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  1. NTU Scholars
  2. 生命科學院
  3. 生命科學系
Please use this identifier to cite or link to this item: https://scholars.lib.ntu.edu.tw/handle/123456789/587460
Title: Thatchtelithichnus on a pliocene grey whale mandible and barnacles as possible tracemakers
Authors: Collareta, Alberto
Tsai, Cheng Hsiu 
Coletti, Giovanni
Bosselaers, Mark
Keywords: Actuopalaeontology | Anellusichnus | Belgium | Bioerosion | Biostratinomy | Karethraichnus | Lillo Formation | Oorderen Sands Member | Palaeoichnology | Taphonomy;Actuopalaeontology; Anellusichnus; Belgium; Bioerosion; Biostratinomy; Karethraichnus; Lillo Formation; Oorderen Sands Member; Palaeoichnology; Taphonomy
Issue Date: 1-Oct-2021
Publisher: Gebruder Borntraeger Verlagsbuchhandlung
Journal Volume: 302
Journal Issue: 1
Start page/Pages: 53-61
Source: Neues Jahrbuch fur Geologie und Palaontologie - Abhandlungen
Abstract: 
The ichnogenus Thatchtelithichnus Zonneveld, Bartels, Gunnell & McHugh was created for ring-shaped, roughly circular grooves affecting the outer surface of plastral bones of Eocene geoemydid turtles. Such traces were assumed to be attachment scars of aquatic ectoparasites (possibly ticks, leeches or liver flukes). Despite its well-distinctive aspect, Thatchtelithichnus has only been reported subsequently by few works and mostly from the plastron-bottom of freshwater turtles. Here we provide the first record of Thatchtelithichnus from a fossil mammal bone, namely, a partial grey whale mandible from the Belgian Pliocene. Thatchtelithichnus traces from this cetacean fossil commonly penetrate into the outermost portion of the cancellous bone, achieving a maximum depth of about 2 mm. The external margin of these grooves is sharply defined and commonly follows an elliptical, somewhat festooned path. A scrutiny of recent literature in palaeontological and forensic taphonomy as well as new first-hand observations reveal that Thatchtelithichnus-like structures can be produced by the attachment of barnacles on the surface of mammal bones that suffered long-lasting exposure on the seafloor. When encrusting bare bones in marine settings, barnacles can thus produce a variety of traces, including Anellusichnus Santos, Mayoral & Muñiz, Thatchtelithichnus and, possibly, Karethraichnus lakkos Zonneveld, Bartels, Gunnell & McHugh. The modes of trace formation are still largely to be understood, but observations on how barnacles damage paint coatings during growth might help us in envisaging how this kind of process works.
URI: https://scholars.lib.ntu.edu.tw/handle/123456789/587460
ISSN: 00777749
DOI: 10.1127/njgpa/2021/1018
SDG/Keyword: bioerosion; bone; ichnology; paleontology; Pliocene; taphonomy; turtle; whale; Belgium; Cetacea; Eschrichtiidae; Hirudinida; Mammalia; Testudines; Thoracica
[SDGs]SDG14
Appears in Collections:生命科學系

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