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首页> 外文期刊>Journal of Medical Engineering >Development of an Anatomically Realistic Forward Solver for Thoracic Electrical Impedance Tomography
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Development of an Anatomically Realistic Forward Solver for Thoracic Electrical Impedance Tomography

机译:胸廓电阻抗层析成像的解剖学正向求解器的开发

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Electrical impedance tomography (EIT) has the potential to provide a low cost and safe imaging modality for clinically monitoring patients being treated with mechanical ventilation. Variations in reconstruction algorithms at different clinical settings, however, make interpretation of regional ventilation across institutions difficult, presenting the need for a unified algorithm for thoracic EIT reconstruction. Development of such a consensual reconstruction algorithm necessitates a forward model capable of predicting surface impedance measurements as well as electric fields in the interior of the modeled thoracic volume. In this paper, we present an anatomically realistic forward solver for thoracic EIT that was built based on high resolution MR image data of a representative adult. Accuracy assessment of the developed forward solver in predicting surface impedance measurements by comparing the predicted and observed impedance measurements shows that the relative error is within the order of 5%, demonstrating the ability of the presented forward solver in generating high-fidelity surface thoracic impedance data for thoracic EIT algorithm development and evaluation.
机译:电阻抗断层扫描(EIT)有潜力为临床监测接受机械通气治疗的患者提供低成本和安全的成像方式。然而,在不同的临床环境下,重建算法的变化使对整个机构的区域通气的解释变得困难,因此需要统一的胸腔EIT重建算法。这种自愿重建算法的发展需要能够预测表面阻抗测量值以及建模的胸腔内部的电场的正向模型。在本文中,我们提出了一种基于解剖学现实的胸部EIT前向求解器,该求解器是基于具有代表性的成年人的高分辨率MR图像数据构建的。通过比较预测的阻抗观测值和观察到的阻抗测量值,对发达的前向求解器进行的表面阻抗测量值的准确性评估表明,相对误差在5%的范围内,证明了所提出的前向求解器在生成高保真的表面胸阻抗数据中的能力用于胸部EIT算法的开发和评估。

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