准直面积和照射距离对x射线机测量剂量影响的盖革穆勒能力分析

Wahyu Pratama, M. Mak’ruf, T. Indrato, Endro Yulianto, L. Lamidi, Maduka Nosike, Sambhrant Srivastava
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引用次数: 0

摘要

人类的五种感官无法直接感受到辐射。为保障职业安全,辐射工作人员或放射技师应尽量接受最低剂量的辐射,即使用辐射测量装置监测辐射。本研究的目的是分析准直面积和照射距离对盖革穆勒测量x射线剂量的影响。在这种情况下,作者试图使用穆勒盖革模块制作剂量计,并在个人电脑上显示。本研究采用Muller Geiger传感器检测x射线剂量和速度,Arduino进行数据编程,蓝牙HC-05作为硬件与个人电脑之间的数字通信工具,个人电脑显示读数。本研究采用预实验研究设计。根据数据采集结果并与标准工具进行对比,可以得出50KV和70KV设置距离100cm和50KV设置距离150cm时,管电流设置(mA)越大,辐射照射剂量和照射率越大。但在70KV设置下,与150cm距离处的测量结果成反比。本研究结果有望进一步确定盖革穆勒对辐照距离或准直区域的剂量测量能力,并可作为该领域进一步研究的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Geiger Muller Ability on the Effect of Collimation Area and Irradiation Distance on the Dose of X-Ray Machine Measurements
Radiation cannot be felt directly by the five human senses. For the occupational safety and security, a radiation worker or radiographer is endeavored to receive radiation dose as minimum as possible, which is by monitoring the radiation using a radiation measuring device. The purpose of this study was to analyze the effect of collimation area and irradiation distance on x-ray dose measurement using Geiger Muller. In this case, the author tried to make a dosimeter by using the Muller Geiger module and displayed it on a personal computer. This research employed Muller Geiger sensor to detect X-ray dose and velocity, Arduino for data programming, Bluetooth HC-05 for digital communication tool between hardware and personal computer, and personal computer to display the reading. Current research was conducted using Pre-Experimental research design. Based on the results of data collection and comparison with the standard tool, it can be concluded that the greater the tube current setting (mA), the greater the dose and rate of radiation exposure at a distance of 100cm with 50KV and 70KV settings, and a distance of 150cm with 50KV settings. However, it is inversely proportional to the measurement results at a distance of 150cm with a 70KV setting. The results of this study are further expected to determine the ability of Geiger Muller to measure the dose to the irradiation distance or collimation area and can be used as a reference for further research in this field.
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