Ertel Dirk, Kröber Evelyn, Kyriakou Yiannis, Langner Oliver, Kalender Willi A
Institute of Medical Physics, University of Erlangen-Nürnberg, Henkestrasse 91, 91052 Erlangen, Germany.
Radiology. 2008 Sep;248(3):1013-7. doi: 10.1148/radiol.2482072173. Epub 2008 Jul 15.
The purpose of this study was to determine a manufacturer-independent quality assurance measurement for temporal resolution with a three-dimensional cardiac motion robot; validation was with single-source (SS) and dual-source (DS) computed tomography (CT). Image acquisition was performed by using standard cardiac protocols. Image contrast-based modulation transfer function (MTF) was assessed as function of time. For motion frequency of 60 beats per minute, MTF slightly decreased by 14% and 6% for SS CT and DS CT, respectively. For higher frequencies, a stronger decrease of MTF (eg, by 50% [SS CT] and 18% [DS CT] at 120 beats per minute) was detected. Effect of manufacturer's adaptive bisegment algorithm for SS CT and corresponding resonance effects of rotation time and heart rate were quantified. The robot-based approach is a reproducible, objective way to assess temporal resolution; it allows practical measurement of temporal resolution and comparison of CT scanners and protocols.
本研究的目的是确定一种不依赖制造商的、用于三维心脏运动机器人时间分辨率的质量保证测量方法;采用单源(SS)和双源(DS)计算机断层扫描(CT)进行验证。使用标准心脏协议进行图像采集。基于图像对比度的调制传递函数(MTF)作为时间的函数进行评估。对于每分钟60次心跳的运动频率,SS CT和DS CT的MTF分别略有下降,下降幅度为14%和6%。对于更高的频率,检测到MTF有更强的下降(例如,在每分钟120次心跳时,SS CT下降50%,DS CT下降18%)。对SS CT制造商的自适应双段算法的效果以及相应的旋转时间和心率的共振效应进行了量化。基于机器人的方法是一种可重复、客观的评估时间分辨率的方法;它允许对时间分辨率进行实际测量,并对CT扫描仪和协议进行比较。