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4,243 results for “seasonality”
Figure 4 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 4 Stratiomyids from the Reserva Ecológica e Biológica Augusto Ruschi, Sertãozinho, São Paulo, Brazil. (a) Diaphorostylus sp. 1, male; (b) Diaphorostylus sp. 1, female; (c) Euryneura sp. 1, male; (d) Euryneura sp. 1, female; (e) Hermetia albitarsis Fabricius, 1805, female; (f) H. brachygastropsis Fachin & Hauser, 2022, female; (g) H. illucens (Linnaeus, 1758), female; (h) H. currani Lindner, 1949, female; (i) Chorophthalmyia brevicornis Lindner, 1964, female; (j) Cyclotaspis sp. 1, female; (k) Eidalimus sp. 1, male; (l) Eidalimus sp. 1, female. Scale bar, 1 mm.
Figure 9 in Soldier flies (Diptera: Stratiomyidae) on semideciduous seasonal forest fragments, with a list of species for São Paulo State, Brazil, and two new records of species for the country
Figure 9 Climate and seasonal data of soldier flies collected using black roof Malaise traps at the Reserva Ecológica e Biológica de Sertãozinho, São Paulo, Brazil.
Figure 4 in Seasonality and distribution of Coleoptera families (Arthropoda, Insecta) in the Cerrado of Central Brazil
Figure 4. Circular graph of abundance of Coleoptera and the main families (Melolonthidae, Carabidae, Scarabaeidae, Bostrichidae, and Chrysomelidae) captured using a light trap in an area of cerrado sensu stricto in Planaltina/DF, Brazil, from June 2015 to May 2016. The areas in blue represent the rainy season (October to March) and the areas in green represent the dry season (April to September).
Figure 1 in Seasonality and distribution of Coleoptera families (Arthropoda, Insecta) in the Cerrado of Central Brazil
Figure 1. Map of Brazil showing the collection point in the Federal District and the light trap used for Coleoptera sampling.
Fig. 4 in Trophic roles of scavenger beetles in relation to decomposition stages and seasons
Fig. 4. Dominance of beetle guilds observed in cadavers per decomposition stages and seasons, represented in a ternary diagram. Each line of the sides of the triangle is equal to a 5% of the total. The black point corresponds to the equicomposition (33.3% for each guild). The greater point in each line indicates the initial decomposition stage per season.
Fig. 3 in Trophic roles of scavenger beetles in relation to decomposition stages and seasons
Fig. 3. Mean abundance (±SE) of omnivorous beetles per decomposition stages and seasons. (A) Cadavers (c). (B) Traps (st). F, Fresh; B, Bloated; ACD,Active Decay; ADD, Advanced Decay; R, Remains.
Figure 3 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)
Figure 3. The immunoreactive cortisol concentrations of Sichuan golden monkeys within seasons (ng/g). Sp: Spring; Su: summer; Au: autumn; Wi: winter. FM refers to the mean of nonpregnant females (F1 and F2); MM refers to the mean of males (M1, M2, and M3). *,#, §,﹠: P <0.05, bar with * was significantly higher than bar with #, and bar with § was significantly higher than bar with ﹠.
Figure 5 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)
Figure 5. The fecal immunoglobulin levels of Sichuan golden monkeys over the year (ng/g). FM refers to mean of nonpregnant females (F1 and F2); MM refers to mean of males (M1, M2, and M3).
Figure 2 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)
Figure 2. Immunoreactive cortisol concentrations in males (M1 was the dominant male; M2 and M3 were all-male units) within seasons (ng/g). Sp: Spring; Su: summer; Au: autumn; Wi: winter. a,b,c,d: Histograms that share the same letters do not differ from each other, whereas histograms with different letters are different at P <0.05. *,#: P <0.05, bar with # was significantly higher than bar with *.
Figure 1 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)
Figure 1. Immunoreactive cortisol concentrations in nonpregnant (F1 and F2) and pregnant (F3) females within seasons (ng/g). Sp: spring; Su: summer; Au: autumn; Wi: winter. a,b,c,d: Histograms that share the same letters do not differ from each other, whereas histograms with different letters are different at P <0.05. *,#: P <0.05, bar with * was significantly higher than bar with #.
Figure 4 in Seasonal variations in immunoreactive cortisol and fecal immunoglobulin levels in Sichuan golden monkey (Rhinopithecus roxellana)
Figure 4. The immunoreactive cortisol concentrations of Sichuan golden monkeys over the year (ng/g). FM refers to mean of nonpregnant females (F1 and F2); MM refers to mean of males (M1, M2, and M3).
Figure 3 in Seasonal variations in body length and fecundity of 2 copepod species: Thermocyclops crassus (Fischer, 1853) and Eudiaptomus drieschi (Poppe & Mrázek, 1895
Figure 3. Monthly variations in mean egg numbers and lengths of females and males of 2 copepod species in Lake Yenişehir during the study period (broken lines show that no E. drieschi was found in this period).
Figure 2 in Seasonal variations in body length and fecundity of 2 copepod species: Thermocyclops crassus (Fischer, 1853) and Eudiaptomus drieschi (Poppe & Mrázek, 1895
Figure 2. Monthly variations of temperature, phosphate, nitrate, dissolved oxygen, and chlorophyll-a during the study in Lake Yenişehir, from May 2003 to June 2004 (±SD).
Figure 6 in A comparative study of the diurnal behaviour of the Northern Shoveller (Anas clypeata) during the wintering season at Garaet Hadj-Tahar (North-East Algeria) and Garaet Timerganine (Algerian highlands)
Figure 6. Balance of the rhythms of daytime activities of the Shovellers in Garaet Hadj-Tahar during the 2 wintering seasons of 2007 and 2009.
Figure 4 in A comparative study of the diurnal behaviour of the Northern Shoveller (Anas clypeata) during the wintering season at Garaet Hadj-Tahar (North-East Algeria) and Garaet Timerganine (Algerian highlands)
Figure 4. Percentage of time allocated by the Shoveller for diurnal activities at (A) Garaet Hadj-Tahar and (B) Garaet Timerganine.
Figure 4 in Seasonal composition and population density of zooplankton in Lake Karaboğaz from the Kızılırmak Delta (Samsun, Turkey)
Figure 4. Seasonal distribution of the diversity in zooplankton; relationship between diversity, temperature, chlorophyll a, and salinity.
Figure 4. a in Feeding ecology of vimba (Vimba vimba L., 1758) in terms of size groups and seasons in Lake Sapanca, northwestern Anatolia
Figure 4. a) MDS based on a similarity matrix constructed on the average food consumption of V. vimba of juvenile and adult, and b) cluster analysis.
Text-fig. 6. Thin section of third lower incisor from a bear (Ursus deningeri), Propástka 1, layer 3. in Seasonality Of Use Of Za Hájovnou Cave By Bears And Lions
Text-fig. 6. Thin section of third lower incisor from a bear (Ursus deningeri), Propástka 1, layer 3.
Text-fig. 2. Thin section of canine from a bear (Ursus deningeri), Chodba naděje, layer 4, depth 140–200 cm. in Seasonality Of Use Of Za Hájovnou Cave By Bears And Lions
Text-fig. 2. Thin section of canine from a bear (Ursus deningeri), Chodba naděje, layer 4, depth 140–200 cm.
Figure 3 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 3. Mean abundance of mosquitoes collected in oviposition traps in three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil Means followed by the same letter do not differ by the Tukey test at <0.05. Vertical bars denote 1±SD. / Abundancia media de mosquitos recolectados en trampas de oviposición en tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil. Las medias seguidas por la misma letra no difieren por la prueba de Tukey en <0,05. Las barras verticales denotan 1 ± SD.
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.