Radiography/standards , Advisory Committees/legislation & jurisprudence , Greece , Humans , Private Sector , Public Sector , Reproducibility of Results , Sensitivity and Specificity , Time Factors
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