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Cone Beam Tomography of the Heart Using Single-Photon Emission-Computed Tomography

机译:使用单光子发射计算机断层扫描对心脏进行锥形束断层扫描

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The authors evaluated cone beam single-photon emission-computed tomography (SPECT) of the heart. A new cone beam reconstruction algorithm was used to reconstruct data collected from “short scan” acquisitions (of slightly more than 180°) of a detector anteriorally traversing a noncircular orbit. The less than 360° acquisition was used to minimize the attenuation artifacts that result from reconstructing posterior projections of201T1 emissions from the heart. The algorithm includes a new method for reconstructing truncated projections of background tissue activity that eliminates reconstruction ring artifacts. Phantom and patient results are presented which compare a high-resolution cone beam collimator (50-cm focal length; 6.0-mm full width at half maximum FWHM at 10 cm) to a low-energy general purpose (LEGP) parallel hole collimator (8.2-mm FWHM at 10 cm) which is 1.33 times more sensitive. The cone beam tomographic results are free of reconstruction artifacts and show improved spatial and contrast resolution over that obtained with the LEGP parallel hole collimator. The limited angular sampling restrictions and truncation problems associated with cone beam tomography do not deter from obtaining diagnostic information. However, even though these preliminary results are encouraging, a thorough clinical study is still needed to investigate the specificity and sensitivity of cone beam tomography.
机译:作者评估了心脏的锥形束单光子发射计算机断层扫描(SPECT)。一种新的锥形束重建算法用于重建从前方穿越非圆形轨道的探测器的“短扫描”采集(略高于 180°)收集的数据。小于 360° 的采集用于最大限度地减少因重建心脏 201T1 发射的后验投影而导致的衰减伪影。该算法包括一种用于重建背景组织活动截断投影的新方法,该方法消除了重建环伪影。展示了模型和患者结果,将高分辨率锥形束准直器(焦距 50 厘米;半高 6.0 毫米全宽 [FWHM]10 厘米)与低能通用 (LEGP) 平行孔准直器(8.2 毫米 FWHM,10 厘米)进行了比较,后者的灵敏度提高了 1.33 倍。锥形束断层扫描结果没有重建伪影,并且与使用LEGP平行孔准直器相比,显示出更高的空间和对比度分辨率。与锥形束断层扫描相关的有限角度采样限制和截断问题并不妨碍获取诊断信息。然而,尽管这些初步结果令人鼓舞,但仍需要进行彻底的临床研究来研究锥形束断层扫描的特异性和敏感性。

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