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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Automated 3D method for the construction of flexible and reconfigurable numerical breast models from MRI scans
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Automated 3D method for the construction of flexible and reconfigurable numerical breast models from MRI scans

机译:自动化3D方法从MRI扫描建造柔性和可重构数值乳房模型

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摘要

Anatomically realistic numerical breast models are essential tools for microwave breast imaging, supporting feasibility analysis, performance verification, and design improvements. Patient-specific models also assist in interpreting the results of the patient studies conducted on microwave imaging prototype systems. The proposed method employs automated and robust 3D processing techniques to construct flexible and reconfigurable breast models. These techniques include noise and artifact suppression with a principal component analysis (PCA) approach, and oversampling of the magnetic resonance imaging (MRI) data to enhance the intensity continuity. The k-means clustering segmentation identifies fatty and fibroglandular tissues and further segments these regions into a selected number of tissues, providing reconfigurable models. A peak Gaussian fitting technique maps the model clusters to the dielectric properties. The robustness of the proposed method is verified by applying it to both 1.5- and 3-T MRI scans as well as to scans of varying breast densities.
机译:解剖学现实的数值乳房模型是微波乳房成像的重要工具,支持可行性分析,性能验证和设计改进。患者特定的模型还有助于解释在微波成像原型系统上进行的患者研究的结果。该方法采用自动化和鲁棒的3D处理技术来构建灵活和可重新配置的乳房模型。这些技术包括具有主成分分析(PCA)的噪声和伪影抑制,以及磁共振成像(MRI)数据的过采样,以增强强度连续性。 K-Means聚类分割识别脂肪和纤维族组织,并进一步将这些区域分段成选定数量的组织,提供可重新配置的模型。峰值高斯拟合技术将模型集群映射到电介质特性。通过将其应用于1.5和3-T MRI扫描以及改变乳房密度的扫描来验证所提出的方法的鲁棒性。

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