Stat-tracks and mediotypes: powerful tools for modern ichnology based on 3D models

Author:

Belvedere Matteo1,Bennett Matthew R.2,Marty Daniel1,Budka Marcin2,Reynolds Sally C.2,Bakirov Rashid2

Affiliation:

1. Section d’Archéologie et Paléontologie, Paléontologie A16, Office de la Culture, Porrentruy, Canton Jura, Switzerland

2. Institute for Studies in Landscape and Human Evolution, Faculty of Science and Tecnology, Bournemouth University, Poole, United Kingdom

Abstract

Vertebrate tracks are subject to a wide distribution of morphological types. A single trackmaker may be associated with a range of tracks reflecting individual pedal anatomy and behavioural kinematics mediated through substrate properties which may vary both in space and time. Accordingly, the same trackmaker can leave substantially different morphotypes something which must be considered in creating ichnotaxa. In modern practice this is often captured by the collection of a series of 3D track models. We introduce two concepts to help integrate these 3D models into ichnological analysis procedures. The mediotype is based on the idea of using statistically-generated three-dimensional track models (median or mean) of the type specimens to create a composite track to support formal recognition of a ichno type. A representative track (mean and/or median) is created from a set of individual reference tracks or from multiple examples from one or more trackways. In contrast, stat-tracks refer to other digitally generated tracks which may explore variance. For example, they are useful in: understanding the preservation variability of a given track sample; identifying characteristics or unusual track features; or simply as a quantitative comparison tool. Both concepts assist in making ichnotaxonomical interpretations and we argue that they should become part of the standard procedure when instituting new ichnotaxa. As three-dimensional models start to become a standard in publications on vertebrate ichnology, the mediotype and stat-track concepts have the potential to help guiding a revolution in the study of vertebrate ichnology and ichnotaxonomy.

Funder

Swiss Federal Roads Office

PALA16 project

NERC

Alexander von Humboldt-Stiftung Fellowship

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

Reference66 articles.

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