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This research presents a novel method for creating complex 3D shapes that vary in topology through structural blending processes. By leveraging the principles of computational geometry and advanced algorithms, we propose a framework that facilitates seamless transitions between different structural forms. This approach not only enhances the design flexibility for applications in fields such as architecture and product design, but also offers new materials and fabrication techniques possibilities. We demonstrate the efficacy of our method through various examples and applications, showcasing its potential impact on the future of 3D modeling.
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