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AN ANALYTICAL APPROACH FOR COMPENSATION OF NON-UNIFORM ATTENUATION IN CARDIAC SPECT IMAGING

机译:心脏光谱成像中非均匀衰减补偿的一种解析方法

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Photon attenuation can reduce the diagnostic accuracy of cardiac SPECT imaging. Bellini et nl have previously derived a mathematically exact method to compensate for attenuation in a uniform attenuator. Since the human thorax contains structures with differing attenuation properties, non-uniform attenuation compensation is required in cardiac SPECT. Given an estimate of the patient attenuation map, we show that the Bellini attenuation compensation method can be used in cardiac SPECT to provide a quantitatively accurate reconstruction of a central region in the image which includes the heart and surrounding soft tissue. Simulations using a mathematical cardiac-torso phantom were conducted to evaluate the Bellini method and to compare its performance to the ML-EM iterative algorithm, and to 180 degrees and 360 degrees filtered backprojection (FBP) with no attenuation compensation. 'Bulls-eye' polar maps and circumferential profiles showed that both the Bellini method and the ML-EM algorithm provided quantitatively accurate reconstructions of the myocardium, with a substantial reduction in attenuation-induced artifacts that were observed in the FBP images. The computational load required to implement the Bellini method is approximately equivalent to that required for one iteration of the ML-EM algorithm, thus it is suitable for routine clinical use. [References: 38]
机译:光子衰减会降低心脏SPECT成像的诊断准确性。 Bellini等人先前已经推导了数学上精确的方法来补偿均匀衰减器中的衰减。由于人类胸腔包含具有不同衰减特性的结构,因此在心脏SPECT中需要非均匀的衰减补偿。给定患者衰减图的估计值,我们表明贝里尼衰减补偿方法可用于心脏SPECT中,以提供定量准确的图像中心区域重建,其中包括心脏和周围的软组织。进行了使用数学心脏躯干体模的仿真,以评估Bellini方法并将其性能与ML-EM迭代算法进行比较,并与无衰减补偿的180度和360度滤波反投影(FBP)进行比较。 “ Bull-eye”极坐标图和圆周轮廓表明,Bellini方法和ML-EM算法都可以定量准确地重建心肌,并大大减少了在FBP图像中观察到的由衰减引起的伪影。实施Bellini方法所需的计算量大约等于ML-EM算法的一次迭代所需的计算量,因此适合常规临床使用。 [参考:38]

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