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Development and evaluation of a CMOS sensor-based digital intra-oral radiographic system

机译:基于CMOS传感器的数字口腔内放射成像系统的开发和评估

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As part of an ongoing investigation into the development of a dental digital radiographic (DDR) system using a complementary metal-oxide semiconductor (CMOS) sensor, this study developed hardware and software with a graphical user interface to acquire and display intra-oral images from a prototype DDR system. The aim of this study was to develop a DDR system using a CMOS sensor and evaluate its characteristics. Electrical signals that were generated by the CMOS sensor were transformed into digital images by a control computer equipped using a USB board. The distance between the X-ray tube and the CMOS sensor was adjusted within the range of 10-40 cm to provide the optimal image quality. In order to evaluate the image quality according to variations in the dose, phantom images (60 kVp, 7 mA) were obtained at exposure times of 0.03, 0.05, 0.08, 0.10, and 0.12 s, and the signal-to-noise ratio (SNR) was calculated from the phantom image data. The modulation transfer function (MTF) was obtained from a Fourier transform of the line spread function, which was itself derived from the edge spread function of a sharp edge image acquired using the exposure conditions of 60 kVp, 7 mA, and 0.08 s exposure time. The best contrast and focus were obtained at 20 cm. The SNR level was found to increase with increasing exposure time ranging from 0.03 to 0.08 s. The results obtained at 10% of the MTF showed that the resolution of the DDR system was approximately 6.2 line pairs per millimeter. The characteristics of the prototype DDR system have potential applications in intra-oral dental radiographic imaging. The fully developed DDR system can be used for making a clinical diagnosis with further improvements in the acquisition time and spatial resolution.
机译:作为对使用互补金属氧化物半导体(CMOS)传感器的牙科数字射线照相(DDR)系统开发的持续研究的一部分,本研究开发了具有图形用户界面的硬件和软件,以从中获取和显示口腔内图像DDR系统原型。这项研究的目的是开发使用CMOS传感器的DDR系统并评估其特性。由CMOS传感器产生的电信号通过使用USB板配备的控制计算机转换为数字图像。 X射线管和CMOS传感器之间的距离在10-40厘米的范围内调节,以提供最佳的图像质量。为了根据剂量的变化评估图像质量,在0.03、0.05、0.08、0.10和0.12 s的曝光时间下获得了幻像(60 kVp,7 mA),信噪比( SNR)是从幻像数据中计算得出的。调制传递函数(MTF)是通过线扩散函数的傅立叶变换获得的,线扩散函数本身是从使用60 kVp,7 mA和0.08 s曝光时间的条件下获得的锐利边缘图像的边缘扩散函数得出的。在20厘米处可获得最佳的对比度和焦点。发现SNR值随着暴露时间的增加而增加,范围从0.03到0.08 s。在MTF的10%处获得的结果表明,DDR系统的分辨率约为每毫米6.2线对。 DDR原型系统的特性在口腔牙科X线成像中具有潜在的应用。全面开发的DDR系统可用于进行临床诊断,并进一步改善采集时间和空间分辨率。

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