[用于ecg门控CT的新型搏动冠状动脉幻像的设计与研制及其实验特性]。

Yun Shen, Munekuni Sato, Fumiko Kimura, Masahiro Jinzaki, Jun Horiguchi, Katsuhide Ito, Sachio Kuribayashi
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引用次数: 0

摘要

最佳搏动虚影是心电图门控MDCT评价心脏图像和心脏应用的重要工具。本研究的目的是演示脉动心脏冠状动脉幻像的设计和制造。新开发的脉动心脏冠状动脉幻影具有以下五个关键优势:1)驱动组件仅使用一个伺服电机在三维(X, Y和Z方向)上移动幻影,并预置16种不同的心脏类型(心跳:0-120 bpm;喷射分数:0-90%);2)在心脏周期中模拟真实心脏的多用途泵送和填充阶段可纳入驱动序列,包括患者心跳或不规则脉搏的移位(一次扫描最多可达200种不同的心波);3)由丙烯酸/硅/橡胶管(内径2- 6mm)组成的心脏冠状动脉组件,具有支架内/支架内再狭窄/狭窄/软斑块/钙化部分和最多16条冠状动脉,可在同一次扫描中附着于幻肢;4)将完整的假体浸泡在水箱中模拟心脏及其周围组织;5)心电门控分为内触发和外触发两种。研究证实,发展的搏动心脏幻像在幻像实验中对心脏和冠状动脉成像的定量评估是非常有用的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Design and development of a new pulsating cardiac coronary phantom for ECG-gated CT and its experimental characteristics].

The optimal pulsating cardiac phantom is an important tool for the evaluation of cardiac images and cardiac applications on ECG-gated MDCT. The purpose of this study was to demonstrate the design and fabrication of the pulsating cardiac coronary phantom. The newly developed pulsating cardiac coronary phantom has the following five key advantages: 1) a driver component that uses only one servomotor to move the phantom in three dimensions (X, Y, and Z directions) with 16 presets of different heart types (heartbeat: 0-120 bpm; ejection fraction: 0-90%); 2) versatile pumping and filling phases to simulate a real heart in a cardiac cycle can be incorporated into the driver sequence including shift of patient heartbeat or irregular pulse (maximum: 200 different heart waves in one scan); 3) a cardiac coronary component constituted of an acrylic/silicon/rubber tube (2-6 mm inner diameter) with stent/in-stent restenosis/stenosis/soft plaque/calcification parts and maximum 16 coronary arteries that can be attached to the phantom in the same scan; 4) the complete phantom can be submerged in a tank to simulate the heart and its surrounding tissues; 5) ECG gating can be from interior trigger and exterior trigger. It has been confirmed that the developed pulsating cardiac phantom is very useful to quantitatively assess imaging of the heart and coronary arteries during phantom experiments.

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