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Персонифицированная реконструкция сосудистого русла для гемодинамического моделирования 6th Russian workshop on mathematical models and numerical methods.

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Presentation on theme: "Персонифицированная реконструкция сосудистого русла для гемодинамического моделирования 6th Russian workshop on mathematical models and numerical methods."— Presentation transcript:

1 Персонифицированная реконструкция сосудистого русла для гемодинамического моделирования 6th Russian workshop on mathematical models and numerical methods in biomathematics October 29, 2014, Moscow Yury Ivanov (INM RAS), Roman Pryamonosov (MSU)

2 3D reconstruction of vascular structure for patient- specific simulation CT, MRT diagnostic data in DICOM files Image preprocessing Performing vessels segmentation Extraction of vascular structure Geometric analysis and building topology of a vascular segment Simulation with network blood circulation model

3 3D vessel segmentation Amira 3D Visualization and Analysis Software for Life Sciences and bio-medical data http://www.vsg3d.com/amira Volume of interest extraction Arithmetic operation on images Noise reduction with digital image filters Segmentation

4 Extraction of vascular structure VMTK (The Vascular Modeling Toolkit) - open source library, http://www.vmtk.orghttp://www.vmtk.org Computing centerlines – convenient way of representation of tube-like structure as sets of center points and corresponding radiuses. Centerlines defined as centers of maximal inscribed spheres, calculated with Voronoi diagram method.

5 Patient specific reconstruction of vascular network for haemodynamic modeling. 3D vascular domain: polygonal surface mesh and computed centerlines

6 Export data into GUI and building of topology Export centerlines in VTK format Converting to the internal format of vessel representation. Visualize 3D objects Perform hierarchical connectivity analysis: determination of intersection with consecutive building of node and branch tables. Every branch entry has information about pair of nodes, average radius and actual length (along the vessel axis)

7 Построение графа сосудистой сети * - T. Gamilov, Yu. Ivanov, P. Kopylov, S. Simakov, Yu. Vassilevski. Patient specific haemodynamic modeling after occlusion treatment in leg. Mathematical Modelling of Natural Phenomena. 9(6), 85--97 (2014) The complexity of algorithm* is O(M 2 N) M – number of centerlines N – number of points in centerline

8 Patient specific reconstruction of vascular network for hemodynamic modeling The vascular network of arterial part of systemic circulation based on PlasticBoy 3D anatomy model. (Realistic model of Circulatory System - http://www.plasticboy.co.uk/)


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