首页> 外文期刊>The Journal of craniofacial surgery >A real-time flat-panel X-ray pixel imaging system for low-dose medical diagnostics and craniofacial applications.
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A real-time flat-panel X-ray pixel imaging system for low-dose medical diagnostics and craniofacial applications.

机译:用于低剂量医学诊断和颅面应用的实时平板X射线像素成像系统。

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The aim of this study was to evaluate on-line performance of a real-time digital imaging system based on amorphous silicon technology and to compare it with conventional film-screen equipment. The digital detecting imager consists of (1) a converter, which transforms the energy of the incident X rays into light; (2) a real-time digital detecting system, capable of producing as many as 10 pictures per second using a large-area pixel matrix (20 x 20 cm2) based on solid-state amorphous silicon sensor technology with a pitch of 400 microns; and (3) appropriate computer tools for control, real-time image treatment, data representation, and off-line analysis. Different phantoms were used for qualitative comparison with the conventional film-screen technique, with images obtained with both systems at the normal dose (used as a reference), as well as with dose reduction by a factor of 10 to 100. Basic image quality parameters evaluated showed that the response of the detector is linear in a wide range of entrance air kerma; the dynamic range is higher compared with the conventional film-screen combination; the spatial resolution is 1.25 lp per millimeter, as expected from the pixel size; and good image quality is ensured at doses substantially lower than for the film-screen technique. The flat-panel X-ray imager based on amorphous silicon technology implemented in standard radiographic equipment permits acquisition of real-time images in radiology (as many as 10 images per second) of diagnostic quality with a marked reduction of dose (as much as 100 times) and better contrast compared with the standard film technique. Preliminary results obtained with a 100-micron pitch imager based on the same technology show better quality but a less substantial dose reduction. Applications in craniofacial surgery look promising.
机译:这项研究的目的是评估基于非晶硅技术的实时数字成像系统的在线性能,并将其与传统的胶片屏幕设备进行比较。数字检测成像器包括:(1)转换器,将入射X射线的能量转换为光; (2)实时数字检测系统,该系统能够使用基于固态非晶硅传感器技术且间距为400微米的大面积像素矩阵(20 x 20 cm2)每秒产生多达10张图片; (3)适当的计算机工具,用于控制,实时图像处理,数据表示和离线分析。使用不同的体模与常规的胶片屏幕技术进行定性比较,两个系统均以正常剂量(用作参考)获得图像,剂量减少了10到100倍。基本图像质量参数评估表明,检测器的响应在宽范围的空气比释动能中是线性的;动态范围比传统的电影屏幕组合更高。如像素大小所预期的,空间分辨率为1.25 lp / mm;并以大大低于胶片屏幕技术的剂量确保了良好的图像质量。在标准放射线照相设备中实施的基于非晶硅技术的平板X射线成像仪可在放射学中获取诊断质量的实时图像(每秒多达10幅图像),并且剂量显着减少(多达100幅)倍),与标准胶片技术相比,对比度更好。使用基于相同技术的100微米间距成像器获得的初步结果显示出更好的质量,但减少的剂量较少。在颅面外科手术中的应用前景看好。

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