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Peachey, T. J.

Publications and source records attributed to Peachey, T. J..

2 recordsLinked to original sources

Brain size reduction in dogs was already established at least by the Late Neolithic of western Europe, 5,000 years ago

The timing and causes of brain size reduction in domestic dogs remain uncertain. Using endocasts volume as a proxy for brain size, this study provides a first insight into long-term brain size evolution in the wolf-dog lineage. We compared endocranial volumes of 185 modern and 22 prehistoric wolves and dogs ranging from Western Europe to Australia, and spanning the Pleniglacial (35 Ky BP) to the Late Neolithic (5 Ky BP). Our results reveal that Pleistocene so called "protodogs" show no brain size reduction compared to coeval Pleistocene wolves. Instead, we observed a slightly larger relative endocranial volume in the 35,000-year-old protodog from Goyet, which could suggest increased behavioural flexibility in the presence of humans. This hypothesis needs to be tested further. In contrast, Late Neolithic dogs show a drastic 46% brain size reduction with an endocranial volumes comparable to modern small terrier and toy breeds. The anxious and wary temperaments of these Late Neolithic dogs, induced by the brain tissue reorganization associated with such a size reduction, could have served an alerting purpose, among the many other potential roles dogs could have played within this Late Neolithic socio-ecosystems.

zoology↗

Ozboneviz: An Australian Precedent in FAIR 3D Imagery and Extended Biodiversity Collections

Billions of specimens are in biodiversity collections worldwide, and this infrastructure is crucial for research on Earths natural history. Three-dimensional (3D) imagery of specimens is an increasingly important part of the Digital Extended Specimen network of metadata. Open access, high fidelity 3D imagery of biodiversity specimens improves researcher efficiency, equity and increases public engagement with collections. We introduce Ozboneviz, an open access collection of FAIR (Findable, Accessible, Interoperable, Reusable) 3D imagery aiming to enhance research capacity in Australasian vertebrate skeletal morphology. Ozboneviz is an Australian test case demonstrating the feasibility of creating multi-institutional, FAIR 3D biodiversity imagery collections. We outline project design, challenges, and use by the international research community. We then discuss the urgent need for investment in infrastructure and curatorial support to progress the digitisation of Australian biodiversity collections in a way that maximises stakeholder benefit and facilitates 3D data discoverability and retrieval.

zoology↗