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首页> 外文期刊>Forensic science international >Image quality assessment and medical physics evaluation of different portable dental X-ray units.
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Image quality assessment and medical physics evaluation of different portable dental X-ray units.

机译:不同便携式牙科X射线单元的图像质量评估与医疗物理评价。

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摘要

INTRODUCTION: Recently developed portable dental X-ray units increase the mobility of the forensic odontologists and allow more efficient X-ray work in a disaster field, especially when used in combination with digital sensors. This type of machines might also have potential for application in remote areas, military and humanitarian missions, dental care of patients with mobility limitation, as well as imaging in operating rooms. OBJECTIVE: To evaluate radiographic image quality acquired by three portable X-ray devices in combination with four image receptors and to evaluate their medical physics parameters. MATERIALS AND METHODS: Images of five samples consisting of four teeth and one formalin-fixed mandible were acquired by one conventional wall-mounted X-ray unit, MinRay 60/70 kVp, used as a clinical standard, and three portable dental X-ray devices: AnyRay 60 kVp, Nomad 60 kVp and Rextar 70 kVp, in combination with a phosphor image plate (PSP), a CCD, or a CMOS sensor. Three observers evaluated images for standard image quality besides forensic diagnostic quality on a 4-point rating scale. Furthermore, all machines underwent tests for occupational as well as patient dosimetry. RESULTS: Statistical analysis showed good quality imaging for all system, with the combination of Nomad and PSP yielding the best score. A significant difference in image quality between the combination of the four X-ray devices and four sensors was established (p<0.05). For patient safety, the exposure rate was determined and exit dose rates for MinRay at 60 kVp, MinRay at 70 kVp, AnyRay, Nomad and Rextar were 3.4 mGy/s, 4.5 mGy/s, 13.5 mGy/s, 3.8 mGy/s and 2.6 mGy/s respectively. The kVp of the AnyRay system was the most stable, with a ripple of 3.7%. Short-term variations in the tube output of all the devices were less than 10%. AnyRay presented higher estimated effective dose than other machines. Occupational dosimetry showed doses at the operator's hand being lowest with protective shielding (Nomad: 0.1 microGy). It was also low while using remote control (distance>1m: Rextar <0.2 microGy, MinRay <0.1 microGy). CONCLUSIONS: The present study demonstrated the feasibility of three portable X-ray systems to be used for specific indications, based on acceptable image quality and sufficient accuracy of the machines and following the standard guidelines for radiation hygiene.
机译:简介:最近开发的便携式牙科X射线单元增加了法医神话论家的移动性,并在灾区中允许更有效的X射线工作,特别是与数字传感器结合使用时。这种类型的机器也可能具有在偏远地区,军事和人道主义任务中的应用潜力,移动性限制的患者的牙科护理,以及手术室的成像。目的:评估三个便携式X射线器件获取的放射线图像质量与四个图像受体结合,并评估其医疗物理参数。材料和方法:由一个传统的壁挂式X射线单元,MINAY 60/70 KVP组成的五个样本由四颗牙齿和一个福尔马林固定的下颌骨采集,用作临床标准,以及三个便携式牙科X射线设备:AnyRay 60 kVp,Nomad 60 kVp和rextar 70 kVp与磷光体图像板(PSP),CCD或CMOS传感器组合。除了4点额定尺度的法医诊断质量之外,三个观察者评估了标准图像质量的图像。此外,所有机器都接受了职业以及患者剂量测定的测试。结果:统计分析显示所有系统的质量成像,Nomad和PSP的组合产生了最佳分数。建立了四个X射线器件和四个传感器的组合之间的图像质量的显着差异(P <0.05)。对于患者安全性,确定暴露速率并在60 kVP下测定的MINORE,MINAY,ANYRAY,NOMAD和REXTAR的MINORE为3.4 MGY / S,4.5 MGY / S,13.5 MGY / S,3.8 MGY / S和2.6 MGY / s。 AnyRay系统的KVP是最稳定的,涟漪为3.7%。所有设备的管输出中的短期变化小于10%。 Anyray介绍了比其他机器更高的估计有效剂量。职业剂量仪表在操作员手中显示剂量,与保护屏蔽最低(Nomad:0.1微米)。使用遥控器(距离> 1M:Rextar <0.2微孔,Miniay <0.1微焦)也很低。结论:本研究证明了三种便携式X射线系统的可行性,用于特定适应症,基于可接受的图像质量和机器的足够精度以及沿着辐射卫生的标准指南。

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