1.Study on protective effect of medical X-ray diagnosis equipment based on risk analysis of correlation
Lin SONG ; Jun HAN ; Weijie ZHU ; Bin BAI ; Debiao YAO ; Yongzhong MA
China Medical Equipment 2025;22(5):99-104
Objective:To formulate refined management strategies to improve the operation quality and protective effect of medical X-ray diagnosis equipment based on the risk analysis of the correlation of medical X-ray diagnostic equipment.Methods:The used 41 medical X-ray diagnosis equipment in Fuwai Hospital,Chinese Academy of Medical Sciences from January 2022 to December 2023 were selected.According to different management modes for equipment,they were managed respectively by the conventional management mode(20 units)and the management mode with risk analysis of the correlation(21 units).The risk grades of correlation of management mode with risk analysis of the correlation were classified on the basis of the probability of risk and the degree of harm in medical X-ray diagnosis equipment.The protection management of equipment was conducted from three aspects included the location of equipment,the staffs and subjects.A self-made questionnaire was used to investigate the satisfactions of engineers of using management for equipment,operators,and staffs of operating and maintaining equipment for the two kinds of management modes.The protection quality,failure rate of equipment,and qualification rate of protection of medical X-ray diagnosis equipment under different management modes were compared.Results:The quality scores of operation safety,regular inspection,maintenance and repair,and shielding protection for radiation of medical X-ray diagnosis equipment that adopted the management mode with risk analysis of the correlation were respectively(92.14±3.36),(91.47±2.41),(92.54±3.32)and(91.69±3.57)points,all of which were higher than those of the conventional management mode,and the differences of them were statistically significant(t=16.396,17.368,19.688,14.401,P<0.05).The failure rate of the 21 medical X-ray diagnosis equipment that adopted the management mode with risk analysis of correlation was 0,which was lower than 20.00%of the conventional management mode.The qualified rate of protection was 95.23%,which was higher than 70.00%of the conventional management mode,and the differences of them were statistically significant(x2=4.654,4.608,P<0.05).The satisfaction scores of engineers of using equipment,operators and staffs of operating and maintaining equipment for the protective effect of adopting the management mode with risk analysis of correlation were respectively(94.69±4.02),(93.21±4.36)and(92.54±3.47)points,all of which were higher than those of the conventional management mode,and the differences were statistically significant(t=16.902,11.291,12.020,P<0.05).Conclusion:The process-based protection management strategy on the basis of risk analysis of correlation for medical X-ray diagnosis equipment can prevent risks of medical X-ray diagnostic equipment,and improve the operation quality of the equipment,and reduce the operation risks of the equipment,and maximize the enhancement for management quality of medical X-ray diagnosis equipment.
2.Study on protective effect of medical X-ray diagnosis equipment based on risk analysis of correlation
Lin SONG ; Jun HAN ; Weijie ZHU ; Bin BAI ; Debiao YAO ; Yongzhong MA
China Medical Equipment 2025;22(5):99-104
Objective:To formulate refined management strategies to improve the operation quality and protective effect of medical X-ray diagnosis equipment based on the risk analysis of the correlation of medical X-ray diagnostic equipment.Methods:The used 41 medical X-ray diagnosis equipment in Fuwai Hospital,Chinese Academy of Medical Sciences from January 2022 to December 2023 were selected.According to different management modes for equipment,they were managed respectively by the conventional management mode(20 units)and the management mode with risk analysis of the correlation(21 units).The risk grades of correlation of management mode with risk analysis of the correlation were classified on the basis of the probability of risk and the degree of harm in medical X-ray diagnosis equipment.The protection management of equipment was conducted from three aspects included the location of equipment,the staffs and subjects.A self-made questionnaire was used to investigate the satisfactions of engineers of using management for equipment,operators,and staffs of operating and maintaining equipment for the two kinds of management modes.The protection quality,failure rate of equipment,and qualification rate of protection of medical X-ray diagnosis equipment under different management modes were compared.Results:The quality scores of operation safety,regular inspection,maintenance and repair,and shielding protection for radiation of medical X-ray diagnosis equipment that adopted the management mode with risk analysis of the correlation were respectively(92.14±3.36),(91.47±2.41),(92.54±3.32)and(91.69±3.57)points,all of which were higher than those of the conventional management mode,and the differences of them were statistically significant(t=16.396,17.368,19.688,14.401,P<0.05).The failure rate of the 21 medical X-ray diagnosis equipment that adopted the management mode with risk analysis of correlation was 0,which was lower than 20.00%of the conventional management mode.The qualified rate of protection was 95.23%,which was higher than 70.00%of the conventional management mode,and the differences of them were statistically significant(x2=4.654,4.608,P<0.05).The satisfaction scores of engineers of using equipment,operators and staffs of operating and maintaining equipment for the protective effect of adopting the management mode with risk analysis of correlation were respectively(94.69±4.02),(93.21±4.36)and(92.54±3.47)points,all of which were higher than those of the conventional management mode,and the differences were statistically significant(t=16.902,11.291,12.020,P<0.05).Conclusion:The process-based protection management strategy on the basis of risk analysis of correlation for medical X-ray diagnosis equipment can prevent risks of medical X-ray diagnostic equipment,and improve the operation quality of the equipment,and reduce the operation risks of the equipment,and maximize the enhancement for management quality of medical X-ray diagnosis equipment.
3.Biliary stenting combined with 125I seed implantation intracavitary irradiation for the treatment of malignant obstructive jaundice
Hongxiang YAO ; Gensheng CHEN ; Guanxiong YE ; Shengqian XU ; Chengjun WU ; Yong QIN ; Debiao PAN ; Qun ZENG ; Ye CHEN ; Pengzhao ZHANG
Journal of Interventional Radiology 2014;23(10):893-896
Objective To discuss the method, safety and clinical value of biliary stenting combined with 125I seed implantation intracavitary irradiation in treating malignant obstructive jaundice. Methods A total of 36 patients with malignant obstructive jaundice were enrolled in this study. PTCD was carried out in all patients, which was followed by biliary stenting combined with 125I seed implantation intracavitary irradiation treatment. The results were analyzed. Results During the interventional management, displacement of the stent and 125I seeds were observed in two cases, and the displaced stent and 125I seeds were replaced to the right position with the help of biliary biopsy forceps. The technical success rate was 100%, and the remission rate of the jaundice was 100%. All the patients were followed up for 1-23 months. No radioactive particles leaking or complications such as radiation enteritis occurred. No in-stent obstruction due to tumor recurrence was observed although slight dilatation of intrahepatic bile duct was detected in 25%of patients, which was resulted from intimal hyperplasia at the stent mesh and/or biliary stone formation. The median survival time was 10.9 months. Conclusion For the treatment of malignant obstructive jaundice, biliary stenting combined with 125I seed implantation intracavitary irradiation is safe, reliable and effective. This technique can prolong stent patency time as well as the patient’s survival time.

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