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Fig. 3 in Bat assemblages of protected areas in the state of Rio de Janeiro, Brazil
Fig. 3. Box plot of the first axis of the Non-Metric Multidimensional Scaling (NMDS1) representing the bat assemblages and different types of habitat of each protected area sampled in the state of Rio de Janeiro, Brazil between 1989 and 2013:1, Montane Forest; 2, Restinga; 3, Submontane Forest; 4, Pasture; 5, Secondary growth Vegetation; 6, Urban; 7, Eucalypt; 8, Uppermontane Forest. Each circle represents one of the protected areas sampled.
Fig. 5 in Bat assemblages of protected areas in the state of Rio de Janeiro, Brazil
Fig. 5. Distribution of species captured in Protected Areas represented by the mean altitude categories of the sites surveyed in the state of Rio de Janeiro, Brazil between 1989 and 2013.
Fig. 4 in Bat assemblages of protected areas in the state of Rio de Janeiro, Brazil
Fig. 4. Relationship between the geographic distance between each pair of protected areas and their Bray-Curtis dissimilarity in the quantitative composition of bat assemblages in the state of Rio de Janeiro, Brazil in surveys conducted between 1989 and 2013.
Fig. 2 in The phyllostomid bat (Mammalia, Chiroptera) assemblage in a fragmented landscape in Midwestern Brazil
Fig. 2. Similarity between the sampling points of the three landscape formations indicated by the NMDS method (circle, large fragment; sQuare, riparian forest; cross, small fragments).
Fig. 1 in The phyllostomid bat (Mammalia, Chiroptera) assemblage in a fragmented landscape in Midwestern Brazil
Fig. 1. Sampling points at Fazenda Dona Amélia, Mato Grosso do Sul, Brazil (circles, points in the large fragment; stars, points in the riparian forest; triangles, points in the small fragments).
Fig. 4 in Environmental assessment in tropical streams by using abundance-biomass curves and W index in fish assemblages
Fig. 4. Spearman correlation (ρ = -0.68; p = 0.02) between W and PCoA1, Pirapó River basin, Maringá City, Paraná state, Brazil (White squares, urban streams; black Diamond, rural streams)(1, RibeirÃo Maringá; 2, Miosótis; 3, Mandacaru; 4, Roseira; 5, Granada; 6, Lombo; 7, ZaÚna; 8, Remo; 9, Romeira; 10, Água QueÇaba).
Fig. 2 in Environmental assessment in tropical streams by using abundance-biomass curves and W index in fish assemblages
Fig. 2. Ordination of two aXes generated by the principal coordinates analysis (PCoA) applied to the environmental data of Urban (white squares) and Rural streams (black diamond) of Maringá, Paraná, Brazil (1, RibeirÃo Maringá; 2, Miosótis; 3, Mandacaru; 4, Roseira; 5, Granada; 6, Lombo; 7, ZaÚna; 8, Remo; 9, Romeira; 10, Água QueÇaba).
Fig. 3 in Environmental assessment in tropical streams by using abundance-biomass curves and W index in fish assemblages
Fig. 3. Accumulation curves of abundance (white circles) and biomass (black circles) to show the ABC method and values of W indeX for fish assemblages sampled in the streams of Maringá, Paraná, Brazil. Negative values of W suggest environmentally stressed (following WARWICK & CLARKE, 1994) ecosystems, and positive values indicate not stressed environments.
Fig. 1 in Environmental assessment in tropical streams by using abundance-biomass curves and W index in fish assemblages
Fig. 1. Streams sampled in Maringá (PR), South Brazil: 1, RibeirÃo Maringá (51°58'8.00"W/ 23°22'28.09"S); 2, Miosótis (51°55'52.29"W/23°20'39.82"S); 3, Mandacaru (51°56'49.16"W/ 23°23'5.01"S); 4, Roseira (51°54'50.45"W/ 23°21'2.26"S); 5, Granada (51°45'39.95"W/ 23°18'5.26"S); 6, Lombo (51°58'7.07"W/ 23°18'49.53"S); 7, ZaÚna (51°50'55.11"W/ 23°23'41.99"S); 8, Remo (52°1'0.75"W/ 23°21'27.09"S); 9, Romeira (51°58'9.55"W/ 23°21'40.40"S); 10, Água QueÇaba (51°53'28.78"W/ 23°19'22.24"S). White circles represent rural streams; black circles represent urban streams; gray area is the urban perimeter; and dark gray are forest fragments.
Fig. 2 in Temporal variations of larval digenean assemblages parasitizing Heleobia parchappii (Mollusca: Cochliopidae) in two shallow lakes from the Buenos Aires province, Argentina
Fig. 2. Seasonal variation in the Overall prevalence (mean ± S.D) of larval digeneans parasitizing Heleobia parchappii (D'Orbigny, 1835) in Los Padres and La Brava lakes, Buenos Aires province, Argentina.
Fig. 3 in Temporal variations of larval digenean assemblages parasitizing Heleobia parchappii (Mollusca: Cochliopidae) in two shallow lakes from the Buenos Aires province, Argentina
Fig. 3. Seasonal variation in Species richness (mean ± S.D) of larval digeneans parasitizing Heleobia parchappii (D'Orbigny, 1835) in Los Padres and La Brava lakes, Buenos Aires province, Argentina.
Fig. 7 in Fish assemblage structure in a port region of the Amazonic coast
Fig. 7. Non-metric Multidimensional Scaling (NMDS) for abundance among fish assemblages for the months of capture in SÃo Marcos Bay, MaranhÃo, Brazil.
Figs. 5-6 in Fish assemblage structure in a port region of the Amazonic coast
Figs. 5-6. Spatial variation of the ecological indexes frow species of fish collected in SÃo Marcos Bay, State of MaranhÃo: 5, Shannon-Wiener; 6, Evenness.
Figs. 3-4 in Fish assemblage structure in a port region of the Amazonic coast
Figs. 3-4. Seasonal variation of the ecological indexes frow species of fish collected in SÃo Marcos Bay, State of MaranhÃo: 3, Shannon-Wiener; 4, Evenness.
Fig. 9 in Fish assemblage structure in a port region of the Amazonic coast
Fig. 9. Non-metric Multidimensional Scaling (NMDS) representing the results for fish abundance by sites of SÃo Marcos Bay, MaranhÃo, Brazil.
Fig. 2 in Fish assemblage structure in a port region of the Amazonic coast
Fig. 2. Temporal variation of the number of individuals collected and biomass at SÃo Marcos Bay, state of MaranhÃo, Brazil (D, drought; R, rainy).
Fig. 8 in Fish assemblage structure in a port region of the Amazonic coast
Fig. 8. Non-metric Multidimensional Scaling (NMDS) for abundance among especies capture in SÃo Marcos Bay, MaranhÃo, Brazil (Al: A. lineatus; Am: A. monoceros; Ar: A. rugispinis; As: A. spinifer; Aq: A. quadriscutis; At: A. tibicen; Bb: B. bagre; Br: B. ronchus; Bs: B. surinamensis; Cl: C. latus; Cs: C. spixii; Cp: C. parallelus; Cu: C. undecimalis; Ce: C. edentulus; Cf: C. faber; Cps: C. psittacus; Ca: C. acoupa; Cj: Ci jamaicensis; Cle: Ci leiarchus; Cm: C. microlepidotus; Dg: D. guttata; Dr: D. rhombeus; Es: E. saurus; Gl: G. luteus; Gm: G. micrura; Hb: H. bonillai; Lp: L. piquitinga; Ls: L. surinamensis; Lj: L. jocu; Ma: M. ancylodon; Mam: M. americanos; Mf: M. furnieri; Mc: M. curema; Mg: M. gaimardianus; Mi: M. incilis; Nm: N. micros; Ov: O. vespertilio; Op: O. palometa; Pc: P. castelnaeana; Pv: P. virginicus; Pn: P. nodosus; Pa: P. atherinoides; Rh: R. horkelli; Rl: R. lalandii; Sj: S. janeiro; Sh: S. herzbergii; Sp: S. proops; Ss: S. setapinnis; Sn: S. naso; Sr: S. rastrifer; Sst: S. stellifer; Sm: S. marina; St: S. timucu; Spl: S. plagusia; Tf: T. falcatus; Tl: T. lepturus).
Fig. 4 in Temporal variation of epi- and endofaunal assemblages associated with the red sponge Tedania ignis on a rocky shore (São Sebastião Channel), SE Brazil
Fig. 4. MDS ordination of epifaunal (open symbols) and endofaunal (closed symbols) assemblages associated with Tedania ignis at Praia das Cigarras, São Sebastião, São Paulo, Brazil during one year. Stress = 0.06.
Fig. 3 in Temporal variation of epi- and endofaunal assemblages associated with the red sponge Tedania ignis on a rocky shore (São Sebastião Channel), SE Brazil
Fig. 3. Temporal variation of the main taxonomic groups of epifaunal (open symbols) and endofaunal (closed symbols) assemblages associated with Tedania ignis at Praia das Cigarras, São Sebastião, São Paulo, Brazil. Values are means ± SE.
Fig. 2 in Temporal variation of epi- and endofaunal assemblages associated with the red sponge Tedania ignis on a rocky shore (São Sebastião Channel), SE Brazil
Fig. 2. Variation of density, taxon richness and Shannon diversity index of epifaunal (open symbols) and endofaunal (closed symbols) assemblages associated with Tedania ignis in relation to sponge biomass and organic matter content at Praia das Cigarras, São Sebastião, São Paulo, Brazil.
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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.