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首页> 外文期刊>AJNR. American journal of neuroradiology >Cerebral CT perfusion using an interventional C-arm imaging system: cerebral blood flow measurements.
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Cerebral CT perfusion using an interventional C-arm imaging system: cerebral blood flow measurements.

机译:使用介入性C臂成像系统进行脑CT灌注:脑血流量测量。

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BACKGROUND AND PURPOSE: CTP imaging in the interventional suite could reduce delays to the start of image-guided interventions and help determine the treatment progress and end point. However, C-arms rotate slower than clinical CT scanners, making CTP challenging. We developed a cerebral CTP protocol for C-arm CBCT and evaluated it in an animal study. MATERIALS AND METHODS: Five anesthetized swine were imaged by using C-arm CBCT and conventional CT. The C-arm rotates in 4.3 seconds plus a 1.25-second turnaround, compared with 0.5 seconds for clinical CT. Each C-arm scan had 6 continuous bidirectional sweeps. Multiple scans each with a different delay to the start of an aortic arch iodinated contrast injection and a novel image reconstruction algorithm were used to increase temporal resolution. Three different scan sets (consisting of 6, 3, or 2 scans) and 3 injection protocols (3-mL/s 100%, 3-mL/s 67%, and 6-mL/s 50% contrast concentration) were studied. CBF maps for each scan set and injection were generated. The concordance and Pearson correlation coefficients (rho and r) were calculated to determine the injection providing the best match between the following: the left and right hemispheres, and CT and C-arm CBCT. RESULTS: The highest rho and r values (both 0.92) for the left and right hemispheres were obtained by using the 6-mL 50% iodinated contrast concentration injection. The same injection gave the best match for CT and C-arm CBCT for the 6-scan set (rho = 0.77, r = 0.89). Some of the 3-scan and 2-scan protocols provided matches similar to those in CT. CONCLUSIONS: This study demonstrated that C-arm CBCT can produce CBF maps that correlate well with those from CTP.
机译:背景与目的:介入套件中的CTP成像可以减少影像引导介入治疗开始的延迟,并有助于确定治疗进展和终点。但是,C臂的旋转速度比临床CT扫描仪慢,这使CTP面临挑战。我们开发了用于C型臂CBCT的大脑CTP协议,并在动物研究中对其进行了评估。材料与方法:使用C型臂CBCT和常规CT对五只麻醉的猪进行成像。 C形臂旋转4.3秒,外转1.25秒,而临床CT则为0.5秒。每个C臂扫描都有6次连续的双向扫描。多次扫描各有不同的延迟到主动脉弓碘化造影剂的开始,并使用新颖的图像重建算法来提高时间分辨率。研究了三种不同的扫描集(由6、3或2次扫描组成)和3种注射方案(3-mL / s 100%,3-mL / s 67%和6-mL / s 50%对比浓度)。生成每个扫描集和进样的CBF图。计算一致性和Pearson相关系数(rho和r),以确定在以下各项之间提供最佳匹配的进样:左半球和右半球以及CT和C型臂CBCT。结果:左半球和右半球的最高rh和r值(均为0.92)是通过使用6 mL 50%碘代造影剂注射获得的。相同的进样为6扫描装置提供了CT和C臂CBCT的最佳匹配(rho = 0.77,r = 0.89)。提供的某些3扫描和2扫描协议与CT中的匹配类似。结论:这项研究表明,C型臂CBCT可以产生与CTP相关的CBF图。

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