首页> 外文期刊>Journal of nuclear cardiology: official publication of the American Society of Nuclear Cardiology >Validation of attenuation correction using transmission truncation compensation with a small field of view dedicated cardiac SPECT camera system.
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Validation of attenuation correction using transmission truncation compensation with a small field of view dedicated cardiac SPECT camera system.

机译:使用传输截断补偿和小视场专用心脏SPECT摄像系统进行衰减校正的验证。

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摘要

BACKGROUND: Although attenuation correction (AC) has been successfully applied to large field of view (LFOV) cameras, applicability to small field of view (SFOV) cameras is a concern due to truncation. This study compared perfusion images between a LFOV and SFOV camera with truncation compensation, using the same AC solution. METHODS AND RESULTS: Seventy-eight clinically referred patients underwent rest-stress single-photon emission computed tomography (SPECT) using both a SFOV and LFOV camera in a randomized sequence. Blinded images were interpreted by a consensus of three experienced readers. The percentage of normal images for SFOV and LFOV was significantly higher with than without AC (72% vs 44% and 72% vs 49%, both P < .001). Interpretive agreement between cameras was better with than without AC (kappa = 0.736 to 0.847 vs 0.545 to 0.774). Correlation for the summed stress score was higher with than without AC (r (2) = 0.892 vs 0.851, both P < 0.001) while Bland Altman analysis demonstrated narrower limits with than without AC (4.0 to -4.3 vs 5.9 to -5.6). CONCLUSION: Attenuation correction using truncation compensation with a SFOV camera yields similar results to a LFOV camera. The higher interpretive agreement between cameras after attenuation correction suggests that such images are preferable to non-attenuation-corrected images.
机译:背景技术:尽管衰减校正(AC)已成功应用于大视野(LFOV)摄像机,但由于截断,人们仍关注其对小视野(SFOV)摄像机的适用性。这项研究使用相同的AC解决方案比较了具有截断补偿的LFOV和SFOV摄像机之间的灌注图像。方法和结果:78名临床转诊患者使用SFOV和LFOV摄像头以随机顺序进行了静压力单光子发射计算机断层扫描(SPECT)。三位有经验的读者达成共识,解释了盲目图像。有SFOV和LFOV的正常图像百分比明显高于没有AC时(72%比44%和72%比49%,两者均P <.001)。相机之间的解释性一致性好于不使用交流电时(kappa = 0.736至0.847 vs 0.545至0.774)。在没有AC的情况下,总压力评分的相关性更高(r(2)= 0.892 vs 0.851,两者均P <0.001),而Bland Altman分析表明在没有AC的情况下极限更窄(4.0到-4.3对5.9到-5.6)。结论:使用SFOV摄像机使用截断补偿的衰减校正产生的结果与LFOV摄像机相似。衰减校正后相机之间的较高解释一致性表明,此类图像优于未衰减校正的图像。

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