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1.
Chinese Journal of Radiological Health ; (6): 167-170, 2023.
Article in Chinese | WPRIM | ID: wpr-973172

ABSTRACT

@#<b>Objective</b> To investigate the effects of low-dose nuclear radiation exposure on the body by analyzing the antioxidant indices, immune indices, lymphocyte proliferation activity, and blood biochemical indices of persons exposed to long-term low-dose nuclear radiation, and to provide a basis for radiation protection and occupational health monitoring. <b>Methods</b> Eighty nuclear radiation workers were selected as the exposure group, and another 30 non-exposure personnel were selected as the control group. In both groups, blood biochemistry, serum total antioxidant capacity (T-AOC), malondialdehyde (MDA), glutathione peroxidase (GSH-Px), superoxide dismutase (SOD), lymphocyte proliferation activity, proliferating cell nuclear antigen (PCNA), apoptosis factors Bcl-2 and Bax, lymphocyte transformation rate, and lymphocyte micronucleus rate were measured. <b>Results</b> Compared with the control group, T-AOC, GSH-Px, SOD, cell proliferation activity, PCNA, Bcl-2, lymphocyte transformation rate, white blood cell count, and platelet count in the exposure group were significantly decreased, while MDA and Bax were significantly increased (<i>P</i> < 0.05). The lymphocyte micronucleus rate showed no significant difference between the two groups (<i>P</i> > 0.05). <b>Conclusion</b> Long-term low-dose exposure to nuclear radiation has certain effects on related indices of workers, but does not cause significant damage. The personnel exposed to nuclear radiation should enhance the awareness of protection and strengthen scientific protection to reduce radiation damage.

2.
Chinese Journal of Radiological Health ; (6): 201-204, 2021.
Article in Chinese | WPRIM | ID: wpr-974144

ABSTRACT

Objective To study the personnel composition, task, equipment and management of the national health emergency teams for radiological or nuclear emergency. Methods According to the responsibility and task division of the health emergency team for nuclear radiation emergencies, the national medical rescue team for nuclear radiation health emergency was established and equipped, and the management work such as training and exercise was carried out based on the potential scenario during a nuclear or radiological emergency. Results The national health emergency team for radiological or nuclear emergency was composed of professionals in the fields of radiation protection and monitoring, medical treatment, internal and external contamination treatment, food and drinking water testing, management personnel and logistics support personnel. Training and exercises is an important means to determine whether the technical capability and the equipment of the team are reasonable. Conclusion Standardized equipment and management of the emergency teamscouldensure the rapid response and efficient implementation of nuclear radiation health emergency work in all kinds of natural disasters and public health emergencies.

3.
Chinese Journal of Radiological Medicine and Protection ; (12): 711-715, 2021.
Article in Chinese | WPRIM | ID: wpr-910382

ABSTRACT

Internal contamination of radionuclides in the event of nuclear emergencies can lead to serious harm to human health. The research and development of radionuclide chelating agents and the application of new technologies can reduce the internal damage caused by radionuclides. Compared with traditional preparations, the nano-preparations have the advantages of improving drug dissolution, targeting and positioning drug release, and easily passing through biofilm barrier. In recent years, many scholars have used different nano-preparation forms for different decorporation drugs, including nanoparticles, nano-liposomes, nano-emulsions, etc., to conduct related research in order to achieve better clinical application effects. Nanomaterials with excellent properties have the advantages of high efficiency, rapid adsorption and high biocompatibility, etc., and have been used more and more widely in radionuclide decorporation. In this paper, combined with the relevant literatures at home and abroad, the internal contamination of radionuclides is classified according to nuclide-deposited sites of tissues and organs, and the applications of related nanoformulations and nanomaterials in radionuclide decorporation are introduced in order to provide reference for further research.

4.
Chinese Medical Equipment Journal ; (6): 16-20, 2017.
Article in Chinese | WPRIM | ID: wpr-509939

ABSTRACT

Objective To research and design-an personal dosimeter system to provide data for nuclear radiation injury protection.Methods The overall architecture,hardware module and software of the system were designed with ZigBee wireless network technology and the principle.The system was composed of a terminal node,a router and a coordinator.Results The system could collect the information on nuclear radiation dosage of the serviceman within 1 km,and then the data were uploaded with the wireless network.Conclusion The system gains advantages in low power consumption,low cost,low interference and etc,and plays a very important role for commander to hold the combatants' nuclear radiation dose in the battlefield.In addition the system can also be applied in civilian field to enhance the personal dose management.

5.
China Medical Equipment ; (12): 8-9, 2014.
Article in Chinese | WPRIM | ID: wpr-443965

ABSTRACT

Objective:To explore the SPECT detection method of quality control in detection of main performance index. Methods: according to the 2007 edition of SPECT performance measurementof the NEMA (the United States Electrical Manufacturers Association) standard, and the corresponding model of intrinsic spatial resolution, intrinsic spatial non-linearity, intrinsic non-uniformity, characteristic count rate, system planar sensitivity, system spatial resolution, fault spatial resolution and other indicators. Results: after quality control testing, have deviation more index hospitals SPECT results. Conclusion: the hospital should detect quality control as far as possible in nuclear medicine and nuclear medicine imaging equipment, ensure the normal operation of equipment, and improve the quality of image.

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