Automatic preparation, calibration, and simulation of deformable objects
Many simulation environments - particularly those intended for medical simulation - require solid objects to deform at interactive rates, with deformation properties that correspond to real materials. Furthermore, new objects may be created frequently (for example, each time a new patient's dat...
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          | Published in | Computer methods in biomechanics and biomedical engineering Vol. 11; no. 3; pp. 263 - 279 | 
|---|---|
| Main Authors | , | 
| Format | Journal Article | 
| Language | English | 
| Published | 
        England
          Taylor & Francis Group
    
        01.06.2008
     | 
| Subjects | |
| Online Access | Get full text | 
| ISSN | 1025-5842 1476-8259  | 
| DOI | 10.1080/10255840701769606 | 
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| Abstract | Many simulation environments - particularly those intended for medical simulation - require solid objects to deform at interactive rates, with deformation properties that correspond to real materials. Furthermore, new objects may be created frequently (for example, each time a new patient's data is processed), prohibiting manual intervention in the model preparation process. This paper provides a pipeline for rapid preparation of deformable objects with no manual intervention, specifically focusing on mesh generation (preparing solid meshes from surface models), automated calibration of models to finite element reference analyses (including a novel approach to reducing the complexity of calibrating nonhomogeneous objects), and automated skinning of meshes for interactive simulation. | 
    
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| AbstractList | Many simulation environments - particularly those intended for medical simulation - require solid objects to deform at interactive rates, with deformation properties that correspond to real materials. Furthermore, new objects may be created frequently (for example, each time a new patient's data is processed), prohibiting manual intervention in the model preparation process. This paper provides a pipeline for rapid preparation of deformable objects with no manual intervention, specifically focusing on mesh generation (preparing solid meshes from surface models), automated calibration of models to finite element reference analyses (including a novel approach to reducing the complexity of calibrating nonhomogeneous objects), and automated skinning of meshes for interactive simulation. Many simulation environments - particularly those intended for medical simulation - require solid objects to deform at interactive rates, with deformation properties that correspond to real materials. Furthermore, new objects may be created frequently (for example, each time a new patient's data is processed), prohibiting manual intervention in the model preparation process. This paper provides a pipeline for rapid preparation of deformable objects with no manual intervention, specifically focusing on mesh generation (preparing solid meshes from surface models), automated calibration of models to finite element reference analyses (including a novel approach to reducing the complexity of calibrating nonhomogeneous objects), and automated skinning of meshes for interactive simulation.Many simulation environments - particularly those intended for medical simulation - require solid objects to deform at interactive rates, with deformation properties that correspond to real materials. Furthermore, new objects may be created frequently (for example, each time a new patient's data is processed), prohibiting manual intervention in the model preparation process. This paper provides a pipeline for rapid preparation of deformable objects with no manual intervention, specifically focusing on mesh generation (preparing solid meshes from surface models), automated calibration of models to finite element reference analyses (including a novel approach to reducing the complexity of calibrating nonhomogeneous objects), and automated skinning of meshes for interactive simulation.  | 
    
| Author | Salisbury, Kenneth Morris, Dan  | 
    
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| BackLink | https://www.ncbi.nlm.nih.gov/pubmed/18568824$$D View this record in MEDLINE/PubMed | 
    
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| CitedBy_id | crossref_primary_10_3389_frobt_2020_00082 crossref_primary_10_1109_TRO_2011_2139150 crossref_primary_10_1109_TCDS_2017_2664058 crossref_primary_10_1227_NEU_0b013e3182750d26 crossref_primary_10_1109_TVCG_2011_32 crossref_primary_10_1016_j_compmedimag_2014_11_002 crossref_primary_10_1088_1361_6463_aa851e  | 
    
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| SubjectTerms | Algorithms Artificial Intelligence Calibration Categories and subject descriptors: I.6.0 [simulation and modelling]: general Computer Simulation deformable models Elasticity finite element modeling General terms: Algorithms I.6.1 [simulation and modelling]: model validation and analysis Image Enhancement - methods Image Interpretation, Computer-Assisted - methods Imaging, Three-Dimensional - methods interactive simulation mesh skinning model calibration Models, Biological Pattern Recognition, Automated - methods real-time deformation Reproducibility of Results Sensitivity and Specificity Stress, Mechanical  | 
    
| Title | Automatic preparation, calibration, and simulation of deformable objects | 
    
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