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370 results for “seasonal forest”
FIGURE 1 in Stigmaphyllon caatingicola (Malpighiaceae), a new species from Seasonally Dry Tropical Forests in Brazil
FIGURE 1. Stigmaphyllon caatingicola: A. adaxial leaf surface, B. detail of inflorescence, C. detail of flower, D. samaroid mericarp from S. urenifolium (left) and S. caatingicola (right, scale 1 cm), E. detail of stem surface, F. habitat within SDTF in anthropomorphically modified Caatinga (white arrow shows a tree with S. caatingicola climbing) (R.F.Almeida 577, holotype).
Figure 2 in Population dynamics, seasonality and sex ratio of twig-girdling beetles (Coleoptera: Cerambycidae: Lamiinae: Onciderini) of an Atlantic rain forest in south-eastern Brazil
Figure 2. Mean (± SE) number of adult beetles of the tribe Onciderini found at the Serra do Japi during the period of adult activity (between October and May) from 2002 to 2006. (A) Species with peak abundance between December and February. (B) Species with peak abundance between January and March. (n = 5). An asterisk indicates significance among monthly abundances after Bonferroni correction (Friedman's ANOVA; p ≤ 0.013).
Figure 1 in Population dynamics, seasonality and sex ratio of twig-girdling beetles (Coleoptera: Cerambycidae: Lamiinae: Onciderini) of an Atlantic rain forest in south-eastern Brazil
Figure 1. Rank-abundance pattern of adult beetles of the tribe Onciderini found at the Serra do Japi between December 2002 and December 2006. (n = 1113 individuals).
Figure 3 in Population dynamics, seasonality and sex ratio of twig-girdling beetles (Coleoptera: Cerambycidae: Lamiinae: Onciderini) of an Atlantic rain forest in south-eastern Brazil
Figure 3. (A) Population fluctuation (number of individuals) of adult beetles of the tribe Onciderini found at the Serra do Japi between December 2002 and December 2006 (n = 1113 individuals). (B) Climate diagram for the Biological Reserve of the Serra do Japi at the same time period (data from a meteorological station approximately 8 km from the study site). The mean monthly temperature (◦ C) and rainfall (mm) are scaled to represent the potential evapotranspiration. Values inside each diagram indicate mean temperature (◦C) and total rainfall (mm) for each sampling year. Dry months are represented by dotted areas; humid months by the vertical lines and months with rain in excess of 100 mm are in solid black.
Figure 2 in Anurans of Turvo State Park: testing the validity of Seasonal Forest as a new biome in Brazil
Figure 2. Ordination analysis of Seasonal Forest anuran communities using the index of geographic similarity coefficient (CGR) and non-metric multidimensional scaling (NMDS). For abbreviations see Table 1. 1 = group formed by the sites in the mid-west and south-eastern Brazil, 2 = group formed by sites in the Atlantic Forest, 3 = group formed by sites in southern Brazil.
Figure 1 in Anurans of Turvo State Park: testing the validity of Seasonal Forest as a new biome in Brazil
Figure 1. Map of South America highlighting the geopolitical division of Brazil. States of Rio Grande do Sul, (RS), Santa Catarina (SC), Paraná (PR), São Paulo (SP) and Mato Grosso do Sul (MS) are represented in grey. The 19 locations of Seasonal Forest (grey points) and TSP anuran communities (black point) are shown. For abbreviations see Table 1.
Figure 2 in Anurans of a seasonally dry tropical forest: Morro do Diabo State Park, São Paulo state, Brazil
Figure 2. Historical rainfall distribution and minimum and maximum mean monthly temperatures recorded from 1977 to 2002 in Morro do Diabo State Park, São Paulo state, Brazil. Source: Faria (2006).
Figure 3 in Anurans of a seasonally dry tropical forest: Morro do Diabo State Park, São Paulo state, Brazil
Figure 3. Cumulative curve of species and richness estimators of anurans recorded in Morro do Diabo State Park, São Paulo state, Brazil, from September 2005 to March 2007 based on sampling at breeding sites. The dots show the mean cumulative curve, generated by 500 randomized additions of samples, and the vertical bars indicate possible variation around the medium curve (confidence interval of 95%).
Figure 1 in Anurans of a seasonally dry tropical forest: Morro do Diabo State Park, São Paulo state, Brazil
Figure 1. Phytogeographic units of Brazil, pointing out the state of São Paulo, and showing the location of Morro do Diabo State Park (MDSP).
Figure 5 in Anurans of a seasonally dry tropical forest: Morro do Diabo State Park, São Paulo state, Brazil
Figure 5. Dispersion diagram of the similarity matrix in the composition of the anuran assemblage (Coefficient of Geographic Resemblance; CGR) with the geographic distance matrix among the localities. p is the significance level to Mantel's test (r), using 5000 Monte Carlo permutations.
Figure 4 in Anurans of a seasonally dry tropical forest: Morro do Diabo State Park, São Paulo state, Brazil
Figure 4. Similarity (Coefficient of Geographic Resemblance; CGR) in the taxonomic composition of the Morro do Diabo State Park anuran assemblage with other areas of different phytogeographic units in the country. r represents the Cophenetic Correlation Coefficient. The abbreviations are defined in Table 1.
Figure 2 in Orchid bees (Hymenoptera, Apidae, Euglossini) are seasonal in Seasonal Semideciduous Forest fragments, southern Brazil
Figure 2. Orchid bee phenology in Seasonal Semideciduous Forest fragments, Euglossa fimbriata.
Fig. 4 in Seasonal and Diel Activity of Dung Beetles (Coleoptera: Scarabaeoidea) Attracted to European Bison Dung in Białowieża Primeval Forest, Poland
Fig. 4. Faunistic resemblance of scarabaeoid dung beetle communities among six months of the vegetative season in Białowieża Primeval Forest, Poland.
Fig. 1 in Seasonal and Diel Activity of Dung Beetles (Coleoptera: Scarabaeoidea) Attracted to European Bison Dung in Białowieża Primeval Forest, Poland
Fig. 1. Study area in Białowieża Primeval Forest, Poland during the first collecting series on 14 April 2008. Photograph by A.Neumann.
Fig. 3 in Seasonal and Diel Activity of Dung Beetles (Coleoptera: Scarabaeoidea) Attracted to European Bison Dung in Białowieża Primeval Forest, Poland
Fig. 3. Seasonal dynamics and species richness of two scarabaeoid dung beetle nesting guilds in Białowieża Primeval Forest, Poland. Lines = number of individuals; bars = number of species.
Fig. 2 in Seasonal and Diel Activity of Dung Beetles (Coleoptera: Scarabaeoidea) Attracted to European Bison Dung in Białowieża Primeval Forest, Poland
Fig. 2. Structure of dung beetles communities in six months of the vegetative season in Białowieża Primeval Forest, Poland. Numbers above the charts indicate the number of individuals (number of species).
Fig. 6 in Seasonal and Diel Activity of Dung Beetles (Coleoptera: Scarabaeoidea) Attracted to European Bison Dung in Białowieża Primeval Forest, Poland
Fig. 6. Comparison of endocoprid and paracoprid guild abundance in material trapped during the day (6 am–6 pm) and at night (6 pm–6 am) in Białowieża Primeval Forest, Poland. * = p <0.05; ** = p <0.001.
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.
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International Brain Laboratory public data
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OpenNeuro
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