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- W3103586485 abstract "Purpose Mesh optimization reduces the texture quality of three-dimensional models in order to reduce storage file size and computational load on a personal computer. The current study aims to explore mesh optimization using open source (free) software in the context of prosthodontic application MATERIALS AND METHODS: An auricular prosthesis, a complete denture, anterior and posterior crowns were constructed using conventional methods and laser scanned to create computerized three-dimensional meshes. The Meshes were optimized independently by four computer-aided design software (Meshmixer, Meshlab, Blender and SculptGL) to 100%, 90%, 75%, 50% and 25% levels of original file size. Upon optimization, the following parameters were virtually evaluated and compared; mesh vertices, file size, mesh surface area (SA), mesh volume (V), interpoint discrepancies (geometric similarity based on virtual point overlapping) and spatial similarity (volumetric similarity based on shape overlapping). The influence of software and optimization on surface area and volume of each prosthesis was evaluated independently using multiple linear regression. Results There were clear observable differences in vertices, file size, surface area and volume. The choice of software significantly influenced the overall virtual parameters of auricular prosthesis [SA: F(4,15) = 12.93, R2 = 0.67, P 97%. Conclusion Open-source mesh optimization of smaller dental prostheses in the current study produced minimal loss of geometric and volumetric details. SculptGL models were most influenced by the amount of optimization performed. This article is protected by copyright. All rights reserved." @default.
- W3103586485 created "2020-11-23" @default.
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- W3103586485 date "2020-12-02" @default.
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- W3103586485 title "Optimization of Prosthodontic Computer‐Aided Designed Models: A Virtual Evaluation of Mesh Quality Reduction Using Open Source Software" @default.
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- W3103586485 doi "https://doi.org/10.1111/jopr.13286" @default.
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