Evaluation of the Volume of Coronary Artery Calcification according to Various Kernels and iBHC Algorithm

Moo-geon Kim, Woong-Jin Keum, Young-Kyoon Kim
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Abstract

The purpose of this study was to measure whether the volume of calcium due to cardiac artery calcification changes by functions different from that of the kernel, and to improve the use of more accurate kernels and functions. A Somatom Force(Siemens Healthineers, Forchheim, Germany) was used as CT equipment. Based on the Sa36 kernel, the Agatston score and volumes of calcium with the Br32, Br36, and Br40 kernels were compared. In addition, variables were added to the Br36 kernel by applying the equipment's unique function, iBHC(Beam Hardening Correction). The image was analyzed using the calcium score function of Aquarius iNtusion Edition ver. 4.4.13 P6 software(Terarecon, California, USA). There was a statistically significant difference between the Sa36 kernel to which the iBHC algorithm was applied and the Agatston scores and volumes of the Br32, Br36, and Br40 kernels to which the iBHC algorithm was not applied. In addition, there was a statistically significant difference between the Sa36 kernel to which the iBHC algorithm was applied, the Br36 kernel to which the iBHC algorithm was applied, and the Agatston score and volume of the Br36 kernel to which the iBHC algorithm was not applied. As a result, it can be seen that the Agatston score and volume of calcium change with the change in the kernel and with the application of the iBHC algorithm. Protocol correction is essential for accurate diagnosis and differentiation of coronary artery disease. To this end, it is necessary to use intermediate-level kernels such as Sa36 kernels and to use careful iBHC algorithms.
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基于各种核函数和iBHC算法的冠状动脉钙化体积评估
本研究的目的是测量心脏动脉钙化钙的体积是否因不同于核的功能而改变,从而提高核和功能的准确性。使用Somatom Force(Siemens Healthineers, Forchheim, Germany)作为CT设备。以Sa36为材料,比较了Br32、Br36和Br40的Agatston评分和钙含量。此外,通过应用设备的独特功能iBHC(波束硬化校正),将变量添加到Br36内核中。使用Aquarius inusion Edition ver的钙评分函数对图像进行分析。4.4.13 P6软件(美国加州Terarecon)。应用iBHC算法的Sa36核与未应用iBHC算法的Br32、Br36和Br40核的Agatston分数和体积之间存在统计学差异。此外,应用iBHC算法的Sa36核与应用iBHC算法的Br36核与未应用iBHC算法的Br36核的Agatston评分和体积之间存在统计学差异。由此可以看出,Agatston评分和钙体积随着核的变化以及iBHC算法的应用而变化。方案校正是准确诊断和鉴别冠状动脉疾病的必要条件。为此,有必要使用中间层内核,如Sa36内核,并使用谨慎的iBHC算法。
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