NATIONAL DIAGNOSTIC REFERENCE LEVELS AND ACHIEVABLE DOSES FOR STANDARD CT EXAMINATIONS IN SUDAN

Author:

Suliman I I12ORCID,Bashier Einas H2ORCID,Awad Mustafa2,Ahmed Ibrahim2,Mohamed Suhair2,Ahmed Nada A23

Affiliation:

1. Imam Mohammad Ibn Saud Islamic University (IMSIU), College of Science, Department of Physics, Riyadh 11642, Saudi Arabia

2. Sudan Atomic Energy Commission, Radiation and Nuclear Safety Institute, PO Box 3001, Khartoum, Sudan

3. Taibah University, Faculty of Science, P.O. Box 344, Al-Madinah, Saudi Arabia

Abstract

ABSTRACT Radiation doses were determined to propose national diagnostic reference levels (NDRLs) and achievable doses (ADs) for computed tomography (CT) examinations in Sudan. Doses were estimated from retrospectively collected scan parameters for 1336 CT examinations of adult patients from 14 Sudanese hospitals using CT Expo 2.5 software. ADs and NDRLs were set at the 50th and 75th percentile of the hospital median dose distribution, respectively. The proposed CTDIvol (mGy) ADs ranged from: 10 (chest) to 64 (head), and that of the dose-length product (DLP; mGy.cm) ranged from 366 (chest) to 1225 (head). The proposed CTDIvol (mGy) NDRLs ranged from 15 kidney–ureter–bladder (KUB) to 79 (head), whereas that of the DLP (mGy.cm) ranged from 690 (chest) to 1490 (head). Current doses fell within the upper range of the doses presented in the literature emphasizing the need for implementation of the current ADs and NDRLs for CT to enhance patient protection and dose optimization in Sudan.

Funder

Government of Sudan though the Sudan Atomic Energy Commission

Publisher

Oxford University Press (OUP)

Subject

Public Health, Environmental and Occupational Health,Radiology, Nuclear Medicine and imaging,General Medicine,Radiation,Radiological and Ultrasound Technology

Reference34 articles.

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2. Comparison of central, peripheral, and weighted size-specific dose in CT;Anam;J. Xray Sci. Technol.,2020

3. International Commission on Radiation Protection. Managing patient dose in multi-detector computed tomography (MDCT);Valentine;ICRP Publication,2007

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