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Boyer, D.M. & Harrington, A.R. (2018). Scaling of bony canals for encephalic vessels in euarchontans: Implications for the role of the vertebral artery and brain metabolism. Journal of Human Evolution, 114, 85-101.<br> | Boyer, D.M. & Harrington, A.R. (2018). Scaling of bony canals for encephalic vessels in euarchontans: Implications for the role of the vertebral artery and brain metabolism. Journal of Human Evolution, 114, 85-101.<br> | ||
Boyer, D.M., and A.R. Harrington. (2019). New estimates of blood flow rates in the vertebral artery of euarchontans and their implications for encephalic blood flow scaling: a response to Seymour and Snelling (2019). Journal of Human Evolution, 128, 93–98. | Boyer, D.M., and A.R. Harrington. (2019). New estimates of blood flow rates in the vertebral artery of euarchontans and their implications for encephalic blood flow scaling: a response to Seymour and Snelling (2019). Journal of Human Evolution, 128, 93–98.<br> | ||
Boyer, D.M., Yapuncich, G.S., Dunham, N.T., McNamara, A., Shapiro, L.J., Hieronymus, T.L., & Young, J.W. (2019). My branch is your branch: Talar morphology correlates with relative substrate size in platyrrhines at Tiputini Biodiversity Station, Ecuador. Journal of Human Evolution, 133, 23-31.<br> | Boyer, D.M., Yapuncich, G.S., Dunham, N.T., McNamara, A., Shapiro, L.J., Hieronymus, T.L., & Young, J.W. (2019). My branch is your branch: Talar morphology correlates with relative substrate size in platyrrhines at Tiputini Biodiversity Station, Ecuador. Journal of Human Evolution, 133, 23-31.<br> | ||
Buser, T.J., O.F. Boyd, Á. Cortés, C.M. Donatelli, M.A. Kolmann, J.L. Luparell, J.A. Pfeiffenberger, B.L. Sidlauskas, and A.P. Summers. (2020). The natural historian’s guide to the CT galaxy: step-by-step instructions for preparing and analyzing computed tomographic (CT) data using cross-platform, open access software. Integrative Organismal Biology, 2, obaa009.<br> | |||
Buser, T.J., Finnegan, D.L., Summers, A.P., & Kolmann, M.A. (2019). Have niche, will travel. New means of linking diet and ecomorphology reveals niche conservatism in freshwater cottoid fishes. Integrative Organismal Biology, 1, obz023.<br> | Buser, T.J., Finnegan, D.L., Summers, A.P., & Kolmann, M.A. (2019). Have niche, will travel. New means of linking diet and ecomorphology reveals niche conservatism in freshwater cottoid fishes. Integrative Organismal Biology, 1, obz023.<br> | ||
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Farina, S.C.,Knope, M.L., Corn, K.A., Summers, A.P., & Bemis, W.B. (2019). Functional coupling in the evolution of suction feeding and gill ventilation of sculpins (Perciformes: Cottoidei), Integrative and Comparative Biology, icz022.<br> | Farina, S.C.,Knope, M.L., Corn, K.A., Summers, A.P., & Bemis, W.B. (2019). Functional coupling in the evolution of suction feeding and gill ventilation of sculpins (Perciformes: Cottoidei), Integrative and Comparative Biology, icz022.<br> | ||
Ferry, L.A., E.W. Paig-Tran, A.P. Summers, and K.F. Liem. (2019). Extreme premaxillary protrusion in the king-of-the-salmon, ''Trachipterus altivelis''. Journal of Morphology, 280, 1865–1870. | Ferry, L.A., E.W. Paig-Tran, A.P. Summers, and K.F. Liem. (2019). Extreme premaxillary protrusion in the king-of-the-salmon, ''Trachipterus altivelis''. Journal of Morphology, 280, 1865–1870.<br> | ||
Fried, P., Woodward, J., Brown, D., Harvell, D., & Hanken, J. (2020). 3D scanning of antique glass by combining photography and computed tomography. Digital Applications in Archaeology and Cultural Heritage, 18, e00147.<br> | Fried, P., Woodward, J., Brown, D., Harvell, D., & Hanken, J. (2020). 3D scanning of antique glass by combining photography and computed tomography. Digital Applications in Archaeology and Cultural Heritage, 18, e00147.<br> | ||
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Paluh, D.J., Stanley, E.L., & Blackburn, D.C. (2020). Evolution of hyperossification expands skull diversity in frogs. Proceedings of the National Academy of Sciences USA, 117, 8554-8562.<br> | Paluh, D.J., Stanley, E.L., & Blackburn, D.C. (2020). Evolution of hyperossification expands skull diversity in frogs. Proceedings of the National Academy of Sciences USA, 117, 8554-8562.<br> | ||
Parra Olea, G., M.G. Garcia-Castillo, S.M. Rovito, J. Maisano, J. Hanken, & D.B. Wake. (2020). Descriptions of five new species of the salamander genus ''Chiropterotriton'' (Caudata: Plethodontidae) from eastern Mexico and the status of three currently recognized taxa. PeerJ, 8, e8800. <br> | Parra Olea, G., M.G. Garcia-Castillo, S.M. Rovito, J. Maisano, J. Hanken, & D.B. Wake. (2020). Descriptions of five new species of the salamander genus ''Chiropterotriton'' (Caudata: Plethodontidae) from eastern Mexico and the status of three currently recognized taxa. PeerJ, 8, e8800.<br> | ||
Prestridge, H.L., & Conway, K.L. (2019). TCWC – The Collection of Fishes at the Biodiversity Research and Teaching Collections, Texas A&M University. Boletim Sociedade Brasileira de Ictiologia, 129, 121-124.<br> | Prestridge, H.L., & Conway, K.L. (2019). TCWC – The Collection of Fishes at the Biodiversity Research and Teaching Collections, Texas A&M University. Boletim Sociedade Brasileira de Ictiologia, 129, 121-124.<br> | ||
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Stocker, M.R., Nesbitt, S.J., Kligman, B.T., Paluh, D.J., Marsh, A.D., Blackburn, D.C., & Parker, W.G. (2019). The earliest equatorial record of frogs from the Late Triassic of Arizona. Biology Letters, 15(2), 20180922.<br> | Stocker, M.R., Nesbitt, S.J., Kligman, B.T., Paluh, D.J., Marsh, A.D., Blackburn, D.C., & Parker, W.G. (2019). The earliest equatorial record of frogs from the Late Triassic of Arizona. Biology Letters, 15(2), 20180922.<br> | ||
Štrus, J., M. Tušek-Žnidarič, U. Repnik, A. Blejec, and A.P. Summers (2019) Microscopy of crustacean cuticle: formation of a flexible extracellular matrix in moulting sea slaters ''Ligia pallasii''. Journal of the Marine Biological Association of the United Kingdom, 99, 857-865. <br> | Štrus, J., M. Tušek-Žnidarič, U. Repnik, A. Blejec, and A.P. Summers (2019) Microscopy of crustacean cuticle: formation of a flexible extracellular matrix in moulting sea slaters ''Ligia pallasii''. Journal of the Marine Biological Association of the United Kingdom, 99, 857-865.<br> | ||
Vijayakumar, S.P., Pyron, R.A., Dinesh, K.P., Torsekar, V.R., Srikanthan, A.N., Swamy, P., Stanley, E.L., Blackburn, D.C., & Shanker, K. (2019). A new ancient lineage of frog (Anura: Nyctibatrachidae: Astrobatrachinae subfam. nov.) endemic to the Western Ghats of Peninsular India. PeerJ, 7.<br> | Vijayakumar, S.P., Pyron, R.A., Dinesh, K.P., Torsekar, V.R., Srikanthan, A.N., Swamy, P., Stanley, E.L., Blackburn, D.C., & Shanker, K. (2019). A new ancient lineage of frog (Anura: Nyctibatrachidae: Astrobatrachinae subfam. nov.) endemic to the Western Ghats of Peninsular India. PeerJ, 7.<br> |
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