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Paleontology / Developmental biology / Skeletal system / Vertebral column / Prehistoric reptiles / Human vertebral column / Cervical vertebrae / Vertebrate / Hox gene / Biology / Anatomy / Zoology


Homeotic effects, somitogenesis and the evolution of vertebral numbers in recent and fossil amniotes Johannes Müllera,1, Torsten M. Scheyerb, Jason J. Headc, Paul M. Barrettd, Ingmar Werneburgb, Per G. P. Ericsone,
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Document Date: 2010-10-26 00:27:00


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Moscow / Tucson / Mississauga / Boston / New York / Stockholm / Oxford / Berlin / Munich / Cambridge / London / Zürich / /

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Harvard Univ Press / Ward AB / Oxford Univ Press / MIT Press / Norton / Complex Natural Systems / Kluge AG / Tomilin AG / Cook AG / Microsoft / /

Country

Germany / Switzerland / Sweden / Canada / United Kingdom / China / Argentina / /

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Event

Natural Disaster / /

Facility

University of Toronto Mississauga / Hall BK / Natural History Museum / Museum für Naturkunde / Swedish Museum of Natural History / /

IndustryTerm

reagents/analytic tools / squared-change parsimony algorithm / segmentation machinery / /

Organization

Harvard Medical School / Universität Zürich / MIT / Harvard / Indiana Univ / Paläontologisches Institut / Natural Sciences and Engineering Research Council of Canada Discovery Grant / Univ of Arizona / Leibniz-Institut für Evolutions / University of Toronto Mississauga / /

Person

Per G. P. Ericsone / P. David Polly / Paul M. Barrettd / Wang / Marcelo R. Sánchez-Villagrab / Ingmar Werneburgb / Friedrich Pfeil / Heike Mewis / Dodson / David Polly / Diego Polf / Florian Witzmann / Jason J. Headc / Grant Mu / Johannes Müllera / Fernando Abdala / /

Position

G.P. / Author / /

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Guizhou / New York / Florida / Arizona / Massachusetts / /

PublishedMedium

Palaeontology / Natural History / Evol Dev / Nacional / /

Region

southwestern China / /

Technology

Radiation / squared-change parsimony algorithm / gene expression / /

URL

www.pnas.org/cgi/doi/10.1073/pnas.0912622107 / www.pnas.org/cgi/content/full / /

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