Beam Collimation during Lumbar Spine Radiography: A Retrospective Study

Collimating the primary beam to the area of diagnostic interest (ADI) has been strongly recommended as an effective method to reduce patient's radiation dose and to improve image quality during radiology practice. Lack or inadequate collimation results in excessive radiation dose to patients an...

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Veröffentlicht in:Journal of biomedical physics and engineering 2017-06, Vol.7 (2), p.101-106
Hauptverfasser: Karami, V, Zabihzadeh, M
Format: Artikel
Sprache:eng
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Zusammenfassung:Collimating the primary beam to the area of diagnostic interest (ADI) has been strongly recommended as an effective method to reduce patient's radiation dose and to improve image quality during radiology practice. Lack or inadequate collimation results in excessive radiation dose to patients and deterioration image quality. To assess the quality of beam collimation during lumbar spine radiography at two general hospitals in Ahvaz, Iran. We retrospectively reviewed 830 digital antero-posterior (AP) lumbar spine radiographs in term of beam collimation. For each radiograph, the distance between current and optimal collimation was calculated (in cm). The area of ADI and total field size for each radiograph were also calculated (in cm ). The total mean ADI and irradiated region outside ADI for each radiograph were estimated 360 and 454 cm , respectively. The total irradiated region outside ADI was 1.26 times more than ADI. In contrast to cranial regions outside ADI, caudal regions were more commonly included inside the primary beam (12% vs. 24.4%; P-value
ISSN:2251-7200
2251-7200