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心脏磁共振成像的自动切片配准方法。

Automatic slice alignment method for cardiac magnetic resonance imaging.

机构信息

Corporate Research and Development Center, Toshiba Corporation, 1 Komukai Toshiba-cho, Saiwai-ku, Kawasaki, Kanagawa, 212-8582, Japan,

出版信息

MAGMA. 2013 Oct;26(5):451-61. doi: 10.1007/s10334-012-0361-4. Epub 2013 Jan 26.

Abstract

OBJECTIVES

Automatic slice alignment is important for easier operation and shorter examination times in cardiac magnetic resonance imaging (MRI) examinations. We propose a new automatic slice alignment method for six cardiac planes (short-axis, vertical long-axis, horizontal long-axis, 4-chamber, 2-chamber, and 3-chamber views).

MATERIALS AND METHODS

ECG-gated 2D steady-state free precession axial multislice images were acquired using a 1.5-T MRI scanner during a single breath-hold. The scanning time was set to <20 s in 23 volumes from 23 healthy volunteers. In this method, the positions of the mitral valve, cardiac apex, left ventricular outflow tract, tricuspid valve, anterior wall of the heart, and right ventricular corner are detected to determine the positions of six reference planes by combining knowledge-based recognition and image processing techniques. In order to evaluate the results of automatic slice alignment for the short-axis, 4-chamber, 2-chamber, and 3-chamber views, the angular and positional errors between the results obtained by our proposed method and by manual annotation were measured.

RESULTS

The average angular errors for the short-axis, 4-chamber, 2-chamber, and 3-chamber views were 3.05°, 4.52°, 7.28°, and 5.79°, respectively. The average positional errors for the short-axis (base), short-axis (apex), 4-chamber, 2-chamber, and 3-chamber views were 6.61°, 3.80°, 1.55°, 1.52°, and 1.48°, respectively.

CONCLUSION

The experimental results showed that our proposed method can detect the cardiac planes quickly and accurately. Our method is therefore beneficial to both patients and operators.

摘要

目的

在心脏磁共振成像(MRI)检查中,自动层面配准对于更轻松的操作和更短的检查时间非常重要。我们提出了一种新的六平面自动层面配准方法,包括短轴、垂直长轴、水平长轴、四腔心、两腔心和三腔心切面。

材料与方法

使用 1.5T MRI 扫描仪在单次屏气期间采集心电门控 2D 稳态自由进动轴位多层面图像。扫描时间设置为 23 名健康志愿者的 23 个容积中每个容积<20s。在该方法中,通过结合基于知识的识别和图像处理技术,检测二尖瓣、心尖、左心室流出道、三尖瓣、心脏前壁和右心室角的位置,以确定六个参考平面的位置。为了评估短轴、四腔心、两腔心和三腔心视图自动层面配准的结果,测量了我们提出的方法与手动标注之间的角度和位置误差。

结果

短轴、四腔心、两腔心和三腔心视图的平均角度误差分别为 3.05°、4.52°、7.28°和 5.79°。短轴(基底)、短轴(心尖)、四腔心、两腔心和三腔心视图的平均位置误差分别为 6.61°、3.80°、1.55°、1.52°和 1.48°。

结论

实验结果表明,我们提出的方法可以快速准确地检测心脏平面。因此,该方法有利于患者和操作人员。

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