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使用基于计数的比率法对首次通过放射性核素血管造影进行左心室容积计算。

Left ventricular volume calculation using a count-based ratio method applied to first-pass radionuclide angiography.

作者信息

Gal R A, Grenier R P, Port S C, Dymond D S, Schmidt D H

机构信息

Cardiovascular Disease Section, University of Wisconsin Medical School, Milwaukee.

出版信息

J Nucl Med. 1992 Dec;33(12):2124-32.

PMID:1460504
Abstract

Most count-based radionuclide methods for calculating left ventricular volume rely on measurement of radioactivity in a peripheral blood sample and a measurement of ventricle to collimator distance. We have developed a method which requires neither a blood sample nor a distance measurement and which is applicable to first-pass radionuclide angiography. The parameters used to calculate volume are the area of pixel, the total counts in the left ventricle and the maximum pixel count. The equation was used to calculate the volumes in 50 patients who had both resting first-pass radionuclide angiography (25 patients with a single crystal and 25 patients with a multicrystal camera) and contrast ventriculography on the same day. Correlation coefficients for end-diastolic and end-systolic volumes showed r ranging 0.93-0.98 and standard error of estimate ranging 23-35 ml for end-diastolic volume (14%-17% of mean end-diastolic volume) and 16-23 ml for end-systolic volume (18%-21% of mean end-systolic volume). Image processing software for extracting the needed values is generally available on most commercial nuclear medicine imaging systems and the additional time for the calculations is short. Although the theory is based on multiple assumptions, the volume calculation appears to be reasonably accurate and clinically applicable.

摘要

大多数基于计数的放射性核素方法用于计算左心室容积,都依赖于对外周血样本中放射性的测量以及心室到准直器距离的测量。我们开发了一种既不需要血样也不需要距离测量的方法,该方法适用于首次通过放射性核素血管造影。用于计算容积的参数是像素面积、左心室内的总计数以及最大像素计数。使用该公式对50例患者的容积进行了计算,这些患者同一天既进行了静息首次通过放射性核素血管造影(25例使用单晶相机,25例使用多晶相机)又进行了对比心室造影。舒张末期和收缩末期容积的相关系数显示,舒张末期容积的r值范围为0.93 - 0.98,估计标准误差范围为23 - 35 ml(平均舒张末期容积的14% - 17%),收缩末期容积的估计标准误差范围为16 - 23 ml(平均收缩末期容积的18% - 21%)。用于提取所需值的图像处理软件在大多数商业核医学成像系统上通常都有,并且计算所需的额外时间很短。尽管该理论基于多个假设,但容积计算似乎相当准确且在临床上适用。

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