Literature DB >> 11560832

Application of European Commission reference dose levels in CT examinations in Crete, Greece.

V Tsapaki1, S Kottou, D Papadimitriou.   

Abstract

The purpose of this study was to apply European Commission reference dose levels (EC RDLs) to routine CT examinations. The dosimetric quantities proposed in the European Guidelines (EG) for CT are weighted computed tomography dose index (CTDI(w)) for a single slice and dose-length product (DLP) for a complete examination. Patient-related data as well as technical parameters for brain, chest, abdomen and pelvis examinations were collected for four CT scanners in the Euromedica Medical Center. Computed tomography dose index (CTDI) measurements were performed on each scanner and CTDI(w), DLP and effective dose E were estimated for each type of examination for a random sample of 10 typical patients. Mean values of CTDI(w) had a range of 27.0-52.0 mGy for brain and 13.9-26.9 mGy for chest, abdomen and pelvis examinations. Mean values of DLP had a range of 430-758 mGy cm for brain, 348-807 mGy cm for chest, 278-582 mGy cm for abdomen and 306-592 mGy cm for pelvis examinations. Mean values of E were 1.4 mSv for brain, 10.9 mSv for chest, 7.1 mSv for abdomen and 9.3 mSv for pelvis examinations. Results confirm that the Euromedica Medical Center meets EC RDLs for brain, abdomen and pelvis examinations, in terms of radiation dose and examination technique. As far as chest examination is concerned, although CTDI(w) of each scanner is within proposed values, the DLP is consistently exceeded, probably because of the large irradiation volume length L. It is anticipated that a reduction of L, or product mAs, or their combination, will reduce DLP without affecting image quality.

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Year:  2001        PMID: 11560832     DOI: 10.1259/bjr.74.885.740836

Source DB:  PubMed          Journal:  Br J Radiol        ISSN: 0007-1285            Impact factor:   3.039


  7 in total

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2.  Survey of computed tomography techniques and absorbed dose in Italian hospitals: a comparison between two methods to estimate the dose-length product and the effective dose and to verify fulfilment of the diagnostic reference levels.

Authors:  Daniela Origgi; Sabrina Vigorito; Gaetano Villa; Massimo Bellomi; Giampiero Tosi
Journal:  Eur Radiol       Date:  2005-02-12       Impact factor: 5.315

3.  Inadvertent thyroid irradiation in protocol-driven trauma CT: a survey of hospital ERs.

Authors:  Stephen R Baker; Yih-Hann H Hsieh; Pierre D Maldjian; Michael T Scanlan
Journal:  Emerg Radiol       Date:  2009-01-09

4.  Radiation dose reduction in hepatic multidetector computed tomography with a novel adaptive noise reduction filter.

Authors:  Yoshinori Funama; Kazuo Awai; Osamu Miyazaki; Taiga Goto; Yoshiharu Nakayama; Masamitchi Shimamura; Kumiko Hiraishi; Shinichi Hori; Yasuyuki Yamashita
Journal:  Radiat Med       Date:  2008-04

5.  Dose management in CT facility.

Authors:  V Tsapaki; M Rehani
Journal:  Biomed Imaging Interv J       Date:  2007-04-01

6.  Evaluation of radiation doses delivered in different chest CT protocols.

Authors:  Tomasz Gorycki; Iwona Lasek; Kamil Kamiński; Michał Studniarek
Journal:  Pol J Radiol       Date:  2014-01

7.  Radiation Exposure of Patients by Cone Beam CT during Endobronchial Navigation - A Phantom Study.

Authors:  Wolfgang Hohenforst-Schmidt; Rosemarie Banckwitz; Paul Zarogoulidis; Thomas Vogl; Kaid Darwiche; Eugene Goldberg; Haidong Huang; Michael Simoff; Qiang Li; Robert Browning; Lutz Freitag; J Francis Turner; Patrick Le Pivert; Lonny Yarmus; Konstantinos Zarogoulidis; Johannes Brachmann
Journal:  J Cancer       Date:  2014-02-06       Impact factor: 4.207

  7 in total

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