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Spatial Ability Improvement by Tangible Interaction: A Case Study with EasySRRobot., , , , и . CHI Extended Abstracts, ACM, (2018)Tangible interaction with 3D printed modular robots through multi-channel sensors., , , и . SIGGRAPH ASIA Posters, стр. 54:1-54:2. ACM, (2018)3D-CariGAN: An End-to-End Solution to 3D Caricature Generation from Face Photos., , , , , и . CoRR, (2020)Feature-Aware Uniform Tessellations on Video Manifold for Content-Sensitive Supervoxels., , , , , и . IEEE Trans. Pattern Anal. Mach. Intell., 43 (9): 3183-3195 (2021)DiffPoseTalk: Speech-Driven Stylistic 3D Facial Animation and Head Pose Generation via Diffusion Models., , , , , , , и . ACM Trans. Graph., 43 (4): 46:1-46:9 (июля 2024)EasySRRobot: An easy-to-build self-reconfigurable robot with optimized design., , и . ROBIO, стр. 1094-1099. IEEE, (2017)Interactions With Reconfigurable Modular Robots Enhance Spatial Reasoning Performance., , , , , и . IEEE Trans. Cogn. Dev. Syst., 12 (2): 300-310 (2020)Generation of virtual digital human for customer service industry., , , , , , , , и . Comput. Graph., (октября 2023)DiffPoseTalk: Speech-Driven Stylistic 3D Facial Animation and Head Pose Generation via Diffusion Models., , , , , , , и . CoRR, (2023)Manifold SLIC: A Fast Method to Compute Content-Sensitive Superpixels., , , и . CVPR, стр. 651-659. IEEE Computer Society, (2016)