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414 results for “Honduras”
Figs 94–97 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 94–97. Myosomatoides fasciatus (BRULLÉ), comb. n., female holotype: 94 = hind femur and tibia with hairs, 95 = distal part of right fore wing, 96 = first discal cell of right fore wing, 97 = tergites 1–3
Figs 14–20 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 14–20. Compsobraconoides melanocheirus (SZÉPLIGETI) comb. n. – female holotype: 14 = head in dorsal view, 15 = tergites 1–3, 16 = hind femur. 17–20. Compsobraconoides surinamensis (SZÉP- LIGETI) comb. n., female lectotype: 17 = head in dorsal view, 18 = first tergite in lateral view, 19 = ter- gites 1–3, 20 = hind femur
Figs 48–56 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 48–56. Myosoma errans (SZÉPLIGETI), female holotype: 48 = scape, pedicel and first flagellomere in outer-lateral view, 49 = head in dorsal view, 50 = head in lateral view, 51 = hind femur with indication of its hairs, 52 = claw, 53 = distal part of right fore wing, 54 = first discal cell of right fore wing, 55 = vein 1r–m of hind wing, 56 = tergites 1–3
Figs 38–47 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 38–47. Myosoma brullei SZÉPLIGETI, female holotype: 38–39 = head in dorsal view, 40 = hind femur with indication of its hairs, 41 = claw, 42 = distal part of right fore wing, 43 = first discal cell right fore wing, 44–45 = vein 1r–m of hind wing, 46 = tergites 1–3, 47 = hind end of metasoma with ovipositor apparatus
Figs 74–83 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 74–83. Myosoma lagopus (KRIECHBAUMER), comb. n., female holotype: 74–81, female holotype of M. errotus SZÉPL.: 82–83: 74 = scape, pedicel and first flagellomere in outer-lateral view, 75 = head in dorsal view, 76 = head in lateral view, 77 = hind femur with indication of its hairs, 78 = claw, 79 = distal part of right fore wing, 80 = first discal cell of right fore wing, 81 = tergites 1–3, 82 = head in dorsal view, 83 = hind femur
Figs 66–73 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 66–73. Myosoma hirtipes BRULLÉ, female holotype: 66 = scape and pedicel in outer-lateral view, 67 = head in dorsal view, 68 = head in lateral view, 69 = hind femur and tibia with hairs, 70 = claw, 71 = distal part of left fore wing, 72 = first discal cell of left fore wing, 73 = vein 1r–m of hind wing
Figs 84–93 in A Taxonomic Study Of The Myosoma Genus-Group With Description Of Amyosoma Cavei Sp. N. From Honduras (Hymenoptera: Braconidae: Braconinae: Braconini)
Figs 84–93. Myosoma rubriventre BRULLÉ, female holotype: 84–92 and male: 93–94: 84 = scape and pedicel in outer-lateral view, 85 = head in dorsal view, 86 = head in lateral view, 87 = hind femur and tibia with hairs, 88 = claw, 89 = distal part of right fore wing, 90 = first discal cell of right fore wing, 91 = tergites 1–3, 92 = first discal cell of male, 93 = first tergite of male
Figs 14–29. 14–21 in Eleven New Mirax Haliday, 1833 Species From Colombia And Honduras And Key To The Sixteen Neotropical Mirax Species (Hymenoptera: Braconidae: Miracinae)
Figs 14–29. 14–21: Mirax (Centistidea) brasiliensis Brues (female): 14 = scape, 15 = head in dorsal view, 16 = mesoscutum with notaulix, 17 = propodeum, 18 = hind femur, 19 = pterostigma and 2–SR of right fore wing, 20 = first discal cell, 21 = tergites 1–2. – 22–29: Mirax (Centistidea) carinatus sp. n. (female holotype): 22 = flagellomeres 1–3, 23 = head in dorsal view, 24 = head in lateral view, 25 = propodeum, 26 = hind femur, 27 = pterostigma and
Figure 1 in Megalurothrips usitatus Bagnall (Thysanoptera: Thripidae), first record of an important new pest in Honduras
Figure 1. Damaged caused by Megalurothrips usitatus Bagnall to Phaseolus vulgaris L. in El Zamorano, Honduras.
Figure 2. Megalurothrips usitatus Bagnall. A in Megalurothrips usitatus Bagnall (Thysanoptera: Thripidae), first record of an important new pest in Honduras
Figure 2. Megalurothrips usitatus Bagnall. A) Female, dorsal view. B) Male, dorsal view. C) Head showing three pairs of ocellar setae. D) Antennal segment III with forked sense cone (black arrow). E) Antennal segment VI showing sense cone (black arrow). F) Tergite VIII. G) Male tergite IX showing typical setation. (Scale bars: 0.5 mm for A and B; 0.1 mm for C–G).
Fig. 3 in A new species of Tantilla of the taeniata group (Squamata: Colubridae) from Refugio de Vida Silvestre Barras de Cuero y Salado in Caribbean coastal Honduras
Fig. 3. Distribution of the species of the Tantilla taeniata group in Honduras. The star indicates the type locality of Tantilla lydia sp. nov. The most northwestern location of Tantilla gottei was recently published by Orellana Murillo et al. (2020).
Fig. 2 in A new species of Tantilla of the taeniata group (Squamata: Colubridae) from Refugio de Vida Silvestre Barras de Cuero y Salado in Caribbean coastal Honduras
Fig. 2. Dorsal (A), lateral (B), and ventral (C) views of the head and nape of the holotype of Tantilla lydia sp. nov. (UVS-V 1189). Photos by Cristopher Antúnez-Fonseca.
Fig. 1 in A new species of Tantilla of the taeniata group (Squamata: Colubridae) from Refugio de Vida Silvestre Barras de Cuero y Salado in Caribbean coastal Honduras
Fig. 1. Dorsolateral view of the holotype of Tantilla lydia sp. nov. (UVS-V 1189) in life. Photo by Cristopher Antúnez-Fonseca.
Fig. 4 in A new species of Tantilla of the taeniata group (Squamata: Colubridae) from Refugio de Vida Silvestre Barras de Cuero y Salado in Caribbean coastal Honduras
Fig. 4. Type locality and surrounding habitat for Tantilla lydia sp. nov. showing the train tracks where the holotype was collected, Comunidad de Salado Barra, La Unión, Departamento de Atlántida, Honduras. Photo by Cristopher Antúnez-Fonseca.
Trophic state resilience to hurricane disturbance of Lake Yojoa, Honduras (DATA)
<p><strong>Datasets for manuscript entitled "Trophic state resilience to hurricane disturbance of Lake Yojoa, Honduras"</strong></p> <p><strong>Abstract:</strong> Cyclones are a poorly described disturbance in tropical lakes, with the potential to alter ecosystems and compromise the services they provide. In November 2020, Hurricanes Eta and Iota made landfall near the Nicaragua-Honduras border, inundating the region with a large amount of late-season precipitation. To understand the impact of these storms on Lake Yojoa, Honduras, we compared 2020 and 2021 conditions using continuous (every 16 days) data collected from five pelagic locations. The storms resulted in increased Secchi depth and decreased algal abundance in December 2020, and January and February 2021, and lower-than-average accumulation of hypolimnetic nutrients from the onset of stratification (April 2021) until mixus in November 2021. Despite the reduced hypolimnetic nutrient concentrations, epilimnetic nutrient concentrations returned to (and in some cases exceeded) pre-hurricane levels following annual water column turnover in 2021. This response suggests that Lake Yojoa’s trophic state had only an ephemeral response to the disturbance imposed by the two hurricanes, likely due to internal input of sediment derived nutrients. These aseasonal storms acted as a large-scale experiment that resulted in nutrient dilution and demonstrated the resilience of Lake Yojoa’s trophic state to temporary nutrient reductions.</p>
Figure 3 in Distribution of Trichonephila clavipes (Linnaeus, 1767) (Araneae: Araneidae) in Honduras
Figure 3. Genital structure of the female and the male of Trichonephila clavipes. A. Epigyne, ventral view. B-C. Male left palp, prolateral and retrolateral views. Scale: 0.5 mm. / Figura 3. Estructura genital de la hembra y el macho de Trichonephila clavipes. A. Epiginio, vista ventral. B-C. Palpo izquierdo macho, vistas prolateral y retrolateral. Escala: 0,5 mm.
Figure. 4 in Distribution of Trichonephila clavipes (Linnaeus, 1767) (Araneae: Araneidae) in Honduras
Figure. 4. Distribution of Trichonephila clavipes in Honduras. / Figura 4. Distribución de Trichonophila clavipes en Honduras.
Figure. 1 in Distribution of Trichonephila clavipes (Linnaeus, 1767) (Araneae: Araneidae) in Honduras
Figure. 1. Female of Trichonephila clavipes from the La Ceiba city. A-B. Dorsal and ventral habitus. Scale: 2.0 mm. / Figura 1. Hembra de Trichonephila clavipes de la ciudad de La Ceiba. A-B. Hábito dorsal y ventral. Escala: 2,0 mm.
Fig. 5 in A new Cryptotermes (Blattodea (Isoptera): Kalotermitidae) from Honduras and known distribution of New World Cryptotermes species
Fig. 5. Distribution of Cryptotermes species in South America from the University of Florida termite collection and literature records. Only endemic records of C. brevis are shown.
Fig. 4 in A new Cryptotermes (Blattodea (Isoptera): Kalotermitidae) from Honduras and known distribution of New World Cryptotermes species
Fig. 4. Distribution of Cryptotermes species (Group 2) in the West Indies, and Caribbean Basin from the University of Florida termite collection and literature records.
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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.