Literature DB >> 15151968

Optimization of radiographic parameters for paediatric cardiac angiography.

D G W Onnasch1, A Schemm, H-H Kramer.   

Abstract

In the paediatric cardiac catheterization laboratory the reduction of the radiation dose of diagnostic and interventional procedures is of high priority. Therefore, we performed an experimental study for optimizing the automatic exposure control (AEC) for cardiac angiography. With a Philips Integris BH 5000 system, six AEC programs were configured to acquire X-ray images of 8 cm to 18.5 cm thick PMMA phantoms at tube voltages between 50 kV and 90 kV, with 0.2 mm or 0.4 mm Cu filters and with or without an anti-scatter grid. At constant detector dose, entrance dose (ED) and image quality were evaluated as functions of the voltage. Changes in image quality were determined by the differential signal-to-noise ratio measured within regions of low (SNRb) and high (SNRd) attenuation. At equal voltages, ED saving was approximately 29% with the 0.4 mm Cu beam filtering as compared with 0.2 mm Cu, largely independent of object thickness. SNRb and SNRd were only dependent on the voltage. While SNRb was high at low voltages, SNRd showed a maximum at approximately 79 kV. Using a grid, ED increased with increasing object thickness by a factor of 1.9 to 3.5. At equal voltages, the grid led to significant image improvements, with SNRb and SNRd increasing by 27% and 11%, respectively. SNRb and SNRd are useful descriptors of the image quality in cardiac angiography. Highest image quality was found with tube voltages between 55 kV and 77 kV, independently of object thickness. To minimize dose, the thickness of the copper filter should be chosen to be as large as possible provided the tube's power limit allows keeping the voltage below the upper limit. In view of the substantial image improvement, the use of a grid is recommended for all patients, even for newborns.

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Year:  2004        PMID: 15151968     DOI: 10.1259/bjr/99356178

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


  5 in total

1.  Radiation dose reduction without compromise of image quality in cardiac angiography and intervention with the use of a flat panel detector without an antiscatter grid.

Authors:  J Partridge; G McGahan; S Causton; M Bowers; M Mason; M Dalby; A Mitchell
Journal:  Heart       Date:  2005-09-13       Impact factor: 5.994

2.  Removal of Antiscatter Grids for Spinal Digital Subtraction Angiography: Dose Reduction without Loss of Diagnostic Value.

Authors:  Emanuele Orrù; Amgad El Mekabaty; Diego San Millan; Monica S Pearl; Philippe Gailloud
Journal:  Radiology       Date:  2020-03-03       Impact factor: 11.105

3.  Radiation Reduction Capabilities of a Next-Generation Pediatric Imaging Platform.

Authors:  Luke J Lamers; Martine Moran; Jenna N Torgeson; John S Hokanson
Journal:  Pediatr Cardiol       Date:  2015-07-28       Impact factor: 1.655

4.  Optimized Fluoroscopy Setting and Appropriate Project Position Can Reduce X-ray Radiation Doses Rates during Electrophysiology Procedures.

Authors:  Bing-Bo Hou; Yan Yao; Ling-Min Wu; Yu Qiao; Li-Hui Zheng; Li-Gang Ding; Gang Chen; Shu Zhang
Journal:  Chin Med J (Engl)       Date:  2015-05-05       Impact factor: 2.628

5.  Investigation of grid performance using simple image quality tests.

Authors:  Dogan Bor; Ozlem Birgul; Umran Onal; Turan Olgar
Journal:  J Med Phys       Date:  2016 Jan-Mar
  5 in total

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