Simulated experimental measurement of exposure dose to patients from endoscopic retrograde cholangiopancreatography operation

Jian-guo Zhu, Tao Wang, Shuhui Yang, Lin Zhang, Fei Niu, Nan Min
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Abstract

Objective To estimate the doses to patients from ERCP operation through experimental measurements. Methods A retrospective analysis was made of 56 ERCP operations in three hospitals, and meanwhile, the tube voltage and current, fluoroscopy time, accumulated doses, DAPs (dose-area product) and photographic frames were also recorded for statistical analysis. Three cases of RECP operation that had led to high, medium and low DAP values were selected, respectively, as high, medium and low dose groups based on anthropomorphic phatom (AP). ERCP operation was simulated on AP on the basis of putting TLDs in it. The absorbed doses of organs were measured while effective doses while calculated. Results The effective doses for high, medium and low groups were 2.69, 11.52 and 39.27 mSv, respectively. The effective dose was 14 times higher in high dose group than that in low group. The highest organ doses for three groups were all concentrated in the irradiation fields. Conclusions Organ doses from ERCP phantom experiments vary largely in different groups. Compared with phantom experiments of other interventional types, ERCP can be regarded as one of interventional means leading to high-dose. It is advisable to reasonably and safely use intervention diagnosis and therapy and in order optimize radiation doses to patients. Key words: Endoscopicretrograde(ERCP); Phantom; Dose; Radiation protection
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内镜下逆行胆管造影患者暴露剂量的模拟实验测量
目的通过实验测量,估计ERCP手术对患者的剂量。方法对3家医院56例ERCP手术进行回顾性分析,同时记录管电压电流、透视时间、累积剂量、剂量面积积(DAPs)、相框等进行统计分析。选取3例导致DAP高、中、低的RECP手术病例,根据拟人化光(AP)分别作为高、中、低剂量组。在将tld放入AP的基础上,在AP上模拟了ERCP操作。测量器官吸收剂量,计算有效剂量。结果高、中、低组有效剂量分别为2.69、11.52、39.27 mSv。高剂量组的有效剂量是低剂量组的14倍。三组的最高器官剂量均集中在辐照场。结论ERCP幻像实验各组器官剂量差异较大。与其他介入类型的幻像实验相比,ERCP可视为导致高剂量介入的手段之一。建议合理、安全地进行干预诊断和治疗,以优化对患者的辐射剂量。关键词:内镜逆行;幻影;剂量;辐射防护
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中华放射医学与防护杂志
中华放射医学与防护杂志 Medicine-Radiology, Nuclear Medicine and Imaging
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0.60
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6377
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