Lalrinmawia Jonathan, Pau Kham Suan, Tiwari Ramesh Chandra
Department of Physics, Mizoram University, Aizawl, Mizoram, 796004, India.
Mizoram State Cancer Institute, Zemabawk, Aizawl, Mizoram, 796017, India.
Radiol Phys Technol. 2018 Sep;11(3):274-283. doi: 10.1007/s12194-018-0464-3. Epub 2018 May 18.
The present study examined the mechanical attributes of 135 conventional diagnostic X-ray machines in Mizoram, India. The purpose of studying the X-ray mechanical parameters, such as congruency, perpendicularity of the central beam, and half-value layer, was to improve the quality of the diagnostic image and reduce the patient dose. A battery-operated portable dosimeter was used to measure output radiation of the X-ray machine. The half-value layer was measured at a constant accelerating potential of 70 kVp and tube load. To measure the congruency and beam alignment perpendicularity, a congruence and alignment tool was used. The survey data were collected between June 2015 and June 2016. The authors followed international standard test procedures, and the results were compared to national and international standards. SPSS Statistics for Windows, Version 17 was used to calculate the mean, range, and standard deviation. The half-value layer ranged from 0.45 to 3.00 mm; the mean half-value layer was 1.60 ± 0.51 SD mm. In comparison with national and international standards, only 27.83% (national) and 15.64% (international) of the machines' filtration were found to be within acceptable limits. The congruence misalignment of the x-axis varied between 0.50% and 15.30% of the source-to-image distance; for the y-axis, it ranged from 0.50 to 10.90%. When the congruence between the radiation beam and optical field was tested, 80.85% of diagnostic X-ray machines did not meet the prescribed acceptance parameters. When the perpendicularity between the central beam and the image receptor was tested, 69.81% did not meet safety standards.
本研究检测了印度米佐拉姆邦135台传统诊断X射线机的机械属性。研究X射线的机械参数,如一致性、中心射线的垂直度和半价层,目的是提高诊断图像质量并减少患者剂量。使用电池供电的便携式剂量仪测量X射线机的输出辐射。半价层在70 kVp的恒定加速电压和管负载下测量。为测量一致性和射线对准垂直度,使用了一致性和对准工具。调查数据于2015年6月至2016年6月收集。作者遵循国际标准测试程序,并将结果与国家和国际标准进行比较。使用Windows版SPSS Statistics 17计算均值、范围和标准差。半价层范围为0.45至3.00毫米;平均半价层为1.60±0.51标准差毫米。与国家和国际标准相比,发现只有27.83%(国内)和15.64%(国际)的机器过滤在可接受范围内。x轴的一致性偏差在源到图像距离的0.50%至15.30%之间变化;对于y轴,范围为0.50至10.90%。当测试辐射束与光场之间的一致性时,80.85%的诊断X射线机不符合规定的验收参数。当测试中心射线与图像接收器之间的垂直度时,69.81%不符合安全标准。