Hierarchical Neural Implicit Pose Network for Animation and Motion Retargeting

12/02/2021
by   Sourav Biswas, et al.
8

We present HIPNet, a neural implicit pose network trained on multiple subjects across many poses. HIPNet can disentangle subject-specific details from pose-specific details, effectively enabling us to retarget motion from one subject to another or to animate between keyframes through latent space interpolation. To this end, we employ a hierarchical skeleton-based representation to learn a signed distance function on a canonical unposed space. This joint-based decomposition enables us to represent subtle details that are local to the space around the body joint. Unlike previous neural implicit method that requires ground-truth SDF for training, our model we only need a posed skeleton and the point cloud for training, and we have no dependency on a traditional parametric model or traditional skinning approaches. We achieve state-of-the-art results on various single-subject and multi-subject benchmarks.

READ FULL TEXT

page 1

page 7

page 8

research
02/17/2022

Neural Marionette: Unsupervised Learning of Motion Skeleton and Latent Dynamics from Volumetric Video

We present Neural Marionette, an unsupervised approach that discovers th...
research
01/09/2020

A novel tree-structured point cloud dataset for skeletonization algorithm evaluation

Curve skeleton extraction from unorganized point cloud is a fundamental ...
research
03/28/2022

Structured Local Radiance Fields for Human Avatar Modeling

It is extremely challenging to create an animatable clothed human avatar...
research
04/01/2021

NPMs: Neural Parametric Models for 3D Deformable Shapes

Parametric 3D models have enabled a wide variety of tasks in computer gr...
research
04/16/2020

RGBD-Dog: Predicting Canine Pose from RGBD Sensors

The automatic extraction of animal 3D pose from images without markers i...
research
08/23/2023

Pose Modulated Avatars from Video

It is now possible to reconstruct dynamic human motion and shape from a ...
research
09/23/2021

A Skeleton-Driven Neural Occupancy Representation for Articulated Hands

We present Hand ArticuLated Occupancy (HALO), a novel representation of ...

Please sign up or login with your details

Forgot password? Click here to reset