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Fig. 7 in Morphology-based phylogenetic analysis of South American Sericini chafers (Coleoptera, Scarabaeidae) contrasts patterns of morphological disparity and current classification
Fig. 7. Patterns of disparity derived from discrete morphological data: plots of axis 1 and 2 from principal coordinate analysis.
Fig. 6 in Morphology-based phylogenetic analysis of South American Sericini chafers (Coleoptera, Scarabaeidae) contrasts patterns of morphological disparity and current classification
Fig. 6. Single most parsimonious tree from implied weighting (K = 71.62) on the reduced data set (run 9), part 2. Support values (bootstrap/symmetric resampling) below 50 not shown.
Fig. 5 in Morphology-based phylogenetic analysis of South American Sericini chafers (Coleoptera, Scarabaeidae) contrasts patterns of morphological disparity and current classification
Fig. 5. Single most parsimonious tree from implied weighting (K = 71.62) on the reduced data set (run 9), part 1. Support values (bootstrap/symmetric resampling) below 50 not shown.
Fig. 4 in Morphology-based phylogenetic analysis of South American Sericini chafers (Coleoptera, Scarabaeidae) contrasts patterns of morphological disparity and current classification
Fig. 4. Characters illustrated: male genitalia. A-H) Aedeagus, dorsal view. A) Symmela beskei; B) S. varians; C) Astaena exquisita; D) A. leechi; E) A. longicornis; F) A. schnebli; G) A. sparsetosa; H) S. capixaba. Scale bars: A H) 0.5 mm.
Fig. 2 in Morphology-based phylogenetic analysis of South American Sericini chafers (Coleoptera, Scarabaeidae) contrasts patterns of morphological disparity and current classification
Fig. 2. Characters illustrated: pronotum and elytra. A-I) Pronotum, dorsal view; J-L) Elytra, dorsal view; M O) Elytra, lateral view. A) Astaena baroni; B) A. explaniceps; C, M) A. fuscipennis; D) A. peruana; E) A. producta; F) A. pygidiallis; G) A. ruficollis; H) A. suturalis; I) Symmela flavimana; J) A. longula; K) A. pilosa; L) A. pinguins; N) A. marginicollis; O) A. tarsalis. Scale bars: A-O) 1 mm.
Fig. 3 in Morphology-based phylogenetic analysis of South American Sericini chafers (Coleoptera, Scarabaeidae) contrasts patterns of morphological disparity and current classification
Fig. 3. Characters illustrated: Abdomen and legs. A) Abdomen, lateral view; B, C) Abdomen, ventral view; D F) Prolegs, dorsal view; G, H) Protarsi, lateral view; I,J) Metacoxa, lateral view; K,L) Metatibia, lateral face; M) Metatibia, interior face; N) Metatibia, dorsal view; O,P) Metatarsi, dorsal view; Q) Metatarsi, ventral view. A) Astaena fuscipennis; B) A. tarsalis; C) Symmela opaca; D) A. montivaga; E) S. jatahyensis; F) S. mutabilis; G) Raysymmela boliviensis; H) Parasymmela amazonica; I, L, O) A. aequatorialis; J) A. rosettae; K) Astaena heterophylla; M) A. andina; N) A. semiopaca; P) A. longicornis; Q) A. boliviana. Scale bars: A-F, I-Q) 1 mm; G, H) 0.3 mm.
Fig. 8. A in Morphology-based phylogenetic analysis of South American Sericini chafers (Coleoptera, Scarabaeidae) contrasts patterns of morphological disparity and current classification
Fig. 8. A - Unrooted single most parsimonious tree from implied weighting (K = 71.62) on the reduced data set (run 9); B - Unrooted single tree from distancebased clustering.
FIGURE. 1 in A revised infrageneric classification of Bellevalia Lapeyr. (Asparagaceae: Scilloideae) based on molecular analysis
FIGURE. 1. Cilia at the leaf margin. a) B. dubia, MPU, 017875, (type specimen). b) B. dubia, MA, 01-00021987. c) B. macrobotrys, TARI, 62698. d) B. glauca, TARI, 19421. e) B. longistyla, IAUM, 51. f) B. saviczii, IAUM, 33. g) B. speciosa, TARI, 11924. h) B. heweri, IAUM, 123. × 400.
FIGURE. 2 in A revised infrageneric classification of Bellevalia Lapeyr. (Asparagaceae: Scilloideae) based on molecular analysis
FIGURE. 2. Phylogenetic tree of matK region resulting from the Bayesian inference of four sections of Bellevalia. The sections are based on the Feinbrun's (1940) classification. Numbers at nodes represent posterior probability values.
FIGURE. 5 in A revised infrageneric classification of Bellevalia Lapeyr. (Asparagaceae: Scilloideae) based on molecular analysis
FIGURE. 5. Phylogenetic tree of trnL-F spacer chloroplastic region resulting from the Bayesian inference of four sections of Bellevalia. The sections are based on the Feinbrun's (1940) classification. Numbers at nodes represent posterior probability values.
FIGURE. 6 in A revised infrageneric classification of Bellevalia Lapeyr. (Asparagaceae: Scilloideae) based on molecular analysis
FIGURE. 6. Phylogenetic tree of four chloroplastic regions resulting from the Bayesian inference of four sections of Bellevalia. The sections are based on the Feinbrun's (1940) classification. Numbers at nodes represent posterior prob.
FIGURE. 4 in A revised infrageneric classification of Bellevalia Lapeyr. (Asparagaceae: Scilloideae) based on molecular analysis
FIGURE. 4. Phylogenetic tree of trnL intron chloroplastic region resulting from the Bayesian inference of four sections of Bellevalia. The sections are based on the Feinbrun's (1940) classification. Numbers at nodes represent posterior probability values.
FIGURE. 3 in A revised infrageneric classification of Bellevalia Lapeyr. (Asparagaceae: Scilloideae) based on molecular analysis
FIGURE. 3. Phylogenetic tree of rbcL chloroplastic region resulting from the Bayesian inference of four sections of Bellevalia. The sections are based on the Feinbrun's (1940) classification. Numbers at nodes represent posterior probability values.
FIGURE 21. Female genitalia, ovipositor. a–i in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 21. Female genitalia, ovipositor. a–i. Apex of first gonapophysis; j–q. Apex of second gonapophysis. a, j. Amapacylapus amapariensis; b. Cylapinus minusculus; c, k. Cylapoides unicolor; d, l. Cylapomorpha sp.; e, m. Cylapus amazonicus; f, n. Cylapus citus; g, o. Cylapus ruficeps; h, p. Peltidocylapus ecuadorensis; i, q. Peltidocylapus parallelus.
FIGURE 20. Female genitalia. Vestibular area. a in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 20. Female genitalia. Vestibular area. a. Amapacylapus amapariensis; b. Cylapinus minusculus; c. Cylapoides unicolor; d. Cylapus antennatus; e. Cylapus citus; f. Cylapus tenuicornis; g. Peltidocylapus parallelus; h. Valdasus flavinotum.
FIGURE 22. Female genitalia. a, b, d–f in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 22. Female genitalia. a, b, d–f. Bursa copulatrix (dorsal view); c. Bursa copulatrix (lateral view); g, h. Base of first gonapophyses; i–l. Apex of second gonapophysis. a. Psallops sp.; b, c, g, j. Afrovannius schmitzi; d. Vannius sp.; e, k. Cylapocoris sp.; f, h, l. Fulvius pallens; i. Leprocapsus scutellaris.
FIGURE 16. Female genitalia. a, d, g in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 16. Female genitalia. a, d, g. Bursa copulatrix (dorsal view); b, e, h. Bursa copulatrix (dorsal view, ventral labiate plate dissected). c, f, i. Ventral labiate plate and seminal depository (ventral view, with remainder of bursa copulatrix dissected). j. First gonapophyses and bursa copulatrix (ventral view); k. Bursa copulatrix (left lateral view). a–c. Cylapus amazonicus; d–f. Cylapus antennatus; g–k. Cylapus citus. dlp = dorsal labiate plate; odl = lateral oviduct; sd = seminal depository; sg = spermathecal gland; sr = sclerotized ring; vlp = ventral labiate plate; vstb = vestibulum.
FIGURE 7. Lateral view. a in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 7. Lateral view. a. Cylapinus minusculus (♀); b. Cylapinus yasunagai (paratype); c. Cylapoides unicolor (♀); d. Peltidocylapus calyciformis (paratype); e. Peltidocylapus cerbereus (lectotype).
FIGURE 15. Female genitalia. a, b, f, g, h in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 15. Female genitalia. a, b, f, g, h. Bursa copulatrix (dorsal view); c, d. Ventral labiate plate; e. Sclerotized rings of dorsal labiate plate. a. Amapacylapus amapariensis; b, c. Amapacylapus unicolor; d–f. Cylapinus minusculus; g. Cylapoides unicolor; h. Cylapomorpha sp. dlp = dorsal labiate plate; odl = lateral oviduct; sd = seminal depository; sg = spermathecal gland; sr = sclerotized ring; vlp = ventral labiate plate.
FIGURE 3. Dorsal habitus photographs. a in Revised classification of the New World Cylapini (Heteroptera: Miridae: Cylapinae): taxonomic review of the genera Cylapinus, Cylapoides and Peltidocylapus and a morphology-based phylogenetic analysis of tribe Cylapini
FIGURE 3. Dorsal habitus photographs. a. Cylapinus minusculus (♂, Ecuador); b. Cylapinus yasunagai (holotype); c. Cylapoides bicolor (holotype); d. Cylapoides unicolor (♂, Ecuador).
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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)
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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.