Accurate 3D Body Shape Regression using Metric and Semantic Attributes
Vasileios Choutas, Lea Muller, Chun-Hao P. Huang, Siyu Tang, Dimitrios, Tzionas, Michael J. Black

TL;DR
This paper introduces SHAPY, a neural network that accurately estimates 3D human body shape from images by leveraging anthropometric measurements and linguistic attributes, overcoming data scarcity issues.
Contribution
The authors propose a novel training approach using anthropometric and linguistic data, and introduce a new dataset, HBW, for evaluating 3D body shape estimation.
Findings
SHAPY outperforms existing methods on the HBW benchmark.
Using anthropometric and linguistic data improves shape estimation accuracy.
First demonstration of training 3D shape regression with easily obtainable data.
Abstract
While methods that regress 3D human meshes from images have progressed rapidly, the estimated body shapes often do not capture the true human shape. This is problematic since, for many applications, accurate body shape is as important as pose. The key reason that body shape accuracy lags pose accuracy is the lack of data. While humans can label 2D joints, and these constrain 3D pose, it is not so easy to "label" 3D body shape. Since paired data with images and 3D body shape are rare, we exploit two sources of information: (1) we collect internet images of diverse "fashion" models together with a small set of anthropometric measurements; (2) we collect linguistic shape attributes for a wide range of 3D body meshes and the model images. Taken together, these datasets provide sufficient constraints to infer dense 3D shape. We exploit the anthropometric measurements and linguistic shape…
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Taxonomy
TopicsHuman Pose and Action Recognition · 3D Shape Modeling and Analysis · Infrared Thermography in Medicine
