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FIGURE 9 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 9. Continental fishes of Nicaragua, part 4; (A) Parachromis managuensis (Cichlidae), Tributary of the Sarapiquí River (Sa), photo by Arturo Angulo, November 11, 2018; (B) Vieja maculicauda (Cichlidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Luis Fernando López, April 13, 2020; (C) Atherinella hubbsi (Atherinopsidae), Tributary of the Sarapiquí River (Sa), photo by Arturo Angulo, November 11, 2018; (D) Cynodonichthys isthmensis (Rivulidae), UCR 00475-001, La Gateada, Econdido River (Es), collected on April 19, 1970; (E) Alfaro cultratus (Poeciliidae), Tributary of the Sarapiquí River (Sa), photo by Arturo Angulo, November 11, 2018; (F) Belonesox belizanus (Poeciliidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, November-December 2013; (G) Brachyrhaphis holdridgei (Poeciliidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 8, 2014; (H) Priapichthys annectens (Poeciliidae), Tributary of the Sarapiquí River (Sa), photo by Arturo Angulo, November 11, 2018; (I) Anableps dowii (Anablepidae), Golfo de Fonseca, Pacífico de Nicaragua (PN), photo by Eric P. van den Berghe, November 16, 2019; (J) Tylosurus crocodilus (Belonidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, November-December 2013; (K) Hyporhamphus unifasciatus (Hemiramphidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, November-December 2013; (L) Dajaus monticola (Mugilidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 5, 2014; (M) Joturus pichardi (Mugilidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 5, 2014; (N) Gobiesox cephalus (Gobiesocidae), Tributary of the Escondido River (Es), photo by Alex Gallardo, June 11, 2019; (O) Lutjanus argentiventris (Lutjanidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 23, 2014.
FIGURE 7 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 7. Continental fishes of Nicaragua, part 2; (A) Astyanax bransfordii (Characidae), San Juan River (SJ), photo by Arturo Angulo, November 12, 2018; (B) Astyanax nicaraguensis (Characidae), Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April-May 2013; (C) Eretmobrycon scleroparius (Characidae), San Juan River (SJ), photo by Arturo Angulo, November 12, 2018; (D) Gymnotus maculosus (Gymnotidae), Tributary of the Sarapiquí River (Sa), photo by Arturo Angulo, November 11, 2018; (E) Hypostomus cf. niceforoi (Loricariidae), Río Frío (RF), photo by Jose Carlos Carrasco, September 8, 2021; (F) Rhamdia guatemalensis (Heptapteridae), Puerto Príncipe, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 28, 2014; (G) Bagre filamentosus (Ariidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, November-December 2013; (H) Batrachoides surinamensis (Batrachoididae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 24, 2014; (I) Microphis lineatus (Syngnathidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 6, 2014; (J) Eleotris perniger (Eleotridae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 6, 2014; (K) Gobiomorus dormitor (Eleotridae), Pejibaye, Blue FieldsPunta Gorda (BF), photo by Eric P. van den Berghe, April 19, 2014; (L) Hemieleotris latifasciata (Eleotridae), San Juan del Sur, Nicoya (Ni), photo by Arturo Angulo, November 8, 2018; (M) Awaous banana (Gobiidae), Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 5, 2014; (N-O) Synbranchus marmoratus (Synbranchidae), Tributary of the Sarapiquí River (Sa), photo by Arturo Angulo, November 11, 2018.
FIGURE 6 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 6. Continental fishes of Nicaragua, part 1; (A) Carcharhinus leucas (Carcharhinidae), Lake Nicaragua (LN), photo by Agustín Llanes, May 6, 2020; (B) Pristis pristis (Pristidae), San Juan River (SJ), photo by MARENA, November 17, 2022; (C) Hypanus americanus (Dasyatidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, NovemberDecember 2013; (D) Styracura schmardae (Potamotrygonidae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, April 16, 2014; (E) Atractosteus tropicus (Lepisosteidae), Lake Nicaragua (LN), photo by Elías Salas, March 4, 2014; (F) Megalops atlanticus (Megalopidae), Laguna Las Perlas, Kurinwas-Laguna las Perlas (KP), photo by Bruce Williams, June 8, 2017; (G) Anguilla rostrata (Anguillidae), UCR 00448-006, Lamyala, Laguna Las Perlas, Kurinwas-Laguna las Perlas (KP), collected on May 16, 1992; (H) Anchoa panamensis (Engraulidae), UCR 0482-004, San Juan del Sur, Nicoya (Ni), collected on June 8, 1970; (I) Anchovia clupeoides (Engraulidae), UCR 0363-006, Laguna Las Perlas, Kurinwas-Laguna las Perlas (KP), collected on April 2, 1969; (J) Odontognathus compressus (Pristigasteridae), Punta Gorda, Blue Fields-Punta Gorda (BF), photo by Eric P. van den Berghe, November-December 2013; (K) Dorosoma chavesi (Dorosomatidae), UCR 0536- 00, Lake Nicaragua (LN), collected on November 23, 1971; (L) Cyprinus carpio (Cyprinidae), Lake Nicaragua (LN), photo by MARENA/El19Digital, November 8, 2016; (M) Brycon costaricensis (Bryconidae), San Juan River (SJ), photo by Arturo Angulo, November 12, 2018.
FIGURE 5 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 5. Families of continental fishes of Nicaragua, part 4; Gerreidae (A), Haemulidae (B), Sciaenidae (C), Lobotidae (D), Ephippidae (E) and Tetraodontidae (F). Illustrations adapted (with permission) from Nelson et al. (2016) and Angulo et al. (2021).
FIGURE 3 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 3. Families of continental fishes of Nicaragua, part 2; Bryconidae (A), Characidae (B), Gymnotidae (C), Loricariidae (D), Heptapteridae (E), Ariidae (F), Batrachoididae (G), Syngnathidae (H), Eleotridae (I), Gobiidae (J), Synbranchidae (K), Centropomidae (L), Polynemidae (M) and Paralichthyidae (N). Illustrations adapted (with permission) from Nelson et al. (2016) and Angulo et al. (2021).
FIGURE 2 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 2. Families of continental fishes of Nicaragua, part 1; Carcharhinidae (A), Pristidae (B), Dasyatidae (C), Potamotrygonidae (D), Lepisosteidae (E), Elopidae (F), Megalopidae (G), Ophichthidae (H), Anguillidae (I), Engraulidae (J), Pristigasteridae (K), Dorosomatidae (L) and Cyprinidae (M). Illustrations adapted (with permission) from Nelson et al. (2016) and Angulo et al. (2021).
FIGURE 1 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 1. Map of Nicaragua, Central America, showing the division into 19 major river drainage basins: Coco (Co), Ulang (Ul), Wawa-Kukulaya (WK), Prinzapolka (Pr), Grande de Matagalpa (GM), Kurinwas-Laguna las Perlas (KP), Escondido (Es), Blue Fields-Punta Gorda (BF), Indio Maíz (IM), Tortuguero (To), Sarapiquí (Sa), San Juan (SJ), Río Frío (RF) and Lago de Nicaragua (LN) (Atlantic); Choluteca (Ch), Negro (Ne), Estero Real (ER), Pacífico de Nicaragua and Nicoya (Ni). Pacific drainages are shown in light blue. Data from the continental basins were obtained from HydroSHEDS (Lehner et al. 2008).
FIGURE 4 in Continental fishes of Nicaragua: diversity, distribution and conservation status; with an annotated and illustrated checklist of species and an identification guide to families
FIGURE 4. Families of continental fishes of Nicaragua, part 3; Achiridae (A), Carangidae (B), Cichlidae (C), Pomacentridae (D), Atherinopsidae (E), Rivulidae (F), Poeciliidae (G), Anablepidae (H), Belonidae (I), Hemiramphidae (J), Mugilidae (K), Gobiesocidae (L), Dactyloscopidae (M) and Lutjanidae (N). Illustrations adapted (with permission) from Nelson et al. (2016) and Angulo et al. (2021).
Supplementary material 4 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of tub2 sequences of 80 isolates of the Microdochium sp.
Supplementary material 2 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of LSU sequences of 72 isolates of the Microdochium sp.
Supplementary material 1 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of ITS sequences of 97 isolates of the Microdochium sp.
Supplementary material 3 from: Lu X, Mai M, Tan W, Zhang M, Xie J, Lu Y, Niu XL, Zhang W (2023) Identification and fungicide sensitivity of Microdochium chrysopogonis (Ascomycota, Amphisphaeriaceae), a new species causing tar spot of Chrysopogon zizanioides in southern China. MycoKeys 100: 205-232. https://doi.org/10.3897/mycokeys.100.112128
Phylogenetic tree inferred from a maximum likelihood analysis based on a combined alignment of rpb2 sequences of 71 isolates of the Microdochium sp.
Fig. 8 in On the southernmost high Andean scorpion species, with the identification of a cryptic new species of Brachistosternus (Bothriuridae) through morphology, molecular data and species distribution models
Fig. 8. Map of central western Argentina showing the known distribution of Brachistosternus diaguita n. sp. (black circles), Brachistosternus montanus (black stars), and Brachistosternus intermedius (black triangles). The "Diaguita" district of the "Altoandina" biogeographical region is depicted in red, the "Cuyano" district of this region is depicted in blue, the "Puna" biogeographical region is depicted in orange, the "Prepuna" district of the "Monte" biogeographical region is depicted in green, and the Septentrional district of this region is depicted in turquoise.
Fig. 7. Brachistosternus diaguita n in On the southernmost high Andean scorpion species, with the identification of a cryptic new species of Brachistosternus (Bothriuridae) through morphology, molecular data and species distribution models
Fig. 7. Brachistosternus diaguita n. sp., A‒C. Telson. a. male, dorsoexternal aspect; B. male, lateral aspect; C. female, lateral aspect; D‒F. Hemipermatophore. D. left hemispermatophore, external aspect; E. left hemispermatophore, internal aspect; F. right hemispermatophore, internal aspect. Scale bars: 1 mm.
Fig. 5. A in On the southernmost high Andean scorpion species, with the identification of a cryptic new species of Brachistosternus (Bothriuridae) through morphology, molecular data and species distribution models
Fig. 5. A. Brachistosternus intermedius, pedipalp chela, male, internal aspect. B–H. Brachistosternus diaguita n. sp. B‒E. Pedipalp chela, male. B. internal aspect, C. dorsal aspect, D. external aspect, E. ventral aspect; F. Pedipalp chela, female, ventro-internal aspect. G. pedipalp patela, male, external aspect; H. pedipalp femur, male, dorsal aspect. Scale bars: 1 mm.
Fig. 6. A‒F. Metasomal segment V. A‒C. Brachistosternus diaguita n in On the southernmost high Andean scorpion species, with the identification of a cryptic new species of Brachistosternus (Bothriuridae) through morphology, molecular data and species distribution models
Fig. 6. A‒F. Metasomal segment V. A‒C. Brachistosternus diaguita n. sp., male. A. ventral aspect; B. dorso-external aspect, C. dorsal aspect; D. Brachistostenus intermedius, male, ventral aspect; E‒F. Brachistosternus montanus, male, E. dorsoexternal aspect, F. dorsal aspect. Scale bars: 1 mm.
Fig. 3 in On the southernmost high Andean scorpion species, with the identification of a cryptic new species of Brachistosternus (Bothriuridae) through morphology, molecular data and species distribution models
Fig. 3. Potential distribution of Brachistosternus species studied in this contributions A. Brachistosternus diaguita n. sp. B. Brachistosternus montanus. C. Brachistosternus intermedius. Warmer colors show areas with better predicted conditions. Black dots show the presence locations.
Fig. 2. A in On the southernmost high Andean scorpion species, with the identification of a cryptic new species of Brachistosternus (Bothriuridae) through morphology, molecular data and species distribution models
Fig. 2. A. Bayesian phylogeny of selected Brachistosternus species inferred using MrBayes. The values at the nodes are Bayesian posterior probabilities. The scale bar represents the branch lengths in substitutions per site. B. Bayesian species tree with nodeage estimates inferred using *BEAST. The values at the nodes are Bayesian posterior probabilities and the node bars represent the 95% highest posterior densities of the node age estimates. The scale axis is set to show Million years before present.
Fig. 30. A–G in Taxonomic revision and first phylogeny of Climacia McLachlan, 1869 (Neuroptera: Sisyridae), with new species and identification key
Fig. 30. A–G. Climacia townesi Parfin & Gurney, 1956: A, Distribution map. B, Forewing. C, Hind wing. D, Male genitalia, lateral view. E, 10th gonocoxite complex, dorsal view. F, Same, but lateral view. G, Female genitalia, lateral view (Red stars = new records). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 28. A–G in Taxonomic revision and first phylogeny of Climacia McLachlan, 1869 (Neuroptera: Sisyridae), with new species and identification key
Fig. 28. A–G. Climacia striata Parfin & Gurney, 1956: A, Distribution map. B, Forewing. C, Hind wing. D, Male genitalia, lateral view. E, Same, but dorsal view. F, 10th gonocoxite complex, dorsal view. G, Same, but lateral view.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.