Yang Fei, Zhang Jie, Patterson Robert
Department of Radiation Oncology, Washington University School of Medicine, 4921 Parkview Place, Campus box 8224, St Louis, MO 63110, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2010;2010:3105-8. doi: 10.1109/IEMBS.2010.5627164.
Electrical impedance tomography (EIT) offers a possibility of realizing of a low cost and safe modality for clinically monitoring patients being treated with mechanical ventilation. However, image reconstruction algorithm employed at different clinical or research settings varies from one to another, which in turn makes interpretation of regional ventilation across institutions difficult. Seeing the lack of a standardized algorithm, GREIT (Graz consensus Reconstruction algorithm for EIT) was proposed lately in an attempt to develop a unified EIT image reconstruction algorithm. To assess GREIT, an anatomically-detailed electrical model of the thorax is indispensable. In view of this need, we describe a high resolution, image-based electrical thoracic modeling software environment, named MEFS (MIND EIT Forward Solver). The software environment utilizes anatomically realistic geometry of the thorax, allows placing electrode of any shape interactively, and yields the detailed field information in the simulated volume. The goals of the development of MEFS are: 1) to generate electrical measurements needed for EIT image reconstruction, 2) to provide a platform to compare various EIT reconstruction algorithms.
电阻抗断层成像(EIT)为实现一种低成本且安全的方式以临床监测接受机械通气治疗的患者提供了可能。然而,在不同临床或研究环境中所采用的图像重建算法各不相同,这进而使得跨机构的区域通气解读变得困难。鉴于缺乏标准化算法,GREIT(用于EIT的格拉茨共识重建算法)最近被提出,试图开发一种统一的EIT图像重建算法。为了评估GREIT,一个解剖结构详细的胸部电学模型是必不可少的。鉴于此需求,我们描述了一个高分辨率、基于图像的胸部电学建模软件环境,名为MEFS(MIND EIT正问题求解器)。该软件环境利用胸部逼真的解剖几何结构,允许交互式放置任何形状的电极,并在模拟体积中产生详细的场信息。MEFS开发的目标是:1)生成EIT图像重建所需的电学测量值,2)提供一个比较各种EIT重建算法的平台。