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morphomap: An R package for long bone landmarking, cortical thickness, and cross‐sectional geometry mapping
Author(s) -
Profico Antonio,
Bondioli Luca,
Raia Pasquale,
O'Higgins Paul,
Marchi Damiano
Publication year - 2021
Publication title -
american journal of physical anthropology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.146
H-Index - 119
eISSN - 1096-8644
pISSN - 0002-9483
DOI - 10.1002/ajpa.24140
Subject(s) - cortical bone , morphometrics , geometry , software , cross section (physics) , computer science , shape analysis (program analysis) , anatomy , mathematics , biology , physics , static analysis , quantum mechanics , fishery , programming language
Objectives This study describes and demonstrates the functionalities and application of a new R package, morphomap , designed to extract shape information as semilandmarks in multiple sections, build cortical thickness maps, and calculate biomechanical parameters on long bones. Methods morphomap creates, from a single input (an oriented 3D mesh representing the long bone surface), multiple evenly spaced virtual sections. morphomap then directly and rapidly computes morphometric and biomechanical parameters on each of these sections. The R package comprises three modules: (a) to place semilandmarks on the inner and outer outlines of each section, (b) to extract cortical thicknesses for 2D and 3D morphometric mapping, and (c) to compute cross‐sectional geometry. Results In this article, we apply morphomap to femora from Homo sapiens and Pan troglodytes to demonstrate its utility and show its typical outputs. morphomap greatly facilitates rapid analysis and functional interpretation of long bone form and should prove a valuable addition to the osteoarcheological analysis software toolkit. Conclusions Long bone loading history is commonly retrodicted by calculating biomechanical parameters such as area moments of inertia, analyzing external shape and measuring cortical thickness. morphomap is a software written in the open source R environment, it integrates the main methodological approaches (geometric morphometrics, cortical morphometric maps, and cross‐sectional geometry) used to parametrize long bones.

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