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首页> 外文期刊>Biomedical Engineering, IEEE Transactions on >Automatic Generation of Boundary Conditions Using Demons Nonrigid Image Registration for Use in 3-D Modality-Independent Elastography
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Automatic Generation of Boundary Conditions Using Demons Nonrigid Image Registration for Use in 3-D Modality-Independent Elastography

机译:使用恶魔非刚性图像配准自动生成边界条件,以用于3D方式无关的弹性成像

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摘要

Modality-independent elastography (MIE) is a method of elastography that reconstructs the elastic properties of tissue using images acquired under different loading conditions and a biomechanical model. Boundary conditions are a critical input to the algorithm and are often determined by time-consuming point correspondence methods requiring manual user input. This study presents a novel method of automatically generating boundary conditions by nonrigidly registering two image sets with a demons diffusion-based registration algorithm. The use of this method was successfully performed in silico using magnetic resonance and X-ray-computed tomography image data with known boundary conditions. These preliminary results produced boundary conditions with an accuracy of up to 80% compared to the known conditions. Demons-based boundary conditions were utilized within a 3-D MIE reconstruction to determine an elasticity contrast ratio between tumor and normal tissue. Two phantom experiments were then conducted to further test the accuracy of the demons boundary conditions and the MIE reconstruction arising from the use of these conditions. Preliminary results show a reasonable characterization of the material properties on this first attempt and a significant improvement in the automation level and viability of the method.
机译:与模式无关的弹性成像(MIE)是一种弹性成像方法,它使用在不同加载条件下获取的图像和生物力学模型来重建组织的弹性特性。边界条件是算法的关键输入,通常由需要手动用户输入的耗时的点对应方法确定。这项研究提出了一种新方法,该方法通过使用基于恶魔扩散的配准算法非刚性配准两个图像集来自动生成边界条件。使用磁共振和具有已知边界条件的X射线计算机断层扫描图像数据,已在计算机上成功执行了此方法的使用。这些初步结果产生的边界条件与已知条件相比,精度高达80%。在3-D MIE重建中利用基于恶魔的边界条件来确定肿瘤与正常组织之间的弹性对比度。然后进行了两个幻像实验,以进一步测试恶魔边界条件和使用这些条件引起的MIE重建的准确性。初步结果表明,首次尝试对材料性能进行了合理表征,并且该方法的自动化水平和可行性得到了显着提高。

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