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用于改善荧光透视和路线图成像中对比度与噪声比及分辨率的高清模式微血管造影荧光镜(MAF)。

The Micro-Angiographic Fluoroscope (MAF) in High Definition (HD) Mode for Improved Contrast-to-Noise Ratio and Resolution in Fluoroscopy and Roadmapping.

作者信息

Panse Ashish, Ionita C N, Wang W, Natarajan S K, Jain A, Bednarek D R, Rudin S

机构信息

Medical Physics program at the University at Buffalo (SUNY).

出版信息

IEEE Nucl Sci Symp Conf Rec (1997). 2010 Oct 30:3217-3220. doi: 10.1109/NSSMIC.2010.5874398.

Abstract

During image guided interventional procedures, superior resolution and image quality is critically important. Operating the MAF in the new High Definition (HD) fluoroscopy mode provides high resolution and increased contrast-to-noise ratio. The MAF has a CCD camera and a 300 micron cesium iodide x-ray convertor phosphor coupled to a light image intensifier (LII) through a fiber-optic taper. The MAF captures 1024 × 1024 pixels with an effective pixel size of 35 microns, and is capable of real-time imaging at 30 fps. The HD mode uses the advantages of higher exposure along with a small focal spot effectively improving the contrast-to-noise ratio (CNR) and the spatial resolution. The Control Acquisition Processing and Image Display System (CAPIDS) software for the MAF controls the LII gain. The interventionalist can select either fluoroscopic or angiographic modes using the two standard foot pedals. When improved image quality is needed and the angiography footpedal is used for HD mode, the x-ray machine will operate at a preset higher exposure rate using a small focal spot, while the CAPIDS will automatically adjust the LII gain to achieve proper image brightness. HD mode fluoroscopy and roadmapping are thus achieved conveniently during the interventional procedure. For CNR and resolution evaluation we used a bar phantom with images taken in HD mode with both the MAF and a Flat Panel Detector (FPD). It was seen that the FPD could not resolve more than 2.8 lp/mm whereas the MAF could resolve more than 5 lp/mm. The CNR of the MAF was better than that of the FPD by 60% at lower frequencies and by 600% at the Nyquist frequency of the FPD. The HD mode has become the preferred mode during animal model interventions because it enables detailed features of endovascular devices such as stent struts to be visualized clearly for the first time. Clinical testing of the MAF in HD mode is imminent.

摘要

在图像引导介入手术过程中,卓越的分辨率和图像质量至关重要。在新型高清(HD)荧光透视模式下操作MAF可提供高分辨率并提高对比度与噪声比。MAF配有一个电荷耦合器件(CCD)相机和一个300微米的碘化铯X射线转换磷光体,通过光纤锥耦合到光像增强器(LII)。MAF可捕捉1024×1024像素,有效像素尺寸为35微米,能够以30帧/秒的速度进行实时成像。高清模式利用更高曝光的优势以及小焦点,有效提高了对比度与噪声比(CNR)和空间分辨率。MAF的控制采集处理与图像显示系统(CAPIDS)软件控制LII增益。介入医生可使用两个标准脚踏板选择荧光透视或血管造影模式。当需要提高图像质量并使用血管造影脚踏板进入高清模式时,X射线机将使用小焦点以预设的更高曝光率运行,而CAPIDS将自动调整LII增益以实现合适的图像亮度。因此,在介入手术过程中可方便地实现高清模式荧光透视和路线图绘制。为了评估CNR和分辨率,我们使用了一个条形模体,分别用MAF和平板探测器(FPD)在高清模式下拍摄图像。结果发现,FPD的分辨率不超过2.8线对/毫米,而MAF的分辨率超过5线对/毫米。在较低频率下,MAF的CNR比FPD好60%,在FPD的奈奎斯特频率下则好600%。高清模式已成为动物模型干预过程中的首选模式,因为它首次能够清晰地显示血管内装置(如支架支柱)的详细特征。MAF在高清模式下的临床试验即将进行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0384/3137370/a5c019569831/nihms303301f1.jpg

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