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FIGURE 15 in Taxonomic revision and cladistic analysis of the genus Metalibitia Roewer, 1912 (Opiliones, Cosmetidae, Cosmetinae)
FIGURE 15. Relationship hypothesis for species of the cosmetid genus Metalibitia. Strict consensus tree (L= 203; C.I.= 0.49; R.I.= 0.51) based on two most parsimonious trees (L= 197; C.I.= 0.50; R.I.= 0.54). Black circles indicate unique synapomorphies, white circles indicate homoplastic synapomorphies. Ambiguous characters were optimized under ACCTRAN. Black numbers under tree nodes indicate Goodman-Bremer support.
FIGURE 2 in Taxonomic revision and cladistic analysis of the genus Metalibitia Roewer, 1912 (Opiliones, Cosmetidae, Cosmetinae)
FIGURE 2. Habitus. Dorsal View of male of Metalibitia spp.: (A) M. paraguayensis (MACN 27632), (B) M. rosascostai (FCE 321), (C) M. santaremis (SMF 1491/13), (D) M. tibialis (SMF 122/4), (E) M. abuna sp. nov. (MZSP 58503), (F) Lateral View of M. paraguayensis. Scale: 1 mm.
FIGURE 1 in Taxonomic revision and cladistic analysis of the genus Metalibitia Roewer, 1912 (Opiliones, Cosmetidae, Cosmetinae)
FIGURE 1. Habitus. Dorsal View of male of Metalibitia spp.: (A) M. adunca (SMF 143/9), (B) M. argentina (MACN 4497), (C) M. borellii (MNRJ 1374), (D) M. brasiliensis (MZSP 18313). Scale: 1 mm.
FIGURE 12 in Taxonomic revision and cladistic analysis of the genus Metalibitia Roewer, 1912 (Opiliones, Cosmetidae, Cosmetinae)
FIGURE 12. Penis of Metalibitia spp. (A–C) M. paraguayensis (MNRJ 5515): (A) Dorsal View, (B) Lateral View, (C) Ventral View. (D–F) M. rosascostai (MZSP 16055): (D) Dorsal View, (E) Lateral View, (F) Ventral View. (G–I) M. santaremis (MNRJ 4602): (G) Dorsal View, (H) Lateral View, (I) Ventral View. Scales: A–C; G–I: 10 µm; D–F: 20 µm.
FIGURE 11 in Taxonomic revision and cladistic analysis of the genus Metalibitia Roewer, 1912 (Opiliones, Cosmetidae, Cosmetinae)
FIGURE 11. Penis of Metalibitia spp. (A–C) M. argentina (MACN 4497): (A) Dorsal View, (B) Lateral View, (C) Ventral View, white arrow shows macrosetae groups, according to Kury & Villarreal (2015), Group A- dorso-basal; Group B- latero-Ventral proximal; Group C- apical; Group D- median latero-dorsais and Group E- Ventral. (D–F) M. borellii (MNRJ 1374): (D) Dorsal View, (E) Lateral View, (F) Ventral View. (G–I) M. brasiliensis (MZSP 18313): (G) Dorsal View, (H) Lateral View, (I) Ventral View. Scale: A–F 20 µm; G, I: 10 µm; H: 30 µm.
FIGURE 7 in Taxonomic revision and cladistic analysis of the genus Metalibitia Roewer, 1912 (Opiliones, Cosmetidae, Cosmetinae)
FIGURE 7. Dorsal View of male leg IV (patella and tibia) of Metalibitia spp. (A–D): (A) M. adunca (SMF 143/9), (B) M. argentina (MACN 4497), (C) M. borellii (MNRJ 1374), (D) M. brasiliensis (MZSP 18313). (E–H) Ventral View: (E) M. adunca (SMF 143/9), (F) M. argentina (MACN 4497), (G) M. borellii (MNRJ 1374), (H) M. brasiliensis (MZSP 18313). Scale: 1 mm.
FIGURE 14 in Taxonomic revision and cladistic analysis of the genus Metalibitia Roewer, 1912 (Opiliones, Cosmetidae, Cosmetinae)
FIGURE 14. Records of geographical distribution of Metalibitia spp.: Argentina, Brazil, BoliVia, Paraguay and Uruguay.
FIGURE 13 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 13. Gaster of Cardiocondyla atalanta in dorsal aspect. Australia: Queensland: Lockhart-11 km NW, 2014.07.22, leg. Heinze, No AUS24 [12.74°S, 143.26°E].
FIGURE 16 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 16. Cardiocondyla paranuda in lateral aspect. Australia: Kunoth Paddock [23.517°S, 133.210°E], leg. Greenslade 24 October 1974.
FIGURE 15 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 15. Head of Cardiocondyla paranuda in dorsal aspect. Australia: Kunoth Paddock [23.517°S, 133.210°E], leg. Greenslade 24 October 1974.
FIGURE 14 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 14. Gaster of Cardiocondyla paranuda in dorsal aspect. Australia: Kunoth Paddock [23.517°S, 133.210°E], leg. Greenslade 24 October 1974.
FIGURE 9. Phylogenetic tree estimated from a 871 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 9. Phylogenetic tree estimated from a 871bp fragment of CO I / CO using MrBayes version 3.2.2 with GTR+G+I as model for gene evolution. Bayesian posterior probabilities given as percentages at the nodes. Using two samples of the Cardiocondyla elegans species complex as outgroup, mtDNA shows a strong separation of the C. nuda species group into two major clades containing four species of the C. mauritanica species complex and three species of the C. nuda species complex. The disagreement between the species identification based on morphology and the mtDNA tree is here 3.8%.
FIGURE 8 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 8. NC-Ward clustering of 61 samples of the two remaining Cardiocondyla nuda species complex after C. nuda has been removed from analysis. The lower of the two main branches belongs to C. atalanta Forel, the upper one to C. paranuda. The left column of bars indicates the final clustering hypothesis for K=2 (C. atalanta vs. C. paranuda) determined by a controlling linear discriminant function (LDA), and the right column of bars the classification by non-hierarchical NC-K- Means clustering. The classification errors in in NC-Ward and NC-K-Means are both 3.3%.
FIGURES 1–3. 1 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURES 1–3. 1—measuring position for frontal carinae distance FRS; 2—measuring of postocular distance PoOc; 3— measuring of spine length SP.
FIGURE 7 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 7. NC-Ward clustering of 100 samples of the Cardiocondyla nuda species complex. The lower of the two main branches belongs to C. nuda (Mayr), the upper one to the three remaining species of the complex. The left column of bars indicates the final clustering hypothesis for K=2 (C. nuda vs. not C. nuda) determined by a controlling linear discriminant function (LDA), and the right column of bars the classification by non-hierarchical NC-K-Means clustering. The classification errors in in NC-Ward and NC-K-Means are 1.0% and 2.0% respectively.
FIGURE 5 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 5. NC-Ward clustering of 88 samples of the remaining species of the Cardiocondyla mauritanica species complex after exclusion of C. mauritanica. The upper of the two main branches belongs to C. itsukii sp. nov., the lower one to the other two species of the complex. The left column of bars indicates the two main branches of mtDNA haplotyping, the median column the final clustering hypothesis for K=2 (C. itsukii sp. nov. vs. not C. itsukii sp. nov.) determined by a controlling linear discriminant function (LDA), and the right column of bars the classification by non-hierarchical NC-K-Means clustering. The classification errors in in NC-Ward and NC-K-Means are 3.4% and 1.1% respectively. The agreement of mtDNA and all three NUMOBAT analyses is 100% on the K=2 level.
FIGURE 4 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 4. NC-Ward clustering of 149 samples of the Cardiocondyla mauritanica species complex. The upper of the two main branches belongs to C. mauritanica Forel, the lower one to the remaining three species of the complex. The left column of bars indicates the final clustering hypothesis for K=2 (C. mauritanica vs. not C. mauritanica) determined by a controlling linear discriminant function (LDA), the right column of bars the classification by non-hierarchical NC-K-Means clustering. The classification errors in in NC-Ward and NC-K-Means are 0.7% and 0% respectively.
FIGURE 6 in A taxonomic revision of the Cardiocondyla nuda group (Hymenoptera: Formicidae)
FIGURE 6. NC-Ward clustering of 45 samples of the two remaining species of the Cardiocondyla mauritanica species complex after exclusion of other species in the previous steps. The upper of the two main branches belongs to C. kagutsuchi Terayama, the lower one to C. strigifrons Viehmeyer. The left column of bars indicates the two sub-clusters of mtDNA haplotyping (cluster C red, cluster AB black), the median column the final clustering hypothesis for K=2 (C. kagutsuchi vs. C. strigifrons) determined by a controlling linear discriminant function (LDA), and the right column of bars the classification by non-hierarchical NC-K-Means clustering. The agreement between all three NUMOBAT methods is 100% whereas mtDNA haplotyping deviates from this classification in 12% of the samples.
FIGURE 18 in Taxonomic revision of the New World genus Ariopsis Gill (Siluriformes: Ariidae), with description of two new species
FIGURE 18. Body in lateral view. (A) Ariopsis seemanni, 300 mm TL, Holotype, BMNH 1855.9.19.1107; (B) Tachisurus jordani, Syntype, MCZ 4945; (C) Galeichthys eigenmanni, Holotype, CAS-SU 6986.
FIGURE 14 in Taxonomic revision of the New World genus Ariopsis Gill (Siluriformes: Ariidae), with description of two new species
FIGURE 14. Body in lateral view. (A) Ariopsis guatemalensis, 260 mm SL, Syntypes, BMNH 1853.1.11.6; (B) Arius caerulescens, Syntypes, BMNH 1864.1.26.208–209; (C) Galeichthys azureus, Holotype, CAS-SU 11575.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.