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FIGURE 3. Lepanthes pseudoprofusa Damian & B.T.Larsen. A. Habit. B. Flower. C. Dissected flower. D in Three new species of Lepanthes (Pleurothalldinae: Orchidaceae) From Amazonas, Peru
FIGURE 3. Lepanthes pseudoprofusa Damian & B.T.Larsen. A. Habit. B. Flower. C. Dissected flower. D. Lip and column, ventral view in natural position and spread; lip ventral view dissected from the column. Drawn from the holotype by Greta Damian P.
FIGURE 1. Lepanthes odobenus Damian & B.T.Larsen. A. Habit. B. Flower. C. Dissected flower. D in Three new species of Lepanthes (Pleurothalldinae: Orchidaceae) From Amazonas, Peru
FIGURE 1. Lepanthes odobenus Damian & B.T.Larsen. A. Habit. B. Flower. C. Dissected flower. D. Lip and column, ventral view; lip ventral view dissected from the column. Drawn from the holotype by Greta Damian P.
FIGURE 2. Lepanthes peruviana Damian & B.T.Larsen. A. Habit. B. Flower. C. Dissected flower. D in Three new species of Lepanthes (Pleurothalldinae: Orchidaceae) From Amazonas, Peru
FIGURE 2. Lepanthes peruviana Damian & B.T.Larsen. A. Habit. B. Flower. C. Dissected flower. D. Lip and column, ventral view; lip ventral view dissected from the column; lip and column lateral view. Drawn from the holotype by Greta Damian P.
FIGURE 4 in Three new species of Lepanthes (Pleurothalldinae: Orchidaceae) From Amazonas, Peru
FIGURE 4. Flowers of Lepanthes. A. Lepanthes pseudoprofusa. B. Lepanthes odobenus. C. Lepanthes peruviana (Photographs by A. Damian).
FIGURE 2 in Melastomataceae in the Reserva de Desenvolvimento Sustentável do Tupé, Amazonas, Brazil
FIGURE 2. Flower, fruit and bark in species of Melastomataceae in the RDS-Tupé: Flower (A–B). A: Henriettea martiusii; B: Tibouchina fothergillae. Fruit (C–F); C. H. maroniensis; D. Clidemia epibaterium; E. Miconia comptifolia; F. C. capitellata; G. Bellucia spruceana; H. M. longispicata, detail of inflorescence; I. M. rhytidophylla. Patterns and colors of the rhytidome and inner bark; J. M. chrysophylla; K. M. comptifolia; L. M. crassinervia; M. M. dispar; N. M. egensis; O. M. gratissima; P. M. longispicata; Q. M. lourteigiana; R. M. phanerostila; S. M. radulifolia; T. M. regelii; U. M. tomentosa; V. M. umbrosa; W. Tococa coronata; X. Tococa subciliata.
FIGURE 3 in Melastomataceae in the Reserva de Desenvolvimento Sustentável do Tupé, Amazonas, Brazil
FIGURE 3. Morphological details of Melastomataceae species in RDS-Tupé: A. Adelobotrys marginata, leaf blade (from Corrêa 278); B. Miconia comptifolia, leaf blade with detail of the margins (from Corrêa 219); C. Tococa subciliata, leaf blade with detail of the margins (from Corrêa 112); D. Clidemia epibaterium, leaf blade with of the detail margins (from Corrêa 215); E. C. heteroneura, leaf base (from Corrêa 140); F. C. japurensis, leaf base (from Corrêa 21); G. Henriettea maroniensis, leaf blade and detail of trichomes on the abaxial surface (from Corrêa 139); H. M. poeppigii, leaf blade and detail of trichomes on the abaxial surface (from Corrêa 280); I. M. umbrosa, leaf base and detail of trichomes on the abaxial surface (from Corrêa 81); J. Tibouchina fothergillae, longitudinal section of the ovary, hypathium and calix (from Corrêa 218); K. M. umbrosa, detail of the ovary and style (from Corrêa 81); L. M. gratissima, transverse section of the ovary (from Corrêa 137); M. Aciotis circaeifolia, petal (from Corrêa,21);N. C. epibaterium, petal (from Ribeiro 932); O. Miconia tomentosa, stamen larger (from Corrêa 47); P. Aciotis acuminifolia, fruit (From Corrêa 102); Q. M. rubiginosa, fruit (from Scudeller 1067); R. Miconia phanerostila, seed (from Herb 96); S. M. lourteigiana, arachnoid trichome (from Corrêa 77I); T. M. crassinervia, dendritic trichome (from Corrêa 248) U. M. poeppigii, stellate trichome (from Corrêa 280); V. Adelobotrys marginata, malpighiaceous tricome (from Corrêa 278).
FIGURE 1 in Melastomataceae in the Reserva de Desenvolvimento Sustentável do Tupé, Amazonas, Brazil
FIGURE 1. Map of the "Reserva de Desenvolvimento Sustentável do Tupé". Source: LandSat/2015 (INPE) 2015.
FIGURE 2 in Dendrophorbium chopinii (Compositae: Senecioneae), a new species from Amazonas Region, Peru
FIGURE 2. Photographs of Dendrophorbium chopinii. A. Habit (La Joya, Leimebamba, 3468 m). B. Habit (near La Joya, Leimebamba, 3490 m). C. Detail of the internodes and the upper surface of leaves (near Tajopampa, Leimebamba, 3300 m). D. Detail of the lower surface and margin of leaves (near La Joya, Leimebamba, 3490 m). E. Synflorescence in bloom (near La Joya, Leimebamba, 3490 m). F. Dry synflorescence (near Camino Inca, Tajopampa, Leimebamba, 3210 m).
FIGURE 1. Saxofridericia brasiliensis. A in A new species of Saxofridericia subgenus Acrotheca (Rapateaceae) from Amazonas State, Brazil
FIGURE 1. Saxofridericia brasiliensis. A. Habitat—campina forest along stream over sandstone outcrop in Reserva Ecológica Lajes near Presidente Figueiredo, Amazonas State, Brazil. B. Two adjacent heads in anthesis. C. Habit showing long-petiolate, lanceolate leaves. D. Two heads post-anthesis showing persistent, perfoliate bracts. Note also the long petioles and unequal leaf bases. Photo credits: A, D: P. Berry; B: A. Krahl; C: B. van Ee.
FIGURE 3 in A new species of Saxofridericia subgenus Acrotheca (Rapateaceae) from Amazonas State, Brazil
FIGURE 3. Comparison of the leaf bases and venation of Saxofridericia aculeata (A) and S. brasiliensis (B). A: J.F. Pruski 3216 (INPA), B: C.C. Berg et al. P19498 (INPA).
FIGURE 2. Saxofridericia brasiliensis. A. Habit. B-C. Inflorescence. D in A new species of Saxofridericia subgenus Acrotheca (Rapateaceae) from Amazonas State, Brazil
FIGURE 2. Saxofridericia brasiliensis. A. Habit. B-C. Inflorescence. D. Flower in side view. E. Flower in front view (A.H. Krahl et al. 250). Drawn by M.M. Corrêa.
FIGURE 6 in A new species of Neblinaphryne (Anura: Brachycephaloidea: Neblinaphrynidae) from Serra do Imeri, Amazonas state, Brazil
FIGURE 6. Volume renderings of a male paratype (MZUSP 160474 / MTR 30895) in dorsal, ventral, lateral, and frontal views. Minuscule septomaxillae are indicated by red circles in the frontal view.
FIGURE 8 in A new species of Neblinaphryne (Anura: Brachycephaloidea: Neblinaphrynidae) from Serra do Imeri, Amazonas state, Brazil
FIGURE 8. Spectrogram and oscillogram of the advertisement call of Neblinaphryne imeri sp. nov. (holotype MZUSP 160479/ MTR 30991) consisting of one Type 1 note and two Type 2 notes.
FIGURE 5 in A new species of Neblinaphryne (Anura: Brachycephaloidea: Neblinaphrynidae) from Serra do Imeri, Amazonas state, Brazil
FIGURE 5. Dorsolateral and ventral views of paratypes of Neblinaphryne imeri sp. nov. in life. (A) MZUSP 160471 (MTR 30853); (B) MZUSP 160474 (MTR 30895); (C) MZUSP 160477 (MTR 30988); (D) MZUSP 160478 (MTR 30990); (E) MZUSP 160480 (MTR 31003); (F) MZUSP 160472 (MTR 30864); (G) MZUSP 160473 (MTR 30892); (H) MZUSP 160476 (MTR 30964).
FIGURE 4 in A new species of Neblinaphryne (Anura: Brachycephaloidea: Neblinaphrynidae) from Serra do Imeri, Amazonas state, Brazil
FIGURE 4. Holotype of Neblinaphryne imeri sp. nov. MZUSP 160479 (MTR 30991, adult male). (A) Dorsal and (B) ventral views in preservative; (C) palmar view of the left hand and (D) plantar view of the left foot; (E) dorsolateral and (F) ventral views in life. The humeral tubercle is indicated by white arrows on (A) and (E).
FIGURE 3 in A new species of Neblinaphryne (Anura: Brachycephaloidea: Neblinaphrynidae) from Serra do Imeri, Amazonas state, Brazil
FIGURE 3. Phylogram obtained from the maximum likelihood partitioned analysis of 2,243 bp of combined fragments of mitochondrial DNA loci 16S and COI. Numbers on branches are bootstrap percentages> 50%.
FIGURE 2 in A new species of Neblinaphryne (Anura: Brachycephaloidea: Neblinaphrynidae) from Serra do Imeri, Amazonas state, Brazil
FIGURE 2. Four pictures taken on Serra do Imeri (Amazonas, Brazil) illustrating both open (giant bromeliads, top left) and mountain forest (mossy, all other images) habitats where Neblinaphryne imeri sp. nov. has been heard calling and collected.
FIGURE 1 in A new species of Neblinaphryne (Anura: Brachycephaloidea: Neblinaphrynidae) from Serra do Imeri, Amazonas state, Brazil
FIGURE 1. Topographic maps of (A) northern South America, (B) southern Pantepui, highlighting the neighboring Neblina and Imeri massifs. The white circle represents the type locality of Neblinaphryne mayeri and the white filled dot the one of N. imeri sp. nov. The landscape image depicts the panoramic view of the sampled area of the Serra do Imeri, with the Imeri peak in the background (the highest on the left).
Data from: Founded: genetic reconstruction of lineage diversity and kinship informs ex situ conservation of Cuban Amazon parrots (Amazona leucocephala)
Captive breeding is a widespread conservation strategy, yet such programs rarely include empirical genetic data for assessing management assumptions and meeting conservation goals. Cuban Amazon parrots (Amazona leucocephala) are considered vulnerable, and multiple on-island captive populations have been established from wild-caught and confiscated individuals of unknown ancestry. Here, we used mitochondrial haplotypic and nuclear genotypic data at 9 microsatellite loci to quantify the extent and distribution of genetic variation within and among captive populations in Zapata Swamp and Managua, Cuba, and to estimate kinship among breeders (n = 88). Using Bayesian clustering analysis, we detected 2 distinct clusters within the Zapata population, one of which was shared with Managua. Individuals from the cluster unique to Zapata possessed mitochondrial haplotypes with affinities to Cuban subspecies (A. l. leucocephala, A. l. palmarum); the shared cluster was similar, but also included haplotypes closely related to the subspecies restricted to Cayman Brac (A. l. hesterna). Overall mean kinship was low within each captive population (−0.026 to −0.012), with 19 and 11 recommended breeding pairs in Zapata and Managua, respectively, ranked according to mean kinship and informed by molecular sexing. Our results highlight the importance of understanding population history within ex situ management programs, while providing genetic information to directly inform Cuban parrot conservation.
FIGURES 18–25. Macrogynoplax poranga, Male. 18. Sterna 7-10 in Description of one new species and a key to adults of Macrogynoplax Enderlein (Plecoptera, Perlidae) from Reserva Florestal Adolpho Ducke, Amazonas, Brazil
FIGURES 18–25. Macrogynoplax poranga, Male. 18. Sterna 7-10; 19. Terga 9-10; 20. Hammer, ventral. 21. Hammer, lateral; 22. Paraproct, lateral; 23. Aedeagus, dorsal; 24. Aedeagus, ventral; 25. Aedeagus, lateral.
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.