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207 results for “Ocypodidae”
Figure 3 in Biology, trophic chain, and ethnobiological calendar of the mangrove crab, Ucides cordatus (Linnaeus, 1763) (Brachyura, Ocypodidae), according to the perception of catchers in Itanhaém, São Paulo, Brazil
Figure 3. Ethnobiological calendar of the mangrove crab (Ucides cordatus) showing the months of occurrence of its biological events according to interviews conducted in 2017 with catchers of the mangrove swamp of the Itanhaém River in Itanhaém city (São Paulo State, Brazil).
Figure 2 in Biology, trophic chain, and ethnobiological calendar of the mangrove crab, Ucides cordatus (Linnaeus, 1763) (Brachyura, Ocypodidae), according to the perception of catchers in Itanhaém, São Paulo, Brazil
Figure 2.Representation of a fragment of the mangrove crab trophic chain according to the knowledge of catchers in the Itanhaém- SP mangrove.
Figure 1 in Biology, trophic chain, and ethnobiological calendar of the mangrove crab, Ucides cordatus (Linnaeus, 1763) (Brachyura, Ocypodidae), according to the perception of catchers in Itanhaém, São Paulo, Brazil
Figure 1. Photographic maps of the Itanhaém River Estuary (São Paulo State, southeastern Brazil). Source: Modified from Google® Maps 2020 - Image from 19 Mar 2021.
Figure 2 in Population biology of the fiddler crab Uca maracoani (Crustacea, Ocypodidae) inhabiting an impacted mangrove area on the southern coast of São Paulo state, Brazil
Figure 2. Regression between carapace width and major cheliped propodus of males (A), and carapace width and abdomen width for females of Uca maracoani (B). In (A), light gray circles represent juveniles and black circles represent adults. In (B), light gray circles represent juvenile females, gray circles represent transitional phase, and black circles represent adult females.
Figure 3 in Population biology of the fiddler crab Uca maracoani (Crustacea, Ocypodidae) inhabiting an impacted mangrove area on the southern coast of São Paulo state, Brazil
Figure 3. Frequency of juveniles, adult males, and adult females of Uca maracoani by crab size and month.
Figure 1 in Population biology of the fiddler crab Uca maracoani (Crustacea, Ocypodidae) inhabiting an impacted mangrove area on the southern coast of São Paulo state, Brazil
Figure 1. Proportion of females (white bars) and males (black bars) of Uca maracoani by (A) Month and (B) Crab size (CW in mm).
Fig. 5 in Phylogeographic Structure within the Fiddler Crabs and (Brachyura, Ocypodidae) along the Tropical West Atlantic.
Fig. 5. Mismatch distribution for one Caribbean and nine Brazilian populations of Uca maracoani with 606 basepairs (A) and one Brazilian and one Caribbean population with 825 basepairs (B).
Fig. 2 in Phylogeographic Structure within the Fiddler Crabs and (Brachyura, Ocypodidae) along the Tropical West Atlantic.
Fig. 2. Haplotype network of Leptuca thayeri constructed with Popart, with a connection limit of 95%, derived from Cox1 mtDNA with 609 basepairs (A) and 826 basepairs (B). Black dots represent missing haplotypes (one-step edges); numbered 'H' indicate most common haplotypes.
Fig. 1 in Phylogeographic Structure within the Fiddler Crabs and (Brachyura, Ocypodidae) along the Tropical West Atlantic.
Fig. 1. Sample sites of Leptuca thayeri (black dots) and Uca maracoani (grey dots) populations from throughout the West Atlantic: Luperón & Sánchez from the Dominican Republic; Priory (St. Ann) from Jamaica; Marudá (Pará), Acuípe (Bahia), Bertioga (São Paulo) from Brazil. Grey squares correspond to localities sampled by Wieman et al. (2014), with sequences of U. maracoani in GenBank.
Fig. 4 in Phylogeographic Structure within the Fiddler Crabs and (Brachyura, Ocypodidae) along the Tropical West Atlantic.
Fig. 4. Mismatch distribution for two Caribbean and three Brazilian populations of Leptuca thayeri with 609 basepairs (A) and three Brazilian populations with 826 basepairs (B).
Fig. 3 in Phylogeographic Structure within the Fiddler Crabs and (Brachyura, Ocypodidae) along the Tropical West Atlantic.
Fig. 3. Haplotype network of Uca maracoani constructed with Popart, with a connection limit of 95%, derived from Cox1 mtDNA with 606 base pairs (A) and 825 base pairs (B). Black dots represent missing haplotypes (one-step edges), numbered 'H' indicate most common haplotypes.
Fig. 2 in Influence Of Biotope Characteristics On The Distribution Of Uca Annulipes (H. Milne Edwards, 1837) And U. Vocans (Linnaeus, 1758)(Crustacea: Brachyura: Ocypodidae) On Pulau Hantu Besar, Singapore
Fig. 2. Interaction plot of fitted means of density of Uca annulipes and U. vocans across the upper and lower shores of the lagoonal beach at Pulau Hantu Besar, Singapore. L: Lower shore level; U: Upper shore level. • • Uca annulipes; ------ U. vocans
Fig. 1 in Influence Of Biotope Characteristics On The Distribution Of Uca Annulipes (H. Milne Edwards, 1837) And U. Vocans (Linnaeus, 1758)(Crustacea: Brachyura: Ocypodidae) On Pulau Hantu Besar, Singapore
Fig. 1. Study site at the lagoon of Pulau Hantu Besar showing location of sampling area: upper and lower shores of the lagoon where 51 quadrats were taken (not drawn to scale). Inset: Map of Singapore and offshore islands with Pulau Hantu islands encircled. (PHK: Pulau Hantu Kechil). Region of shore that was surveyed.
Fig. 6 in New Species Of Ilyoplax (Brachyura: Ocypodidae: Dotillinae) From The Philippines And Indonesia: Behavioral, Molecular, And Morphological Evidence
Fig. 6. Neighbor-joining tree for three morphologically similar species of Ilyoplax based on 864 base pairs of mtDNA coding for the 16S rRNA, with Ilyoplax dentata and Ilyoplax serrata as outgroups. Numbers are bootstrap values obtained after replicates.
Fig. 3 in New Species Of Ilyoplax (Brachyura: Ocypodidae: Dotillinae) From The Philippines And Indonesia: Behavioral, Molecular, And Morphological Evidence
Fig. 3 Comparison of the form of the first male pleopod, shape of carapace and shape of the lobe near outer side of the infraorbital border among I. orientalis, I. tansuiensis, and Ilyoplax pacifica, new species. A, magnification of apex of first pleopod: Ilyoplax pacifica, new species, paratype male (OMNH-Ar 7105); I. tansuiensis, male (5.2 mm c.b.) (OMNH-Ar 7111), Tanshui, Taiwan, coll. K. Wada, (27 Mar.1996); I. orientalis, male (5.2 mm c.b.) (OMNH-Ar 7109), Ranong, Thailand, coll. K. Wada, (6 Dec.1982). B, side margin of male carapace: Ilyoplax pacifica, new species, paratype male (OMNH-Ar 7105); I. orientalis, male (OMNH-Ar 7109); I. tansuiensis, male (OMNH-Ar 7111). C, dorsal view of characteristic lobe of the infraorbital border: Ilyoplax pacifica, new species, paratype male (OMNH-Ar 7105); I. orientalis, male (OMNH- Ar 7109); I. tansuiensis, male (OMNH- Ar 7111).
Fig. 2 in New Species Of Ilyoplax (Brachyura: Ocypodidae: Dotillinae) From The Philippines And Indonesia: Behavioral, Molecular, And Morphological Evidence
Fig. 2 Ilyoplax pacifica, new species: A, suborbital margin; B, male abdomen; C, male first pleopod; D, E, magnifications of apex of first pleopod; F, left chela; G, female abdomen. A, C-F, holotype male; B, paratype male (OMNH-Ar 7105); G, paratype ovig. female (OMNHAr 7106).
Fig. 2 in The importance of considering small-scale variability in macrobenthic distribution: spatial segregation between two fiddler crab species (genus Leptuca) (Decapoda, Ocypodidae)
Fig. 2. NMDS ordination (stress = 0.16) of sites based on similarity of group composition. Leptuca leptodactyla (Rathbun in Rankin, 1898): JLM (juvenile males), JLF (juvenile females), ALM (adult males) and ALF (adult females). Leptuca uruguayensis (Nobili, 1901): JUM (juvenile males), JUF (juvenile females), AUM (adult males) and AUF (adult females).
Fig. 1 in The importance of considering small-scale variability in macrobenthic distribution: spatial segregation between two fiddler crab species (genus Leptuca) (Decapoda, Ocypodidae)
Fig. 1. Schematic representation of the sampling design, with subarea separation and the six random replicates. (Area=10 m²).
Figure 4 in Population structure and reproductive biology of the fiddler crab Uca urvillei (Brachyura: Ocypodidae) in Maputo Bay (south Mozambique)
Figure 4. Monthly percentages of ovigerous females in each month in Uca urvillei (H. Milne Edwards, 1852). The same letters above bars indicate no statistical differences among months through Scheffe's test for multiple comparisons.
Figure 3 in Population structure and reproductive biology of the fiddler crab Uca urvillei (Brachyura: Ocypodidae) in Maputo Bay (south Mozambique)
Figure 3. Uca urvillei (H. Milne Edwards, 1852). Monthly variation of gonadosomatic index (GSI) of adult females (A) and males (B) throughout the study period. Error bars represent standard deviation.
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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)
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DANDI Archive for NWB datasets
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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.