大量程kvp计的设计

Murat Tümer, Y. Ülgen
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引用次数: 0

摘要

在x射线成像中,管电压是影响成像质量的主要因素之一。它在千伏范围内,通常称为kVp,因为它是在x射线产生期间作为峰值测量的。kVp决定x射线光子在组织中的穿透和吸收特性,并直接影响图像质量。kVp的准确度和精密度应每年测量一次,为5%。最准确和精确的方法是用电压表直接测量管电压。然而,测量如此高电压的设备的成本和对技术人员的危险使非侵入式电位计成为最佳选择。在这项工作中,对先前设计和原型的kvp计进行了重新设计,其在更高电压下的准确度和精度在整个测量范围内提高到1%以下。该设计利用了金属的线性衰减系数对入射光子能量的依赖性,而入射光子能量又与kVp相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a wide range kVp-meter
The tube voltage is one of the major factors affecting the image quality in X-ray imaging. It is in kilovolts range and usually called kVp, since it is measured as the peak value during X-ray production. The kVp determines the penetration and absorption characteristics of the X-ray photons in the tissue and contributes directly to image quality. The accuracy and precision of the kVp should be measured annually to be 5%. The most accurate and precise method would be measuring the tube voltage directly with a voltmeter. However, the cost of an equipment for measuring such a high voltage and the danger for the technician makes non-invasive kVp-meters the best alternative. In this work, a previsously designed and prototyped kVp-meter is redesigned and its accuracy and precision at higher voltages improved to below 1% throughout the measurement range. The design makes use of the dependency of the linear attenuation coefficient of metals on the energy of the incident photons, which are in turn related to kVp.
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