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4,243 results for “seasonality”
Fig. 3 in Seasonal Appearance, Diel Flight Activity, and Geographic Distribution of MaleTelegeusis texensisFleenor and Taber (Coleoptera: Telegeusidae)
Fig. 3. Numbers of males (n = 99) at a single flight intercept per 10 minute intervals from 18:00–21:00, Stengl "Lost Pines" Biological Station, 2 May–27 June 2010.
Fig. 2 in Seasonal Appearance, Diel Flight Activity, and Geographic Distribution of MaleTelegeusis texensisFleenor and Taber (Coleoptera: Telegeusidae)
Fig. 2. Bar graphs of adult male Telegeusis texensis at Stengl "Lost Pines" Biological Station during the years of 2000–2002 and 2010. Gray bars represent abundance, diamonds represent daily maximum temperature, squares represent daily minimum temperature, and triangles represent daily precipitation.
Fig. 4 in Seasonal Appearance, Diel Flight Activity, and Geographic Distribution of MaleTelegeusis texensisFleenor and Taber (Coleoptera: Telegeusidae)
Fig. 4. Map of Texas counties with superimposed ecoregions and Telegeusis texensis collection localities plotted as black dots.
Fig. 1 in Seasonal Appearance, Diel Flight Activity, and Geographic Distribution of MaleTelegeusis texensisFleenor and Taber (Coleoptera: Telegeusidae)
Fig. 1. Cumulative bar graph of Telegeusis texensis abundance from 1990–2010 showing peak abundance and thus activity of adult males in April.
Fig. 2 in Seasonal Activity of Carabidae (Coleoptera) in Forest Fragments and Crops in São Paulo, Brazil
Fig. 2. Seasonal activity of dominant species of Carabidae in three areas of São Paulo, Brazil. NTS = no-tillage system, CTS = conventional tillage system. Solid line = soybean/corn crops; dashed line = forest fragment.
Fig. 1 in Seasonal Activity of Carabidae (Coleoptera) in Forest Fragments and Crops in São Paulo, Brazil
Fig. 1. Seasonal activity of dominant species of Carabidae in three areas of São Paulo, Brazil. NTS = no-tillage system, CTS = conventional tillage system. Solid line = soybean/corn crops; dashed line = forest fragment.
FIGURE 3 in An updated checklist of bryophytes for the state of Paraíba, a Brazilian hotspot: new records and biological spectrum in a Seasonally Dry Tropical Forest fragment
FIGURE 3. Representation of life forms in terms of bryophyte species richness in thee studied seasonally dry tropical forest fragment in the Northeast Region of Brazil.
FIGURE 2 in An updated checklist of bryophytes for the state of Paraíba, a Brazilian hotspot: new records and biological spectrum in a Seasonally Dry Tropical Forest fragment
FIGURE 2. Results for the Weighted Pair-Group Method with Arithmetic mean (WPGMA) based on the Sørensen similarity index for all species at sites listed by Germano et al. (2016) and the studied seasonally dry tropical forest fragment (SDTF). Cophenetic Correlation Coefficient (CCC) = 0.83. The areas are named following Germano et al. (2016) with P = point/sampled area.
Fig. 1 in Season of Fine Woody Debris Death Affects Colonization of Saproxylic Coleoptera
Fig. 1. General timeline: tree death (ax), inoculation time (∼∼∼), and emergence time (O---O) for A: Ferro et al.
Figs. 2–3 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Figs. 2–3. Seasonality of coprophagous beetles in Kampinoski Park Narodowy, Poland. 2) Temporal changes in abundance (individuals/kg of moose dung) and dry weight (g/kg of moose dung) of captured beetles; 3) Temporal changes in abundance and dry weight of two dung beetle nesting guilds.
Fig. 6 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 6. Seasonality with one evident population peak of the most abundant coprophagous beetle species on moose dung in Kampinoski Park Narodowy, Poland.
Fig. 5 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 5. Temporal changes in Shannon-Weaver (H') and Pielou's evenness (J) indices of the coprophagous beetle fauna in Kampinoski Park Narodowy, Poland.
Fig. 4 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 4. Monthly dominance structures of captured coprophagous beetles in Kampinoski Park Narodowy, Poland. Ac. de – Acrossus depressus; Ac. ru – Acrossus rufipes; Ag. ne – Agoliinus nemoralis; An. st – Anoplotrupes stercorosus; Ch. di – Chilothorax distinctus; Eu. co – Eurodalus coenosus; Ge. st – Geotrupes stercorarius; k – number of species; Li. ze – Limarus zenkeri; n – number of individuals; O – other species (may include both nesting guilds); Pl. bo – Planolinoides borealis; Pl. fa – Planolinus fasciatus; Tr. ve – Trypocopris vernalis; Grey slices – paracoprids, white slices – endocoprids.
Fig. 1 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 1. Baited pitfall trap used to capture coprophagous beetles in Kampinoski Park Narodowy, Poland. Photograph by D. Marczak.
Fig. 7 in Seasonality of Coprophagous Beetles (Coleoptera: Hydrophilidae, Geotrupidae, Scarabaeidae) Inhabiting Moose (Alces Alces Linnaeus) Dung in Kampinoski Park Narodowy, Poland
Fig. 7. Seasonality with two or more apparent population peaks of the most abundant coprophagous beetle species on moose dung in Kampinoski Park Narodowy, Poland.
FIGURE 1. Erythroxylum niquelandense M. J. Silva & Loiola. A. Fertile branch. B. Leaf. C in A new species of Erythroxylum (Erythoxylaceae) from the seasonal dry forests of the state of Goiás, Brazil
FIGURE 1. Erythroxylum niquelandense M. J. Silva & Loiola. A. Fertile branch. B. Leaf. C. Detail of the midvein in the adaxial leaf surface. D. Petiole, adaxially canaliculate and transversely rugose. E. Stipule, dorsal view. F. Cataphyll, dorsal view. G. Fascicle with flower buds and open flowers. H. Flower bud. I. Bracteole, dorsal view, note erose margin. J. Brevistylous flower. K. Longistylous flower. L. Petal, ventral view. M. Ovary. N. Fruits. (From holotype, Illustrated by Cristiano Gualberto).
FIGURE 2. Erythroxylum niquelandense M. J. Silva & Loiola. A. Habitat and habit. B in A new species of Erythroxylum (Erythoxylaceae) from the seasonal dry forests of the state of Goiás, Brazil
FIGURE 2. Erythroxylum niquelandense M. J. Silva & Loiola. A. Habitat and habit. B. Leaves and phylotaxy, note the conspicuous veins on the adaxial surface and slightly bullate leaf. C. Stipules. D. Stem and bark detail. E. Fascicle with flower bud, open flowers, and immature fruits. F. Immature fruits longitudinally striated, note the different shapes. G. Fruit in advanced stage of maturation with red apex. (Images taken by M. J. Silva)
FIGURE 3 in A new species of Erythroxylum (Erythoxylaceae) from the seasonal dry forests of the state of Goiás, Brazil
FIGURE 3. Distribution map of Erythroxylum niquelandense M. J. Silva & Loiola in Goiás state, Central-West region, Brazil.
Figure 2 in Comparative morphology, phylogenetic relationships, and historical biogeography of plesiolebiasine seasonal killifishes (Teleostei: Cyprinodontiformes: Rivulidae)
Figure 2. Jaws, jaw suspensorium, and opercular series: left jaw suspensorium and anterior part of opercular series, lateral view, of Plesiolebias filamentosus (A), and Pituna compacta (B); left autopalatine, medial view, of Kryptolebias brasiliensis (C), Pi. compacta (D), and Maratecoara splendida (E); left maxilla, proximal portion, dorsal view, of Rachovia maculipinnis (F), and Pi. compacta (G); left maxilla, proximal portion, posterior view, of M. splendida (H), and Pl. filamentosus (I). Numbers in brackets are characters and character states numbered according to Appendix S2. Larger stippling indicates cartilage. Scale bars = 0.5 mm.
Figure 4 in Comparative morphology, phylogenetic relationships, and historical biogeography of plesiolebiasine seasonal killifishes (Teleostei: Cyprinodontiformes: Rivulidae)
Figure 4. Neurocranium, vertebrae, and fins: anterior portion of neurocranium, central and left portion, ventral view, of Papiliolebias bitteri (A); median portion of ventral part of neurocranium, left lateral view, of Plesiolebias filamentosus (B), and Maratecoara splendida (C); parasphenoid, ventral view, of Pa. bitteri (D); neurocranium, posterior part, and first two vertebrae, lateral view (ribs excluded), of Pl. filamentosus (E), and Ma. splendida (F); caudal skeleton (fin rays excluded), left lateral view, of Stenolebias damascenoi (G); anal-fin base, anterior portion, left lateral view, of Plesiolebias glaucopterus (H); left post-temporal and supracleithrum, lateral view, of Maratecoara formosa (I), Pa. bitteri (J), and Pterolebias longipinnis (K); left proximal radials of pectoral fin, lateral view, of Pituna poranga (L), and Maratecoara lacortei (M); pelvic bones, dorsal view, of Pituna obliquoseriata (N). Numbers in brackets are characters and character states numbered according to Appendix S2. Larger stippling indicates cartilage. Scale bars = 0.5 mm.
ScienceDex guides
Understand access before you commit
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.