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326 results for “Nicaragua”
Subspecies and Distribution. S.v.variegatoidesOgilby,1839—EGuatemala,WHonduras,andEElSalvador. S.v.adolpheiLesson,1842—ElRealejo,NWNicaragua. S.v.atrirufusHarris,1930—NicoyaPeninsula,NWCostaRica. S.v.bangsiDickey,1928—SEGuatemala,andWElSalvador. S.v.beltiNelson,1899—EHonduras,ENicaragua. S.v.boothiaeGray,1843—N&CHonduras,andNNicaragua. S.v.dorsalisGray,1849—WNicaragua,andNWCostaRica. S.v.goldmaniNelson,1898—SEChiapas(Mexico)andSWGuatemala. S.v.helveolusGoldman,1912—PacificcoastofWCPanama. S.v.loweryiMcPherson,1972—CCostaRica. S.v.managuensisNelson,1898—EGuatemala. S.v.melaniaGray,1867—PacificcoastlowlandsofWPanama. S.v.nigidusPeters,1863—CCostaRica,extendingtothePacificcoast(GulfofNicoya). S.v.thomasiNelson,1899—ECostaRica. S. v. underwoodi Goldman, 1932 — S Honduras, W Nicaragua, and NC Costa Rica. in Sciuridae
Subspecies and Distribution. S.v.variegatoidesOgilby,1839—EGuatemala,WHonduras,andEElSalvador. S.v.adolpheiLesson,1842—ElRealejo,NWNicaragua. S.v.atrirufusHarris,1930—NicoyaPeninsula,NWCostaRica. S.v.bangsiDickey,1928—SEGuatemala,andWElSalvador. S.v.beltiNelson,1899—EHonduras,ENicaragua. S.v.boothiaeGray,1843—N&CHonduras,andNNicaragua. S.v.dorsalisGray,1849—WNicaragua,andNWCostaRica. S.v.goldmaniNelson,1898—SEChiapas(Mexico)andSWGuatemala. S.v.helveolusGoldman,1912—PacificcoastofWCPanama. S.v.loweryiMcPherson,1972—CCostaRica. S.v.managuensisNelson,1898—EGuatemala. S.v.melaniaGray,1867—PacificcoastlowlandsofWPanama. S.v.nigidusPeters,1863—CCostaRica,extendingtothePacificcoast(GulfofNicoya). S.v.thomasiNelson,1899—ECostaRica. S. v. underwoodi Goldman, 1932 — S Honduras, W Nicaragua, and NC Costa Rica.
Distribution. Highlands of SE Mexico (Chiapas), Guatemala, Honduras, El Salvador, NW Nicaragua, and NW Costa Rica. in Soricidae
Distribution. Highlands of SE Mexico (Chiapas), Guatemala, Honduras, El Salvador, NW Nicaragua, and NW Costa Rica.
FIGURES 43–47 in A new species and immature stages of the skiff beetle genus Yara Reichardt and Hinton (Coleoptera: Myxophaga: Hydroscaphidae) from Nicaragua
FIGURES 43–47. Distribution and collecting: (43) map for species of Yara; (44) map for Central American species of Yara; (45) sampling locality at La Libertad, Chontales, Nicaragua; (46) Pijibay Creek; (47) collecting macroinvertebrates using a Dnet at Pijibay Creek.
FIGURES 13–16 in A new species and immature stages of the skiff beetle genus Yara Reichardt and Hinton (Coleoptera: Myxophaga: Hydroscaphidae) from Nicaragua
FIGURES 13–16. Hindwings and adult legs of Yara marmontsedu: (13) extended hindwing; (14) proleg; (15) mesoleg; (16) metaleg. Scale bar: 0.1 mm.
FIGURES 17–25 in A new species and immature stages of the skiff beetle genus Yara Reichardt and Hinton (Coleoptera: Myxophaga: Hydroscaphidae) from Nicaragua
FIGURES 17–25. Abdomen of Yara marmontsedu: (17) female abdomen, dorsal view, black arrow indicates emargination on apical margin of tergite VIII; (17a) same, line drawing; (18) female abdomen, ventral view, black arrow indicates emargination on apical margin of sternite VIII; (18a) same, line drawing; (19) male abdomen, dorsal view, black arrow indicates emargination on apical margin of tergite VIII; (19a) same, line drawing; (20) male abdomen, ventral view, black arrow indicates emargination on apical margin of sternite VIII, white arrow pointing curved setae; (20a) same, line drawing; (21) aedeagus; (22) basal apophysis in lateral view; (23) basal apophysis in dorsal view; (24) ventral view of ovigerous female; (25) egg. Scale bar: 17–20: 0.1 mm.
FIGURES 1–6 in A new species and immature stages of the skiff beetle genus Yara Reichardt and Hinton (Coleoptera: Myxophaga: Hydroscaphidae) from Nicaragua
FIGURES 1–6. Habitus of Yara marmontsedu: (1, 4) dorsal, (2, 5) lateral, (3, 6) ventral; male (1–3); female (4–6). Scale bar 0.5 mm.
FIGURES 26–38 in A new species and immature stages of the skiff beetle genus Yara Reichardt and Hinton (Coleoptera: Myxophaga: Hydroscaphidae) from Nicaragua
FIGURES 26–38. Larva of Yara marmontsedu: (26) dorsal view; (27) lateral view; (28) ventral view; (29) ventral view of head; (30) antenna; (31) ventral view of mandible, prementum and mentum; (32) detail of labial palp; (33) detail of maxilla including maxillary palp; (34) detail of lateral projection of abdominal segments; (35) detail of lateral view of last abdominal segments; (36) proleg; (37) mesoleg; (38) metaleg. Scale bars: 26–28: 0.5 mm; 29–33: 50 µm; 34–37: 0.1 mm.
MONITOREO DE LA COBERTURA Y USOS DE LA TIERRA DE LA REPÚBLICA DE NICARAGUA_Zona 1 Puntos Estables
Zona correspondiente al Pacífico de Nicaragua, abarca toda la planicie volcánica/costera del Pacífico, representan el 10.6% del territorio nacional, contiene los suelos más fértiles y concentra la mayor densidad poblacional incluida la ciudad de Managua.
Data from: Parsing parallel evolution: ecological divergence and differential gene expression in the adaptive radiations of thick-lipped Midas cichlid fishes from Nicaragua
The study of parallel evolution facilitates the discovery of common rules of diversification. Here, we examine the repeated evolution of thick lips in Midas cichlid fishes (the Amphilophus citrinellus species complex)—from two Great Lakes and two crater lakes in Nicaragua—to assess whether similar changes in ecology, phenotypic trophic traits and gene expression accompany parallel trait evolution. Using next-generation sequencing technology, we characterize transcriptome-wide differential gene expression in the lips of wild-caught sympatric thick- and thin-lipped cichlids from all four instances of repeated thick-lip evolution. Six genes (apolipoprotein D, myelin-associated glycoprotein precursor, four-and-a-half LIM domain protein 2, calpain-9, GTPase IMAP family member 8-like and one hypothetical protein) are significantly underexpressed in the thick-lipped morph across all four lakes. However, other aspects of lips' gene expression in sympatric morphs differ in a lake-specific pattern, including the magnitude of differentially expressed genes (97-510). Generally, fewer genes are differentially expressed among morphs in the younger crater lakes than in those from the older Great Lakes. Body shape, lower pharyngeal jaw size and shape, and stable isotopes (δ13C and δ15N) differ between all sympatric morphs, with the greatest differentiation in the Great Lake Nicaragua. Some ecological traits evolve in parallel (those related to foraging ecology; e.g. lip size, body and head shape) but others, somewhat surprisingly, do not (those related to diet and food processing; e.g. jaw size and shape, stable isotopes). Taken together, this case of parallelism among thick- and thin-lipped cichlids shows a mosaic pattern of parallel and nonparallel evolution.
Fig. 14 in Finding Unexpected Beetles in Odd Places:Archicorynus kuscheliAnderson and Marvaldi, a New Genus and Species Representing a New Tribe, Archicorynini, of Oxycoryninae (Coleoptera: Belidae) from Nicaragua
Fig. 14. Most parsimonious tree for Belidae obtained from analysis of the matrix in Table 1. Only unambiguous character changes are mapped on the cladogram, unique and homoplastic changes are in black and white, respectively.
Figs. 8–13. Archicorynus kuscheli. 8 in Finding Unexpected Beetles in Odd Places:Archicorynus kuscheliAnderson and Marvaldi, a New Genus and Species Representing a New Tribe, Archicorynini, of Oxycoryninae (Coleoptera: Belidae) from Nicaragua
Figs. 8–13. Archicorynus kuscheli. 8) Male, ventral view; 9) Ventral surface of elytra, male (PLR = pocket-like cavity); 10) Female genitalia (BC = bursa copulatrix; HLE = hook-like extensions of T VIII; HS = gonocoxites; S = spermatheca; SD = spermathecal duct; SG = spermathecal gland; S VIII = sternite VIII; T VIII = tergite VIII); 11) Aedeagus, lateral view (PN = penis; PE = pedon; TC = tectum; TG = tegmen); 12) Penis (a) and tegmen (b), separated; 13) Hindwing, male.
Figs. 5–7. Archicorynus kuscheli, genitalia. 5 in Finding Unexpected Beetles in Odd Places:Archicorynus kuscheliAnderson and Marvaldi, a New Genus and Species Representing a New Tribe, Archicorynini, of Oxycoryninae (Coleoptera: Belidae) from Nicaragua
Figs. 5–7. Archicorynus kuscheli, genitalia. 5) Female; 6) Aedeagus and tegmen, dorsal view; 7) Aedeagus and tegmen, lateral view.
FIGURE 1 in Macropsychanthus magnus (Leguminosae: Papilionoideae: Diocleae), a new species from Costa Rica and Nicaragua
FIGURE 1. Macropsyhchanthus magnus Fonseca-Cortés, sp. nov. (A) habit; (B) stipule; (C) petals; (D) ginoecium; (E) androecium; (F) flower bud; (G) fruit; (H) seed. (A–F) holotype, J. González 10067, LSCR; (G–H) R. Aguilar 1238, LSCR. illustrated by Andrés Fonseca- Cortés.
FIGURE 3 in Macropsychanthus magnus (Leguminosae: Papilionoideae: Diocleae), a new species from Costa Rica and Nicaragua
FIGURE 3. Macropsychanthus magnus Fonseca-Cortés sp. nov. (A–C) inflorescence; (B) flower; (C–E) seeds; (F) fruit. Courtesy of La Selva: florula digital.
FIGURE 2 in Macropsychanthus magnus (Leguminosae: Papilionoideae: Diocleae), a new species from Costa Rica and Nicaragua
FIGURE 2. Macropsychanthus magnus Fonseca-Cortés sp. nov. (A–B) habit; (C) stem and stipule; (D) leaf; (G) underside foliole indumentum. (A–C). Courtesy of Daniel H. Janzen (CC BY 4.0) and (D–G) La Selva: florula digital.
Databases for "A multiscale approach to identify key factors determining rural WaSH service level and sustainability" (ShinyApp). Application to SIASAR conceptual model v1, outputs obtained from Nicaragua, Honduras, Panama and Dominican Republic SIASAR databases (last accessed: December 21, 2016)".
<p>Attached databases contain the results obtained by applying the SIASAR composite indicators v1 (available at http://upcommons.upc.edu/handle/2117/77587) to data presented in http://doi.org/10.5281/zenodo.571351</p> <p>These files can be directly exploited by using the ShinyApp “A multiscale approach to identify key factors determining rural WaSH service level and sustainability”.</p> <p>Each *.csv file contains one country's database. </p>
FIGURE 75 in Review of the Neotropical genera Barra Jordan and Brevibarra Jordan, with description of a new species of Barra from Nicaragua, notes on the tribe Piesocorynini Valentine, and new records of Brevibarra from Brazil and Ecuador (Coleoptera: Anthribidae)
FIGURE 75. Map of distribution of Barra and Brevibarra species. Triangle—type locality, circle—other distribution. Barra baruskae sp. nov. (red), Barra salamandrina Frieser, 1983 (yellow), Barra gounellei Jordan, 1904 (blue), Brevibarra scotosagis Jordan, 1906 (magenta). Google.com/maps, modified.
FIGURES 73–74 in Review of the Neotropical genera Barra Jordan and Brevibarra Jordan, with description of a new species of Barra from Nicaragua, notes on the tribe Piesocorynini Valentine, and new records of Brevibarra from Brazil and Ecuador (Coleoptera: Anthribidae)
FIGURES 73–74. Collecting site of Brevibarra scotosagis Jordan, 1906, Ecuador, Loreto env., Carachupa Pakcha, 285 m a.s.l., 2022. Photographed by Korina Kudrnová.
FIGURES 63–67. Brevibarra scotosagis Jordan, 1906 in Review of the Neotropical genera Barra Jordan and Brevibarra Jordan, with description of a new species of Barra from Nicaragua, notes on the tribe Piesocorynini Valentine, and new records of Brevibarra from Brazil and Ecuador (Coleoptera: Anthribidae)
FIGURES 63–67. Brevibarra scotosagis Jordan, 1906; 63, map of distribution in Ecuador, Google.com/maps, modified; 64–67, male from Ecuador, Loreto env. (MTDC), dissected terminalia; 64, aedeagus in lateral view; 65, aedeagus in dorsal view; 66, tegmen in ventral view; 67, segment VIII, and sternite IX (= spiculum gastrale) in ventral view. Scale bars in mm.
FIGURES 68–72. Brevibarra scotosagis Jordan, 1906 in Review of the Neotropical genera Barra Jordan and Brevibarra Jordan, with description of a new species of Barra from Nicaragua, notes on the tribe Piesocorynini Valentine, and new records of Brevibarra from Brazil and Ecuador (Coleoptera: Anthribidae)
FIGURES 68–72. Brevibarra scotosagis Jordan, 1906; holotype female; 68, dorsal habitus; 69, head in dorsal view; 70, left antenna in dorsal view; 71, pronotum in dorsal view; 72, lateral habitus. Scale bars in mm.
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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.