尼日利亚西北部索科托直线加速器的季节性光子输出趋势

H. Ibrahim, U. Bello
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引用次数: 0

摘要

背景:线性加速器对温度、压力、湿度和粉尘的变化非常敏感;因此,天气因素会导致光子输出中的常见误差,从而影响肿瘤剂量精确传递的稳定性和一致性。剂量检查器就是这样一种剂量测量装置,它有一个内置的校正因子,用于掩体温度和压力的变化,以确保光子输出在患者接受的值范围内。研究的目的是发现季节变化对Linac的影响及其对患者的影响。方法:回顾性分析2019年1月和2021年12月6 MV和15 MV光子输出及其对应温度和压力的日记录。使用精密玻璃汞温度计和气压计(opus10 THI)记录碉堡温度和压力的每日记录,同时记录其季节性行为。按一年中的三个季节计算并排列各月份的平均值;结果用图形、表格和条形图表示。结果:在6 MV和15 MV下,总平均光子输出分别为0.997和0.828 cGy/MU。当能量为6MV时,光子输出与参考值的偏差为±2%,当能量为15MV时,光子输出与参考值的偏差为±3%。平均地堡温度为27.07℃。总体平均舱压为977.23 hpa。在哈马丹季节,温度和压力分别在26.8-25.4℃和978-976.1 hpa之间。热季地堡温度在25.7 ~ 29.5℃之间,气压在976.1 ~ 975.0 hpa之间。雨季气温在29.5 ~ 25.7 oc之间,相应的掩体压力在980 ~ 976.3 hpa之间。结论:尽管使用了剂量检测器,但季节对掩体温度和压力的变化有影响,相应的光子输出也有季节变化。在旱季和炎热季节记录到低光子输出,而在雨季记录到高光子输出。关键词:季节;趋势;光子输出,直线加速器
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Seasonal Photon Output Trend from Linear Accelerator in Sokoto, North-Western Nigeria
Background: Linear accelerators are so sensitive to variability of temperature, pressure, humidity and dust; thus, weather factors can cause common errors in photon output which in turn can compromise constancy and consistency in precise delivery of tumor dose. Dose checker is such a dose-measuring devices that has an inbuilt correction factor for bunker temperature and pressure changes which ensures the photon output is within the accepted values to the patient. The aim of the study is to find the effect of seasonal changes on Linac and its influence on the patient. Methods: This is a retrospective study and daily records of 6 and 15 MV photon output with their corresponding temperature and pressure from January 2019 and December 2021 were extracted and reviewed. Precision mercury-in-glass thermometer and Barometer (OPUS 10 THI) were used to keep daily records of bunker temperature and pressure while their seasonal behaviours were recorded. Mean values of each month of the year was calculated and arranged according to three seasons of the year; results were represented in graphs, tables and bar charts. Results: The overall mean photon outputs were 0.997 and 0.828 cGy/MU for 6 and 15 MV respectively. The deviation of photon outputs from their reference values were ±2% for 6MV and ±3% for the 15MV energy. The mean bunker temperature was 27.07oC. The overall mean bunker pressure was 977.23 hpa. During harmattan season the temperature and pressure ranged between 26.8-25.4oC and 978-976.1 hpa respectively. In hot season bunker temperature was between 25.7-29.5oC and pressure was between 976.1-975.0 hpa. For the wet season, the temperature was between 29.5-25.7oC, and the corresponding bunker pressure ranged between 980.0-976.3 hpa. Conclusion: The seasons of year influenced variation in bunker temperature and pressure with corresponding seasonal photon output variation despite the use of dose checker. Low photon outputs were recorded during harmattan and hot seasons while higher outputs were recorded during wet season. Keywords: Season; Trend; Photon output, Linear Accelerator
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