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1.
Chinese Journal of Radiological Health ; (6): 153-156, 2022.
Article in Chinese | WPRIM | ID: wpr-973472

ABSTRACT

@#<b>Objective</b> To investigate the dose level of pediatric CT scan in one hospital, and to provide recommendations for optimized scanning. <b>Methods</b> The CT scan data of children were collected from this hospital to analyze the differences in typical dose values and typical scanning parameters between different age groups and different scanning parts. <b>Results</b> The sample size was >10 for routine cranial scan, routine maxillary sinus scan, and routine chest scan in each age group, and the 1-year-old group and the 5-year-old group had the same kV, mA, and CTDIvol values of routine cranial scan and maxillary sinus scan, but with relatively great differences in the parameters of chest scan. <b>Conclusion</b> Scanning parameters in this hospital can be further optimized, and optimization measures should be adopted continuously.

2.
Chinese Journal of Radiological Health ; (6): 638-642, 2021.
Article in Chinese | WPRIM | ID: wpr-974668

ABSTRACT

Objective To measure the peripheral dose distributions of the mobile head cone beam computed tomography (CBCT) and evaluate the impact of CBCT on the surrounding personnel and environment, and provide data support for clinical radiation protection management. Methods Combined with the structural characteristics of CBCT, AT1123 was used in the direction of 0° (counterclockwise), 45°, 90°, 135°, 180°, 225°, 270° and 315° in front of CBCT to measure the ambient dose equivalent rate of 30 cm, 80 cm and 130 cm away from the ground when the equipment was normally out of the beam, and the boundary of the temporary control area was drawn. At the same time, the dose level behind the lead screen 1 m away from the external surface of the equipment was measured and analyzed. Results The dose field around CBCT was symmetrically distributed with the dividing line of 0° and 180°, and the radiation dose level of 5.5 m in the direction of 0°, 3.5 m in the direction of 45°, 0.5 m in the direction of 90° and within 1.0 m in the direction of 180° (inside the "spoon" type) was higher than 2.5 μSv/h. The radiation dose levels of CT aperture 0° (straight forward), 45° and 315° behind the lead screen 1 m away from the equipment surface were 0.37 μSv/h, 0.22 μSv/h and 0.54 μSv/h, respectively. Conclusion The results show that the radiation dose around the mobile head cone beam CT is in a low dose level, the distribution of the dose field can provide necessary reference for the administrative and medical personnel to strengthen the radiation safety management. At the same time, it is suggested that lead screens should be set up in the clinical use of mobile CT to ensure the health and safety of the surrounding people and the environment.

3.
World Science and Technology-Modernization of Traditional Chinese Medicine ; (12): 1823-1827, 2015.
Article in Chinese | WPRIM | ID: wpr-481469

ABSTRACT

This study was aimed to evaluate the subchronic toxicity of diosgenin in mice. A total of 80 mice were divided into 4 groups, which were 0 (control), 100, 200, and 400 mg·kg-1 by the random number table. Intragastric administration was given once a day for 90 days in the assessment of subchronic toxicity of diosgenin among mice. The observed indexes contained body weight, fur color, diet, feces, and etc. The detected indexes contained blood routine analysis, blood biochemistry and pathological examination. The results showed that compared with the control group, the body weights of mice in the male medication group were slight reduced. There were no significant hematologic and pathologic abnormalities. It was concluded that the subchronic toxicity of diosgenin with no observed adverse effect dose level was more than 400 mg·kg-1. The oral administration was relatively safe.

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