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601 results for “habitat diversity”
Fig. 3 in Diversity and spatial distribution of predacious Dolichopodidae (Insecta: Diptera) on organic vegetable fields and adjacent habitats in Brazil
Fig. 3. Distribution of relative abundance by species of Dolichopodidae flies collected on organic farms producing vegetables in the Federal District, Brazil.
Fig. 3 in Diversity and density-dependence relationship between hymenopteran egg parasitoids and the corn leafopper (Hemiptera: Cicadellidae) in maize agroecosystem vs. teosinte wild habitat
Fig. 3. Relationship between the number of exposed Dalbulus maidis eggs and number of Anagrus virlai within the crop maize habitat on (A) maize sentinel plants, and (B) teosinte sentinel plants.
Fig. 1 in Diversity and density-dependence relationship between hymenopteran egg parasitoids and the corn leafopper (Hemiptera: Cicadellidae) in maize agroecosystem vs. teosinte wild habitat
Fig. 1. Relationship between the number of exposed Dalbulus maidis eggs and number of adult parasitoids (of any species) found in the crop maize habitat on (A) maize sentinel plants, and (B) teosinte sentinel plants.
Fig. 1 in Bird diversity in an urban ecosystem: the role of local habitats in understanding the effects of urbanization
Fig. 1. Bird species richness and overall abundance recorded in point counts (surveyed on September 2013) in the municipality of Canoas, Rio Grande do Sul, Brazil.
Fig. 2 in Bird diversity in an urban ecosystem: the role of local habitats in understanding the effects of urbanization
Fig. 2. Ordination diagram presenting the first two axes of the Canonical Correspondence Analysis (CCA) (percent of explained variability: axis I = 7.1%, axis II = 1.9%) based on the distribution of species abundance in 118 sample units (dots) in the urban area of Canoas, Rio Grande do Sul, Brazil, and its correlation with seven explanatory variables (arrows). The first axis shows the urbanization gradient (negatives values on left = more urbanized regions; positive values on right = less urbanized regions). All axes were significant (Monte Carlo test with 9,999 permutations: P <0.001). Species names are given in full in Appendix 1. Variables are described in Tab. I.
Figure 2-6. Habitats. 2 in Diversity and distribution of the scarab beetle tribe Phanaeini in the northern states of the Brazilian Northeast (Coleoptera: Scarabaeidae: Scarabaeinae)
Figure 2-6. Habitats. 2) An opening in the caatinga habitat in the vicinity of Tabatinga, Maranguape, 126 m (CE), where Coprophanaeus pertyi occurs sympatrically with C. cyanescens and Diabroctis mimas. April 2008. 3) Habitats at Maranguape, São Benedito, Sanctuario da Nossa Senhora de Penha, (CE). In the foreground open caatinga area where Coprophanaeus pertyi, C. cyanescens and Dibroctis mimas occur. In the background, on the hills, Atlantic forest where C. cyanescens, C. dardanus and D. mimas occur. March 2008. 4) A typical area of 'chapada' at Fazenda Rodiador in the Santa Quiteria de Maranhão municipality (MA). May 2008. This cerrado biotope is the habitat of Coprophanaeus acrisius. 5) Open grassland/palm forest within the cerrado habitat at Fazenda Rodiador in the vicinity of Santa Quiteria de Maranhão (MA). May 2008. This is the habitat for Phanaeus melibaeus. 6) Atlantic forest habitat at Uirapuru, Serra de Baturité, 620 m (CE), where Coprophanaeus cyanescens occurs sympatrically with C. dardanus. April 2008. Photograph 2-3, 6 by C.P.D.T. Gillett and 4-5 by M.P.T. Gillett.
Fig. 2a-f in Wild bees (Anthophila) of Porto Santo (Madeira Archipelago) and their habitats: species diversity, distribution patterns and bee-plant network *
Fig. 2a-f: a) Andrena dourada, female; b) Andrena portosanctana, female collecting pollen on Cakile maritima; c) Lasioglossum wollastoni, female in front of nesting site; d) Osmia latreillei iberoafricana, male visiting Cakile maritima; e) Amegilla quadrifasciata maderae, female collecting pollen on Echium portosanctensis, f) Bombus terrestris lusitanicus, worker, collecting pollen on Echium portosanctensis. Photos: A. Kratochwil (a, b, e), A. Schwabe (c, d, f).
Fig. 1 in Wild bees (Anthophila) of Porto Santo (Madeira Archipelago) and their habitats: species diversity, distribution patterns and bee-plant network *
Fig. 1: Aspects from some of our sampling sites and their surroundings in March after an extreme dry winter and a wet winter: Left: March 2012 (November 2011–March 2012, no precipitation); right: March 2017 (October 2016–March 2017, 301 mm precipitation); a, b: sand beach with Vila Baleira in the centre; c, d: Pico Juliana and mainly fallow land; e, f: southern-exposed extensively grazed dry grassland; view from Capela da Graça (in the background right: Pico do Facho with Pinus plantations). Photos: A. Schwabe.
Fig. 3 in Diel Variations And Diversity Of Fish Communities Along The Unreclaimed Shallow Coastal Habitats Of Changi Point Beach, Singapore
Fig. 3. Size class distribution of M. chinensis captured by day and night seines at Changi Point Beach between Oct. to Dec.2006 (error bars ± S.E.).
Fig. 2 in Diel Variations And Diversity Of Fish Communities Along The Unreclaimed Shallow Coastal Habitats Of Changi Point Beach, Singapore
Fig. 2. Size class distribution of P. quadrilineatus captured by day and night seines at Changi Point Beach between Oct. to Dec.2006 (error bars ± S.E.).
Fig. 4 in Diel Variations And Diversity Of Fish Communities Along The Unreclaimed Shallow Coastal Habitats Of Changi Point Beach, Singapore
Fig. 4. Size class distribution of H. cyanospilus captured by day and night seines at Changi Point Beach between Oct. to Dec.2006 (error bars ± S.E.).
Fig. 7 in Diversity And Assemblage Patterns Of Juvenile And Small Sized Fishes In The Nearshore Habitats Of The Gulf Of Thailand
Fig. 7. Results from LDA analysis showing (a) the distribution and overlap of groups of clusters (ellipsoid) and (b) the contribution of parameters to F1 and F2.
Fig. 4 in Diversity And Assemblage Patterns Of Juvenile And Small Sized Fishes In The Nearshore Habitats Of The Gulf Of Thailand
Fig. 4. Boxplots showing (a) abundance (log10-transformed) and (b) diversity index (H′ index) of fish samples in each habitat. Note: The same letter(s) in each box indicates values that are not significantly different when applying the Duncan's post-test, p-value> 0.05.
Fig. 5 in Diversity And Assemblage Patterns Of Juvenile And Small Sized Fishes In The Nearshore Habitats Of The Gulf Of Thailand
Fig. 5. Nodal diagram showing species and sample groups and abundance (log10-transformed) of fish samples per cluster.
Fig. 1 in Diversity And Assemblage Patterns Of Juvenile And Small Sized Fishes In The Nearshore Habitats Of The Gulf Of Thailand
Fig. 1. Location of the sampling habitats at Had Khanom Mu Ko Thale Tai National Park, Thailand. Note: the sampling sites; ▲ seagrass beds; ■ mudflats; ● sandy beaches; ★ mangroves.
Influence of European beech (Fagus sylvatica) rot hole habitat characteristics on invertebrate community structure and diversity - Dataset
<p>The data and R scripts pertinent to the Journal of Insect Science manuscript titled "Influence of European beech (<em>Fagus sylvatica</em>) rot hole habitat characteristics on invertebrate community structure and diversity". Environmental variables are given in "Rot Hole and Site Data", whilst community data are given as counts in "Rot Hole Community Data - counts" and as relative abundance in "Rot Hole Community Data - relative abundances".</p>
Raw data for: Habitat edges affect tree diversity more than biomass regeneration in a reforested wet neotropical timber plantation
<p>Raw data for: Habitat edges affect tree diversity more than biomass regeneration in a reforested wet neotropical timber plantation. Code hosted on GitHub/Zenodo.</p>
Species detection histories used in Killion et al. (2023): Integrating Spaceborne Estimates of Structural Diversity of Habitat into Wildlife Occupancy Models
<p>Camera trap species detection histories used for occupancy models in "Integrating Spaceborne Estimates of Structural Diversity of Habitat into Wildlife Occupancy Models". </p>
Fig. 1 Insect alpha-diversity across tropical forest habitats. a in Mangroves are an overlooked hotspot of insect diversity despite low plant diversity
Fig. 1 Insect alpha-diversity across tropical forest habitats. a Mangroves treated as one habitat; b Comparison of mangrove sites: Pulau Ubin (PU), Sungei Buloh (SB), Pulau Semakau old-growth (SMO), Pulau Semakau new-growth (SMN), other smaller mangrove fragments (see Additional File 1: Table S13); solid lines = rarefaction; dotted = extrapolations. The arrow on the x-axis indicates the point of rarefaction where species richness comparisons were made (see bar charts for absolute numbers with 95% confidence intervals)
Fig. 1 in High Genetic Diversity of Amoebae Belonging to the Genus Mayorella (Amoebozoa, Discosea, Dermamoebida) in Natural Habitats
Fig. 1. Diversity of locomotive and floating forms of studied strains: A–E – Mayorella sp. strain Belaya; F–J – Mayorella sp. strain 2Th5; K–O – Mayorella sp. strain FE 16; P–S – Mayorella sp. strain JJP2003. DIC and phase contrast images, scale bar is 20 μm.
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.