search.noResults

search.searching

note.createNoteMessage

search.noResults

search.searching

orderForm.title

orderForm.productCode
orderForm.description
orderForm.quantity
orderForm.itemPrice
orderForm.price
orderForm.totalPrice
orderForm.deliveryDetails.billingAddress
orderForm.deliveryDetails.deliveryAddress
orderForm.noItems
Nagel-Myers et al.—Devonian bivalve ecophenotypic flexibility


Eldredge, N., 1974, Stability, diversity, and speciation in Paleozoic epeiric seas: Journal of Paleontology, v. 48, p. 541–548.


Eldredge, N., Thompson, J.N., Brakefield, P.M., Gavrilets, S., Jablonski, D., Jackson, J.B.C., Lenski, R.E., Lieberman, B.S., McPeek, M.A., and Miller, W., 2005, The dynamics of evolutionary stasis: Paleobiology, v. 31, p. 133–145, doi: 10.1666/0094-8373(2005)031[0133:TDOES]2.0.CO;2.


Eldredge, N., and Gould, S.J., 1972, Punctuated equilibria: An alternative to phyletic gradualism, in Schopf, T.J.M., ed., Models in Paleobiology: San Francisco, California, Freeman, Cooper, p. 82–115.


Ellwood, B.B., Tomkin, J.H., Hassani, A. E., Bultynck, P., Brett, C.E., Schindler, E., Feist, R., and Bartholomew, A.J., 2011, A climate-driven model and development of a floating point time scale for the entire Middle Devonian Givetian Stage:Atest using magnetostratigraphy susceptibility as a climate proxy: Palaeogeography, Palaeoclimatology, Palaeoecology, v. 304, p. 85–95. doi: 10.1016/j.palaeo.2010.10.014.


Estes, S., and Arnold, S.J., 2007, Resolving the paradox of stasis: Models with stabilizing selection explain evolutionary divergence on all timescales: The American Naturalist, v. 169, p. 227–244. doi: 10.1086/510633.


Ettensohn, F.R., 1985, The Catskill Delta complex and the Acadian Orogeny: A model, in Woodrow, D.L., and Sevon, W.D., eds., The Catskill Delta: Geological Society of America Special Paper, v. 201, p. 39–49.


Futuyma, D.J., 2010, Evolutionary constraint and ecological consequences: Evolution, v. 64, p. 1865–1884. doi: 10.1111/j.1558-5646.2010.00960.x.


Gould, S.J., and Eldredge, N., 1977, Punctuated equilibria: The tempo and mode of evolution reconsidered: Paleobiology, v. 3, p. 115–151.


Grasso, T.X., and Wolff, M.P., 1977, Paleoenvironments of the Marcellus and Lower Skaneateles formations of the Otsego County region (Middle Devonian), in Wilson, P.C., ed., Guidebook to Field Excursions, 49th Annual Meeting, New York State Geological Association, p. A1–A50.


Gray, J.E., 1847,Alist of the genera of RecentMollusca, their synonyma and types: Proceedings of the Zoological Society of London, v. 15, p. 129–219.


Hall, J., 1843, Geology of New York, survey of the Fourth Geological District: New York Geological Survey, Natural History of New York, Palaeonto- logy, v. 4, p. 1–683.


Hall, J., 1884, Lamellibranchiata II, descriptions and figures of the Dimyaria of the Upper Helderberg, Hamilton, Portage and Chemung Groups: New York Geological Survey, Natural History of New York, Palaeontology, v. 5, no. 1, p. 269–561.


Hall, J., 1883, Lamellibranchiata I, plates and explanations: New York Geological Survey, Natural History of New York, Paleontology, v. 5, no. 1, p. 1–20.


397


Linnaeus, C., 1758, Systema Naturae per Regna Tria Naturae, (tenth edition), Volume 1, , Regnum Animale, Stockholm, Laurentii Salvii, 824 p.


Linsley, D.M., 1986, Stratigraphic and paleontological analysis of coarsening upward cycles in the upper Marcellus and Skaneateles formations of central New York [M.A. thesis]: Binghamton, New York, Binghamton University, 121 p.


Linsley, D.M., 1994, Devonian paleontology of New York, Containing the Brachiopods, Bivalves, Rostroconchs, Gastropods, Tergomyans, Ammo- noids, Trilobites, Eurypterids, and Phyllocarids, Based on the Lithographs of James Hall and John Clarke: Paleontological Research Institution, Special Publication, v. 21, 472 p.


McAlester, A.L., 1962a, Upper Devonian pelecypods of the New York Chemung Stage: Peabody Museum of Natural History Bulletin, v. 16, p. 1–88.


McAlester, A.L., 1962b, A New Devonian pelecypod from Alaska and its bearing on pteroid phylogeny: Peabody Museum of Natural History Bulletin, v. 58, p. 1–13.


McAlester, A.L., 1963, Pelecypods as stratigraphic guides in theAppalachian Upper Devonian: Geological Society of America Bulletin, v. 74, p. 1209–1224.


Miller, S.A., 1877, American Palaeozoic Fossils:ACatalogue of the Genera and Species: Cincinnati, S.A. Miller, 253 p.


Newell, N.D., 1965, Classification of the Bivalvia: American Museum Novitates, v. 2206, p. 1–25.


Newell, N.D., and LaRocque, A., 1969, Family Pterineidae Miller 1877, in Cox, L.R., et al.., eds., Treatise on Invertebrate Paleontology, Part N, Mollusca 6, Bivalvia 1: Boulder, Colorado, and Lawrence, Kansas, Geological Society of America (and University of Kansas Press), p. N298–N302.


Pandolfi, J.M., and Burke, C.D., 1989, Shape analysis of two sympatric coral species: Implications for taxonomy and evolution: Lethaia, v. 22, p. 183–193.


Olszewski, T.D., and Patzkowsky, M.E., 2001, Measuring recurrence of marine biotic gradients: A case study from the Pennsylvanian-Permian mid- continent: Palaios, v. 16, p. 444–460. doi: 10.1669/0883-1351(2001) 016<0444:MROMBG>2.0.CO;2.


Patzkowsky, M.E., and Holland, S.M., 1997, Patterns of turnover in Middle and Upper Ordovician brachiopods of the eastern United States: A test of coordinated stasis: Paleobiology, v. 23, p. 420–443.


Pfennig, D.W., Wund, M.A., Snell-Rood, E.C., Cruickshank, T., Schlichting, C.D., and Moczek, A.P., 2010, Phenotypic plasticity’s impacts on diversification and speciation: Trends in Ecology & Evolution, v. 25, no. 8, p. 459–467. doi: 10.1016/j.tree.2010.05.006.


Hammer, Ø., Harper, D.A.T., and Ryan, P.D., 2001, PAST: Paleontological statistics software package for education and data analysis: Palaeontologia Electronica, v. 4, p. 1–9, http://palaeo-electronica.org/2001_1/past/past.pdf (accessed 19 December 2017).


Hansen, T.F., and Houle, D., 2004, Evolvability, stabilizing selection, and the problem of stasis, in Pigliucci, M., and Preston, K., eds., Phenotypic Inte- gration: Oxford, UK, Oxford University Press, p. 130–150.


Hennessy, R.J., McLearie, S., Kinsella, A., and Waddington, J.L., 2005, Facial surface analysis by 3D laser scanning and geometric morphometrics in relation to sexual dimorphism in cerebral-craniofacial morphogenesis and cognitive function: Journal of Anatomy, v. 207, p. 283–295. doi: 10.1111/ j.1469-7580.2005.00444.x.


Hoffmann, A.A., and Hercus, M.J., 2000, Environmental stress as an evolutionary force: Bioscience, v. 50, p. 217–226. doi: 10.1641/0006-3568 (2000)050[0217:ESAAEF]2.3.C);2.


Hoffmann, A.A., and Parsons, P.A., 1997, Extreme environmental change and evolution: New York, Cambridge University Press, 272 p.


Ivany, L.C., 1996, Coordinated stasis or coordinated turnover? Exploring intrinsic vs. extrinsic controls on pattern: Palaeogeography, Palaeoclima- tology, Palaeoecology, v. 127, p. 239–256.


Ivany, L.C., Brett, C.E., Wall, H.L.B., Wall, P.D., and Handley, J.C., 2009, Relative taxonomic and ecologic stability in Devonian marine faunas of New York State: A test of coordinated stasis: Paleobiology, v. 35, p. 499–524. doi: 10.1666/0094-8373-35.4.499.


Johnston, P.A., 1993, Lower Devonian Pelecypoda from southeastern Australia: Association of Australasian Palaeontologists Memoir, v. 14, p. 1–134.


Klingenberg, C.P., 2011, MorphoJ: An integrated software package for geometric morphometrics: Molecular Ecology Resources, v. 11, no. 2, p. 353–357. doi: 10.1111/j.1755-0998.2010.02924.x.


La Rocque, A., 1950, Pre-traverse Devonian pelecypods of Michigan: Contributions from the Museum of Paleontology, University of Michigan, v. 12, no. 10, p. 271–366.


Lash, G.G., and Engelder, T., 2011, Thickness trends and sequence stratigraphy of the Middle Devonian Marcellus Formation, Appalachian Basin: Impli- cations for Acadian foreland basin evolution: AAPG Bulletin, v. 95, no. 1, p. 61–103. doi: 10.1306/06301009150.


Lieberman, B.S., Brett, C.E., and Eldredge, N., 1995, A study of stasis and change in two species lineages from the Middle Devonian of New York State: Paleobiology, v. 21, p. 15–27.


Rathmann, S.D., and Amler, M.R.W., 1992, Bivalven aus dem Unter-Karbon von Aprath (Wuppertal, Bergisches Land): Geologica et Palaeontologica, v. 26, p. 35–71.


Reeve, L.A., 1857, Monograph of the genus Avicula, in Reeve, L.A., ed., Conchologia Iconica, v. vol. 10: London, Reeve, Brothers, p. 1–160.


Rode, A.L., 2004, Phylogenetic revision of Leptodesma (Leiopteria) (Devonian: Bivalvia): Postilla, v. 229, p. 2–29.


Rohlf, F.J., 1990, Morphometrics: Annual Review of Ecology and Systematics, v. 21, p. 299–316.


Rohlf, F.J., 1999, Shape statistics: Procrustes superimpositions and tangent spaces: Journal of Classification, v. 16, p. 197–223.


Rohlf, F.J., 2004, tpsUtil, file utility program, version 1.26: Department of Ecology and Evolution, State University of New York at Stony Brook, http://tpsutil.software.informer.com/.


Rohlf, F.J., 2005, tpsDig, digitize landmarks and outlines, version 2.05: Department of Ecology and Evolution, State University of New York at Stony Brook, http://tpsdig2.software.informer.com/.


Roth, V.L., and Mercer, J.M., 2000, Morphometrics in development and evolution: American Zoologist, v. 40, p. 801–810. doi: 10.1668/0003-1569 (2000)040[0801:MIDAE]2.0.CO;2.


Slice, D.E., 2001, Landmark coordinates aligned by Procrustes analysis do not lie in Kendall’s shape space: Systematic Biology, v. 50, p. 141–149. doi: 10.1080/10635150119110.


Tëmkin, I., 2006,Morphological perspective on the classification and evolution of Recent Pterioidea (Mollusca: Bivalvia): Zoological Journal of the Linnean Society,v.148,p.253–312. doi: 10.1111/j.1096-3642.2006.00257.x.


Wada, K.T., and Tëmkin, I., 2008, Taxonomy and phylogeny, in Southgate, P., and Lucas, J., eds., The Pearl Oyster: Amsterdam, Elsevier, p. 37–75. doi: 10.1016/B978-0-444-52976.3.00002-4.


Webster, M., and Sheets, H.D., 2010,Apractical introduction to landmark-based geometric morphometrics: Quantitative Methods in Paleobiology, v. 16, p. 168–188.


Williams, H.S., 1908, On the revision of the mollusk genus Pterinea Goldfuss: Proceedings of the United States National Museum, v. 34, p. 83–90.


Zelditch, M.L., Swiderski, D.L., and Sheets, H.D., 2012,GeometricMorphometrics for Biologists: A Primer: New York, Elsevier Academic Press, 478 p.


Accepted 4 November 2017


Page 1  |  Page 2  |  Page 3  |  Page 4  |  Page 5  |  Page 6  |  Page 7  |  Page 8  |  Page 9  |  Page 10  |  Page 11  |  Page 12  |  Page 13  |  Page 14  |  Page 15  |  Page 16  |  Page 17  |  Page 18  |  Page 19  |  Page 20  |  Page 21  |  Page 22  |  Page 23  |  Page 24  |  Page 25  |  Page 26  |  Page 27  |  Page 28  |  Page 29  |  Page 30  |  Page 31  |  Page 32  |  Page 33  |  Page 34  |  Page 35  |  Page 36  |  Page 37  |  Page 38  |  Page 39  |  Page 40  |  Page 41  |  Page 42  |  Page 43  |  Page 44  |  Page 45  |  Page 46  |  Page 47  |  Page 48  |  Page 49  |  Page 50  |  Page 51  |  Page 52  |  Page 53  |  Page 54  |  Page 55  |  Page 56  |  Page 57  |  Page 58  |  Page 59  |  Page 60  |  Page 61  |  Page 62  |  Page 63  |  Page 64  |  Page 65  |  Page 66  |  Page 67  |  Page 68  |  Page 69  |  Page 70  |  Page 71  |  Page 72  |  Page 73  |  Page 74  |  Page 75  |  Page 76  |  Page 77  |  Page 78  |  Page 79  |  Page 80  |  Page 81  |  Page 82  |  Page 83  |  Page 84  |  Page 85  |  Page 86  |  Page 87  |  Page 88  |  Page 89  |  Page 90  |  Page 91  |  Page 92  |  Page 93  |  Page 94  |  Page 95  |  Page 96  |  Page 97  |  Page 98  |  Page 99  |  Page 100  |  Page 101  |  Page 102  |  Page 103  |  Page 104  |  Page 105  |  Page 106  |  Page 107  |  Page 108  |  Page 109  |  Page 110  |  Page 111  |  Page 112  |  Page 113  |  Page 114  |  Page 115  |  Page 116  |  Page 117  |  Page 118  |  Page 119  |  Page 120  |  Page 121  |  Page 122  |  Page 123  |  Page 124  |  Page 125  |  Page 126  |  Page 127  |  Page 128  |  Page 129  |  Page 130  |  Page 131  |  Page 132  |  Page 133  |  Page 134  |  Page 135  |  Page 136  |  Page 137  |  Page 138  |  Page 139  |  Page 140  |  Page 141  |  Page 142  |  Page 143  |  Page 144  |  Page 145  |  Page 146  |  Page 147  |  Page 148  |  Page 149  |  Page 150  |  Page 151  |  Page 152  |  Page 153  |  Page 154  |  Page 155  |  Page 156  |  Page 157  |  Page 158  |  Page 159  |  Page 160  |  Page 161  |  Page 162  |  Page 163  |  Page 164  |  Page 165  |  Page 166  |  Page 167  |  Page 168  |  Page 169  |  Page 170  |  Page 171  |  Page 172  |  Page 173  |  Page 174  |  Page 175  |  Page 176  |  Page 177  |  Page 178  |  Page 179  |  Page 180  |  Page 181  |  Page 182  |  Page 183  |  Page 184  |  Page 185  |  Page 186  |  Page 187  |  Page 188  |  Page 189  |  Page 190  |  Page 191  |  Page 192  |  Page 193  |  Page 194  |  Page 195  |  Page 196  |  Page 197  |  Page 198  |  Page 199  |  Page 200  |  Page 201  |  Page 202  |  Page 203  |  Page 204  |  Page 205  |  Page 206  |  Page 207  |  Page 208  |  Page 209  |  Page 210  |  Page 211  |  Page 212  |  Page 213  |  Page 214  |  Page 215  |  Page 216  |  Page 217  |  Page 218  |  Page 219  |  Page 220