Development and application of computer assisted optimal method for treatment of femoral neck fracture.

Background: To help doctors decide their treatment from the aspect of mechanical analysis, the work built a computer assisted optimal system for treatment of femoral neck fracture oriented to clinical application.Objective: The whole system encompassed the following three parts: Preprocessing module...

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Publicado en:Technology & Health Care Vol. 26; pp. 31 - 42
Autores principales: Wang, Monan, Zhang, Kai, Yang, Ning, Gómez, Schwarzacher, Zhou
Formato: Journal Article
Publicado: Sage Publications Inc. 2018 Supplement 1
Acceso en línea:Ver este registro en EBSCOhost
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      jtl: Technology & Health Care
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      dt: 2018 Supplement 1
      vid: 26
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      pub: Sage Publications Inc.
      place: Thousand Oaks, California
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        atl: Development and application of computer assisted optimal method for treatment of femoral neck fracture.
      aug:
        au:
          Wang, Monan
          Zhang, Kai
          Yang, Ning
          Gómez
          Schwarzacher
          Zhou
        affil: Mechanical and Power Engineering College, Harbin University of Science and Technology, Harbin, Heilongjiang, China
      sug:
        subj:
          Hip Fractures Surgery
          Fracture Fixation
          Fracture Fixation Methods
          Therapy, Computer Assisted Equipment and Supplies
          Therapy, Computer Assisted Methods
          Finite Element Analysis
          Adult
          Middle Age
          Male
          Female
          Aged
          Aged, 80 and Over
          Scales
          Adult: 19-44 years
          Middle Aged: 45-64 years
          Aged: 65+ years
          Aged, 80 & over
          Male
          Female
      ab: Background: To help doctors decide their treatment from the aspect of mechanical analysis, the work built a computer assisted optimal system for treatment of femoral neck fracture oriented to clinical application.Objective: The whole system encompassed the following three parts: Preprocessing module, finite element mechanical analysis module, post processing module.Methods: Preprocessing module included parametric modeling of bone, parametric modeling of fracture face, parametric modeling of fixed screw and fixed position and input and transmission of model parameters. Finite element mechanical analysis module included grid division, element type setting, material property setting, contact setting, constraint and load setting, analysis method setting and batch processing operation. Post processing module included extraction and display of batch processing operation results, image generation of batch processing operation, optimal program operation and optimal result display.Results: The system implemented the whole operations from input of fracture parameters to output of the optimal fixed plan according to specific patient real fracture parameter and optimal rules, which demonstrated the effectiveness of the system.Conclusions: Meanwhile, the system had a friendly interface, simple operation and could improve the system function quickly through modifying single module.
      pubtype: Academic Journal
      doctype: Journal Article
      ougenre: Article
    language: English
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