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4D reconstruction

Papers

Showing 125 of 78 papers

TitleStatusHype
MonST3R: A Simple Approach for Estimating Geometry in the Presence of MotionCode5
SynCamMaster: Synchronizing Multi-Camera Video Generation from Diverse ViewpointsCode4
Easi3R: Estimating Disentangled Motion from DUSt3R Without TrainingCode4
Streaming 4D Visual Geometry TransformerCode4
MoSca: Dynamic Gaussian Fusion from Casual Videos via 4D Motion ScaffoldsCode3
LiDAR4D: Dynamic Neural Fields for Novel Space-time View LiDAR SynthesisCode3
Geo4D: Leveraging Video Generators for Geometric 4D Scene ReconstructionCode3
PhysTwin: Physics-Informed Reconstruction and Simulation of Deformable Objects from VideosCode3
Vidu4D: Single Generated Video to High-Fidelity 4D Reconstruction with Dynamic Gaussian SurfelsCode3
SplatFields: Neural Gaussian Splats for Sparse 3D and 4D ReconstructionCode2
Robot See Robot Do: Imitating Articulated Object Manipulation with Monocular 4D ReconstructionCode2
Driv3R: Learning Dense 4D Reconstruction for Autonomous DrivingCode2
DrivingRecon: Large 4D Gaussian Reconstruction Model For Autonomous DrivingCode2
Motion2VecSets: 4D Latent Vector Set Diffusion for Non-rigid Shape Reconstruction and TrackingCode2
Diffusion^2: Dynamic 3D Content Generation via Score Composition of Video and Multi-view Diffusion ModelsCode2
Deblur4DGS: 4D Gaussian Splatting from Blurry Monocular VideoCode2
WideRange4D: Enabling High-Quality 4D Reconstruction with Wide-Range Movements and ScenesCode2
SEED4D: A Synthetic Ego--Exo Dynamic 4D Data Generator, Driving Dataset and BenchmarkCode1
Neural LerPlane Representations for Fast 4D Reconstruction of Deformable TissuesCode1
ResFields: Residual Neural Fields for Spatiotemporal SignalsCode1
S4D: Streaming 4D Real-World Reconstruction with Gaussians and 3D Control PointsCode1
LoRD: Local 4D Implicit Representation for High-Fidelity Dynamic Human ModelingCode1
4D Myocardium Reconstruction with Decoupled Motion and Shape ModelCode1
Gaussian-Flow: 4D Reconstruction with Dynamic 3D Gaussian ParticleCode1
Learning Parallel Dense Correspondence from Spatio-Temporal Descriptors for Efficient and Robust 4D ReconstructionCode1
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