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      Journal of Urban Archaeology is the first dedicated scholarly journal to recognize urban archaeology as a field within its own right. To submit to this journal, click here

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      Anomalocivitas — Editorial

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      Journal of Urban Archaeology
      Brepols Publishers

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          The Nature of Cities: The Scope and Limits of Urban Theory

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            The Urban Revolution

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              Acute vision in the giant Cambrian predator Anomalocaris and the origin of compound eyes.

              Until recently, intricate details of the optical design of non-biomineralized arthropod eyes remained elusive in Cambrian Burgess-Shale-type deposits, despite exceptional preservation of soft-part anatomy in such Konservat-Lagerstätten. The structure and development of ommatidia in arthropod compound eyes support a single origin some time before the latest common ancestor of crown-group arthropods, but the appearance of compound eyes in the arthropod stem group has been poorly constrained in the absence of adequate fossils. Here we report 2-3-cm paired eyes from the early Cambrian (approximately 515 million years old) Emu Bay Shale of South Australia, assigned to the Cambrian apex predator Anomalocaris. Their preserved visual surfaces are composed of at least 16,000 hexagonally packed ommatidial lenses (in a single eye), rivalling the most acute compound eyes in modern arthropods. The specimens show two distinct taphonomic modes, preserved as iron oxide (after pyrite) and calcium phosphate, demonstrating that disparate styles of early diagenetic mineralization can replicate the same type of extracellular tissue (that is, cuticle) within a single Burgess-Shale-type deposit. These fossils also provide compelling evidence for the arthropod affinities of anomalocaridids, push the origin of compound eyes deeper down the arthropod stem lineage, and indicate that the compound eye evolved before such features as a hardened exoskeleton. The inferred acuity of the anomalocaridid eye is consistent with other evidence that these animals were highly mobile visual predators in the water column. The existence of large, macrophagous nektonic predators possessing sharp vision--such as Anomalocaris--within the early Cambrian ecosystem probably helped to accelerate the escalatory 'arms race' that began over half a billion years ago.
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                Author and article information

                Journal
                jua
                jua
                Journal of Urban Archaeology
                Brepols Publishers (Turnhout, Belgium )
                2736-2426
                2736-2434
                January 2022
                : 5
                : 13-18
                Article
                10.1484/J.JUA.5.129840
                0544f9ce-5fee-46f7-8ab3-7e17892ef851

                Open-access

                History

                Urban studies,Archaeology,History
                Urban studies, Archaeology, History

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