Chen Ziman,Huang Meiping,Luo Chun,Huang Sifan,Tan Wenkai,Liu Yongdong,Hu Tianyu.Analysis of radiation dose to operators involved in coronary angiography with radiation protection shields: a phantom study[J].Chinese Journal of Radiological Medicine and Protection,2015,35(8):623-627
Analysis of radiation dose to operators involved in coronary angiography with radiation protection shields: a phantom study
Received:January 05, 2015  
DOI:10.3760/cma.j.issn.0254-5098.2015.08.016
KeyWords:Coronary angiography  Radiation dose  Radiation protection
FundProject:NSFC-广东联合基金重点支持项目(U1401255);国家"十二五"科技支撑计划项目(2011BAI11B22);广东省科技支撑计划项目(2009B030801257,2013B031800006)
Author NameAffiliationE-mail
Chen Ziman Shantou University Medical College, Shantou 515041, China  
Huang Meiping 广东省心血管病研究所 广东省人民医院 广东省医学科学院 广东省冠心病防治研究重点实验室 huangmeiping@126.com 
Luo Chun 广东省心血管病研究所 广东省人民医院 广东省医学科学院 广东省冠心病防治研究重点实验室  
Huang Sifan 西门子(中国)有限公司  
Tan Wenkai 广东省心血管病研究所 广东省人民医院 广东省医学科学院 广东省冠心病防治研究重点实验室  
Liu Yongdong 广东省心血管病研究所 广东省人民医院 广东省医学科学院 广东省冠心病防治研究重点实验室  
Hu Tianyu 广东省心血管病研究所 广东省人民医院 广东省医学科学院 广东省冠心病防治研究重点实验室  
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Abstract::
      Objective To measure the dose to the primary operator and assistant operators by employing eight beam projections commonly used in coronary angiography with and without radiation protection shields in order to supply helpful guidance on radiation protection in cardiac intervention. Methods From 20 to 180 cm above the ground at the primary and assistant operators' locations, a DoseAware personal dose meter was placed in terms of an increment of 20 cm to measure radiation dose. Eight commonly used beam projections were performed, including LAO (left anterior oblique) 45°, RAO (right anterior oblique) 30°, CRAN (cranial)25°, cranial LAO (LAO45°/25°), caudal LAO(LAO45°/25°), CAUD(caudal)25°, cranial RAO(RAO30°/25°), caudal RAO (caudal RAO30°/25°). Under the two different conditions, with or without radiation protection shields, the doses to the operators in the selected beam projections were respectively recorded at nine measuring positions and the shielding factor were calculated. Results The primary operator was effectively protected with radiation protection shields. In the standing area of the primary operator, except for the position at the height of 120 cm (radiation dose rate: 0.35-4.78 mSv/h; shielding factor: 27.67%-89.33%), the shielding factor for each measuring position was above 91%. Higher radiation doses were found at caudal LAO, LAO, and cranial LAO. The shielding factor for the assisting operator was lower than for the primary operator. In the standing area of the assisting operator (radiation dose rate: 0.27-1.86 mSv/h; shielding factor: 30.34%-92.13%), the peak levels were found at the height of 80, 100, 140 cm. And caudal RAO, caudal LAO, CRAN, LAO were found to have received higher radiation doses. Conclusions Emphasis should be attached to the use of radiation shields in coronary angiography. With radiation protection shields, higher dose is still recorded in caudal LAO, LAO, cranial LAO, caudal RAO. Furthermore, it should be paid more attention to radiation protection at 80-140 cm height, and less prolonged exposure should be employed in those beam projections mentioned above.
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