A Python implementation of some geometric tools on Kendall 3D shape space for practical applications

Fuente: arXiv
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Autori principali: Valero, Jorge, Garcia, Vicent Gimeno i, Ibáñez, M. Victoría, Martinavarro, Pau, Simó, Amelia
Natura: Preprint
Pubblicazione: 2026
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author Valero, Jorge
Garcia, Vicent Gimeno i
Ibáñez, M. Victoría
Martinavarro, Pau
Simó, Amelia
author_facet Valero, Jorge
Garcia, Vicent Gimeno i
Ibáñez, M. Victoría
Martinavarro, Pau
Simó, Amelia
contents This work addresses the challenge of analyzing geometric structures using Kendall's 3D Shape Space. While Riemannian geometry provides a robust framework for shape analysis (independent of scale, position, and orientation) the transition from theoretical manifolds to practical computational workflows remains difficult. Although Geomstats is currently the leading Python library for manifold-based statistics, it lacks specific utilities required for advanced 3D shape analysis. This article introduces tools designed to bridge this gap, translating complex mathematical abstractions into efficient, accessible software solutions for researchers.
format Preprint
id arxiv_https___arxiv_org_abs_2603_10687
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A Python implementation of some geometric tools on Kendall 3D shape space for practical applications
Valero, Jorge
Garcia, Vicent Gimeno i
Ibáñez, M. Victoría
Martinavarro, Pau
Simó, Amelia
Computation
Differential Geometry
Applications
This work addresses the challenge of analyzing geometric structures using Kendall's 3D Shape Space. While Riemannian geometry provides a robust framework for shape analysis (independent of scale, position, and orientation) the transition from theoretical manifolds to practical computational workflows remains difficult. Although Geomstats is currently the leading Python library for manifold-based statistics, it lacks specific utilities required for advanced 3D shape analysis. This article introduces tools designed to bridge this gap, translating complex mathematical abstractions into efficient, accessible software solutions for researchers.
title A Python implementation of some geometric tools on Kendall 3D shape space for practical applications
topic Computation
Differential Geometry
Applications
url https://arxiv.org/abs/2603.10687