医用x射线间接测量电压和曝光时间装置

Manao Bunkum, C. Pintavirooj, S. Visitsattapongse
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引用次数: 1

摘要

x光机是利用x射线束形成诊断或治疗图像的仪器。当辐射剂量足够大时,x射线对人体细胞是有害的。因此,x光机必须经常进行校准或测试,以确保x光机的准确性,以保证用户的安全。本文介绍了x射线检测装置的设计与构造。它将着重于测量x光机的两个主要参数。曝光时间(x射线发射时间)的测量和x射线管峰值电压的测量。本设备由硬件和软件两部分组成。硬件部分是由用于辐射接收器的强化屏和将x射线能量转换为光能的电路组成。发射的光的波长在500 - 600nm范围内,然后使用光电二极管电路。它是一种将光转换成电流的半导体装置。电流为与x射线管100hz高压电源相对应的全波整流波形。从电流中提取信号到滤波电路中去噪。然后把信号送到微控制器(Arduino)。利用Arduino将需要在Visual Studio程序中处理的信号用于测量x射线的曝光时间和峰值千伏,可以立即进行测量和处理。波形被数字化,并用Arduino检测峰值。然后将峰值的数量转换为曝光时间,即一个峰值对应于10毫秒。结果,曝光时间和x射线的峰值电压,将在Visual Studio程序中以窗口形式显示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indirect Measure Voltage and Exposure Time Device for Medical X-ray
X-ray machine is used to create an image of diagnosing or treatment by using X-ray beam. X-ray beams are harmful to the body’s cells when the radiation dose is high enough. Therefore, the X-ray machine must always be calibrated or test to ensure that the X-ray machine is accurate to keep users safe. In this research presents the design and construction of x-ray testing device. It will focus on measuring the two main parameters of the x-ray machine. Measurement of exposure time (x-ray emission time) and measurements of peak kilovoltage from the x-ray tube. This device has 2 parts, hardware and software. The hardware is the circuit consist of intensifying screen for a radiation receiver and converted energy from x-ray into light energy. The wavelength of the light emitted is in the range of 500–600 nm, then use a circuit of photodiode. It is a semiconductor device that converts light into an electric current. The electric current is a full-wave rectification waveform corresponding to the 100 Hz high voltage supply of the x-ray tube. Take the signal from the electric current to filter circuit for reducing noise. And then take the signal to the microcontroller (Arduino). Arduino is used for taking the signal to process in Visual Studio program to measure exposure time and peak kilovoltage of x-ray, which can be measured and processed immediately. The waveform is digitized, and peak detected with Arduino. The number of peaks is then converted to exposure time, i.e. one peak corresponds to 10 milliseconds. The result, exposure time and peak kilovoltage of x-ray, will show on window form application in Visual Studio program.
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