An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]

We present an open source software implementation of a popular mathematical method developed by M.R. Yeadon for calculating the body and segment inertia parameters of a human body. The software is written in a high level open source language and provides three interfaces for manipulating the data an...

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Main Authors: Christopher Dembia, Jason K. Moore, Mont Hubbard
Format: Article
Language:English
Published: F1000 Research Ltd 2015-04-01
Series:F1000Research
Subjects:
Online Access:http://f1000research.com/articles/3-223/v2
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spelling doaj-0cc5bc409b4b4ec3868339a0aef12eae2020-11-25T03:20:37ZengF1000 Research LtdF1000Research2046-14022015-04-01310.12688/f1000research.5292.26668An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]Christopher Dembia0Jason K. Moore1Mont Hubbard2Mechanical Engineering, Stanford University, Stanford, CA, 94305, USAMechanical Engineering, Cleveland State University, Cleveland, OH, 44115, USAMechanical and Aerospace Engineering, University of California, Davis, CA, 95616, USAWe present an open source software implementation of a popular mathematical method developed by M.R. Yeadon for calculating the body and segment inertia parameters of a human body. The software is written in a high level open source language and provides three interfaces for manipulating the data and the model: a Python API, a command-line user interface, and a graphical user interface. Thus the software can fit into various data processing pipelines and requires only simple geometrical measures as input.http://f1000research.com/articles/3-223/v2Theory & Simulation
collection DOAJ
language English
format Article
sources DOAJ
author Christopher Dembia
Jason K. Moore
Mont Hubbard
spellingShingle Christopher Dembia
Jason K. Moore
Mont Hubbard
An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]
F1000Research
Theory & Simulation
author_facet Christopher Dembia
Jason K. Moore
Mont Hubbard
author_sort Christopher Dembia
title An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]
title_short An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]
title_full An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]
title_fullStr An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]
title_full_unstemmed An object oriented implementation of the Yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]
title_sort object oriented implementation of the yeadon human inertia model [v2; ref status: indexed, http://f1000r.es/558]
publisher F1000 Research Ltd
series F1000Research
issn 2046-1402
publishDate 2015-04-01
description We present an open source software implementation of a popular mathematical method developed by M.R. Yeadon for calculating the body and segment inertia parameters of a human body. The software is written in a high level open source language and provides three interfaces for manipulating the data and the model: a Python API, a command-line user interface, and a graphical user interface. Thus the software can fit into various data processing pipelines and requires only simple geometrical measures as input.
topic Theory & Simulation
url http://f1000research.com/articles/3-223/v2
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