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Development of a new dental panoramic radiographic system based on a tomosynthesis method

机译:基于断层合成方法的新型牙科全景放射照相系统的开发

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The objective of this study was to develop a new practical method to reconstruct a high-quality panoramic image in which radiographers would be free from the onerous task of correctly locating the patient's jaws within the image layer of the panoramic unit. In addition, dentists would be able to freely select any panoramic plane to be reconstructed after the acquisition of the raw scan data. A high-speed data acquisition device was used with a CdTe (cadmium telluride) semiconductor detector and a sophisticated digital signal-processing technique based on tomosynthesis was developed. The system processes many vertical strip images acquired with the detector and generates a high-resolution and high-contrast image. To apply the tomosynthesis technique to the acquired strip images correctly, the actual movement of the panoramic unit was measured, including the X-ray tube and detector, in a scan using a calibration phantom and the authors generated a shift amount table needed for the shift-andadd tomosynthesis operation. The results of the experiments with a PanoACT-1000 panoramic unit, which was a PC-1000? panoramic unit fitted with a high frame rate semiconductor detector SCAN-300FPC?, demonstrated the capability of a tomosynthesis technique which, when applied to the strip images of a dry skull phantom, could change the location and inclination of an imaging plane. This system allowed the extraction of an optimum-quality panoramic image regardless of irregularities in patient positioning. Moreover, the authors could freely reconstruct a fine image of an arbitrary plane with different parameters from those used in the original data acquisition to study fine anatomical details in specific locations.
机译:这项研究的目的是开发一种新的实用方法来重建高质量的全景图像,在这种方法中,放射线照相师将不必承担在全景单元图像层内正确放置患者下颌的繁重任务。另外,在获取原始扫描数据之后,牙医将能够自由选择要重建的任何全景平面。高速数据采集设备与CdTe(碲化镉)半导体检测器一起使用,并开发了基于断层合成的精密数字信号处理技术。该系统处理通过检测器采集的许多垂直条带图像,并生成高分辨率和高对比度的图像。为了将断层合成技术正确地应用于获取的带状图像,在使用校准体模的扫描中测量了全景单元的实际运动,包括X射线管和检测器,作者生成了移位所需的移位量表-并添加断层合成操作。使用PanoACT-1000全景单元(即PC-1000)的实验结果。装有高帧频半导体检测器SCAN-300FPC?的全景单元展示了层析合成技术的功能,该技术在应用于干燥的颅骨体模的带状图像时,可以改变成像平面的位置和倾斜度。该系统可以提取最佳质量的全景图像,而不管患者放置位置是否不规则。而且,作者可以用与原始数据采集中所使用的参数不同的参数自由地重建任意平面的精细图像,以研究特定位置的精细解剖细节。

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