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14,185 results for “phylogenies”
Fig. 11 in Phylogeny and Geological History of the Cynipoid Wasps (Hymenoptera: Cynipoidea)
Fig. 11. Photomicrograph of holotype female of Anteucoila delicia Liu and Engel, new genus and species (RTMP-96-9-785).
Fig. 17 in Phylogeny and Geological History of the Cynipoid Wasps (Hymenoptera: Cynipoidea)
Fig. 17. Photomicrograph of holotype male of Tanaoknemus ecarinatus Liu and Engel, new genus and species (CAS-78).
Fig. 7 in Phylogeny and Geological History of the Cynipoid Wasps (Hymenoptera: Cynipoidea)
Fig. 7. Photomicrograph of holotype female of Goerania petiolata Liu and Engel, new genus and species (CAS).
Fig. 3 in Phylogeny and Geological History of the Cynipoid Wasps (Hymenoptera: Cynipoidea)
Fig. 3. Photomicrograph of holotype female of Stolamissus mirabilis Liu and Engel, new genus and species (NJ-709).
Fig. 15 in Phylogeny and Geological History of the Cynipoid Wasps (Hymenoptera: Cynipoidea)
Fig. 15. Photomicrograph of holotype female of Syneucoila magnifica Liu and Engel, new genus and species (NJ-1075).
Fig. 6 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)
Fig. 6. Diversification of Old World suboscines. Maximum likelihood estimate of phylogeny from RAG- 1 and RAG-2 combined data set with thickened branches supported by parsimony bootstrap proportions above 80 and Bayesian posterior probability greater than 0.95 (see figs. 2, 3 for all support values). Date estimates derived with penalized likelihood (Sanderson, 2003) and a calibration of 90–82 Ma between Acanthisitta and all other passerines. Horizontal gray bars on nodes indicate ±2 standard deviations of age estimates from bootstrap analysis. The two multicolored species names indicate that the taxon is found in more than one region. Bird images of pittas (C. Rose), broadbills (I. Lewington), asities (J. Cox) and Sapayoa (J. Wilczur) are from Handbook of the Birds of the World, Vols. 8 and 9, copyright Lynx Ediciones (Josep del Hoyo).
Fig. 5 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)
Fig. 5. Parsimonious reconstruction of the evolution of diet in the Eurylaimides. Key: black branches, insectivorous; dark gray branches, frugivorous; light gray branches, nectivorous; and dotted branches, polymorphic/equivocal.
Fig. 3 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)
Fig. 3. Maximum likelihood (ML) estimate of phylogeny from sequences of the RAG-1 and RAG-2 nuclear exons. Numbers by nodes indicate MP bootstrap support/ ML bootstrap support/ Bayesian posterior probability. Asterisks (*) indicate bootstrap support of 100% or posterior probability of 1.0.
Fig. 2 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)
Fig. 2. Strict consensus of four maximum parsimony (MP) trees from analysis of combined RAG-1, RAG-2, Fib5, and morphological characters. Numbers by nodes indicate MP bootstrap support.
Fig. 4 in Phylogeny and Evolutionary History of Old World Suboscine Birds (Aves: Eurylaimides)
Fig. 4. Single MP tree from analysis of RAG-1, RAG-2, and Fib5 data. Numbers above branches indicate MP bootstrap support, numbers below branches are ML bootstrap support.
Fig. 24. Ptychochromis grandidieri, AMNH 88018 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 24. Ptychochromis grandidieri, AMNH 88018: (A) palatine, (B) LPJ, (C) first gill arch, (D) infraorbital series, and (E) premaxilla.
Fig. 16 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 16. Ptychochromis loisellei, new species, paratype, AMNH 231258: (A) palatine, (B) LPJ, (C) first gill arch, and (D) infraorbital series.
Fig. 20 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 20. Ptychochromis insolitus, new species, holotype, UMMZ 237066: (A) palatine, (B) LPJ, (C) first gill arch, and (D) infraorbital series.
Fig. 7 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 7. Isolated upper pharyngeal jaw (ventral view) of (A) Ptychochromis onilahy (MNHN 1962-0201) and (B) Katria katria (AMNH 93701). Ptychochromis is diagnosed among cichlids by the presence of a ''free'' toothplate associated with, but not fused to, the second epibranchial bone (indicated by arrow).
Fig. 1 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 1. Map of Madagascar indicating the verified geographic ranges for currently recognized species of Ptychochromis.
Fig. 2 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 2. Strict consensus of nine equally most-parsimonious trees (length 1014, CI 5 0.67, RI 5 0.61) recovered, based on the simultaneous analysis of 2029 aligned mitochondrial and nuclear nucleotide characters and 21 morphological transformations. Unambiguously optimized morphological features supporting recovered nodes are designated by solid (unique feature) and open (homoplasious feature) circles. Character numbers and states correspond to the morphological transformations listed in table 1. Support indices at nodes are presented in parenthesis (Jackknife/Bremer support).
Fig. 4 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 4. Isolated fourth ceratobranchial elements and associated structures (dorsomedial view) in (A) Etroplus, (B) Ptychochromoides, and (C) Katria.
Fig. 23 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 23. Ptychochromis grandidieri, holotype, MNHN A.4147, 118.4 mm SL; Madagascar; region of high forests; Humblot and Grandidier.
Fig. 12 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 12. Ptychochromis onilahy, new species, paratype, MNHN 2006-0780: (A) palatine, (B) LPJ, (C) first gill arch, and (D) infraorbital series.
Fig. 13 in Phylogeny and Taxonomic Revision of the Endemic Malagasy Genus Ptychochromis (Teleostei: Cichlidae), with the Description of Five New Species and a Diagnosis for Katria, New Genus
Fig. 13. Ptychochromis makira, new species, holotype, AMNH 237131, adult, 146.2 mm SL, northeastern Madagascar, Toamasina Province, north of Maroansetra, near town of Marovonona, Antainambalana River. Scale bar 5 1 cm. Drawing by Ian Hart.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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