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1.
Clin Radiol ; 73(7): 677.e13-677.e20, 2018 07.
Artículo en Inglés | MEDLINE | ID: mdl-29567269

RESUMEN

AIM: To evaluate the implementation of the updated computed tomography (CT) diagnostic reference levels (DRLs) from the German Federal Office for Radiation Protection into clinical routine using an automatic CT dose monitoring system. METHODS AND MATERIALS: CT radiation exposure was analysed before and after implementing the updated national DRLs into routine clinical work in 2016. After the implementation process, institutional CT protocols were mapped to the anatomical regions for which DRLs were provided. Systematically, protocols that exceeded the thresholds were optimised and analysed in detail. The CT radiation output parameters analysed were volumetric CT dose index (CTDIvol) and dose-length product (DLP). Three radiologists evaluated subjective image quality using a three-point Likert scale. RESULTS: The study included 94,258 CT series (from 27,103 CT examinations) in adult patients performed in 2016. When averaged over all body regions with available DRL, institutional CTDIvol/DLP values were always below the DRLs (65.2±32.9%/67.3±41.5% initially; 59.4±32%/60.5±39.9% after optimisation). Values exceeding the national DRLs were found for pelvis (n=268; CTDIvol 107.7±65.7%/DLP 106.3±79.3%), lumbar spine (n=91; 160.8±74.7%/175.2±104.1%), and facial bones (n=527; 108±39%/152.7±75.7%). After optimisation, CTDIvol and DLP were 87.9±73%/87.8±80.8% for the pelvis, 67.8±33.2%/74.5±50.6% for the lumbar spine and 95.1±45.8%/133.3±74.6% for the viscerocranium. CONCLUSION: An automatic CT dose monitoring system enabled not only comprehensive monitoring of a DRL implementation process but can also help to optimise radiation exposure.


Asunto(s)
Garantía de la Calidad de Atención de Salud/métodos , Garantía de la Calidad de Atención de Salud/estadística & datos numéricos , Dosis de Radiación , Exposición a la Radiación/normas , Tomografía Computarizada por Rayos X/normas , Adulto , Humanos , Exposición a la Radiación/estadística & datos numéricos , Valores de Referencia , Estudios Retrospectivos , Tomografía Computarizada por Rayos X/estadística & datos numéricos
2.
Rofo ; 188(5): 443-50, 2016 May.
Artículo en Inglés | MEDLINE | ID: mdl-27124508

RESUMEN

UNLABELLED: The number of computed tomography examinations has continuously increased over the last decades and accounts for a major part of the collective radiation dose from medical investigations. For purposes of quality assurance in modern radiology a systematic monitoring and analysis of dose related data from radiological examinations is mandatory. Various ways of collecting dose data are available today, for example the Digital Imaging and Communication in Medicine - Structured Report (DICOM-SR), optical character recognition and DICOM-modality performed procedure steps (MPPS). The DICOM-SR is part of the DICOM-standard and provides the DICOM-Radiation Dose Structured Report, which is an easily applicable and comprehensive solution to collect radiation dose parameters. This standard simplifies the process of data collection and enables comprehensive dose monitoring. Various commercial dose monitoring software devices with varying characteristics are available today. In this article, we discuss legal obligations, various ways to monitor dose data, current dose monitoring software solutions and future perspectives in regard to the EU Council Directive 2013/59/EURATOM. KEY POINTS: • Automated, systematic dose monitoring is an important element in quality assurance of radiology departments. • DICOM-RDSR-capable CT scanners facilitate the monitoring of dose data. • A variety of commercial and non-commercial dose monitoring software tools are available today. • Successful dose monitoring requires comprehensive infrastructure for monitoring, analysing and optimizing radiation exposure. Citation Format: • Boos J, Meineke A, Bethge OT et al. Dose Monitoring in Radiology Departments: Status Quo and Future Perspectives. Fortschr Röntgenstr 2016; 188: 443 - 450.


Asunto(s)
Recolección de Datos/tendencias , Monitoreo de Radiación/métodos , Servicio de Radiología en Hospital , Sistemas de Información Radiológica/tendencias , Tomografía Computarizada por Rayos X/estadística & datos numéricos , Procesamiento Automatizado de Datos/tendencias , Predicción , Humanos , Garantía de la Calidad de Atención de Salud/tendencias , Servicio de Radiología en Hospital/tendencias , Programas Informáticos/tendencias , Tomografía Computarizada por Rayos X/tendencias , Revisión de Utilización de Recursos , Adulto Joven
3.
Radiologe ; 54(4): 359-62, 2014 Apr.
Artículo en Alemán | MEDLINE | ID: mdl-24549740

RESUMEN

(DICOM E-MAIL provides a standardized way for exchanging DICOM objects (Digital Imaging and Communications in Medicine) and further relevant patient data for the treatment context reliably and securely via encrypted e-mails. The current version of the DICOM E-MAIL standard recommendations of the"Deutsche Röntgengesellschaft" (DRG, German Röntgen Society) defines for the first time options for setting up a special directory service for the provision and distribution of communication data of all participants in a network. By using such"telephone books", networks of any size can be operated independent of the provider. Compared to a Cross-Enterprise Document Sharing (XDS) scenario, the required infrastructure is considerably less complex and quicker to realize. Critical success factors are, in addition to the technology and an effective support, that the participants themselves contribute to the further development of the network and in this way, the network approach can be practiced.


Asunto(s)
Redes Comunitarias/organización & administración , Correo Electrónico/organización & administración , Sistemas de Información Radiológica/organización & administración , Derivación y Consulta/organización & administración , Telerradiología/organización & administración , Alemania , Difusión de la Información/métodos
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