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549 results for “population size”
Figure 1 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye
Figure 1. Location of Gölcük Nature Park Isparta, Türkiye and satellite view of Gölcük Lake, where Capture-Mark-Recapture studies were carried out.
Figure 4 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye
Figure 4. Annual fluctuation in population size for Gölcük population of Pelophylax bedriagae caralitanus.
Figure 3 in Assessing population size and survival rate of Pelophylax bedriagae caralitanus, in a well-protected Nature Park in Türkiye
Figure 3. The dorsal pattern of Pelophylax bedriagae caralitanus that captured in different trapping occasions. Arrows of different colours indicate matches of dorsal patterns of the same individual.
Fig. 2 in Depletion of trophy large-sized sharks populations of the Argentinean coast, south-western Atlantic: insights from fishers' knowledge
Fig. 2. Variation in abundance reported by fishermen between the beginning of their fishing activity and the last part. (a) With all reports considered and (b) with no abundance variation excluded.
Fig. 1 in Depletion of trophy large-sized sharks populations of the Argentinean coast, south-western Atlantic: insights from fishers' knowledge
Fig. 1. Location of coastal localities and distribution range of study species in the south west Atlantic. Continuous line: Notorynchus cepedianus; dotted line: Galeorhinus galeus; dashed line: Carcharhinus brachyurus and Carcharias taurus.
Fig. 2 in Pupal size distribution and sexual dimorphism in wild and laboratory populations of two species of Anastrepha (Diptera: Tephritidae) fruit flies
Fig. 2. Canonical analysis for pupae size parameters of males and females of laboratory and wild populations in Anastrepha ludens. The canonical analysis is represented on the first canonical axis (can 1), where the boxplots indicate the populations (laboratory and wild) and sexes (males and females) (lef). The variables of pupae size: length (mm), width (mm), and weight (mg) are indicated by vectors (right).
Fig. 1 in Pupal size distribution and sexual dimorphism in wild and laboratory populations of two species of Anastrepha (Diptera: Tephritidae) fruit flies
Fig. 1. Size distribution of laboratory and wild Anastrepha ludens and Anastrepha obliqua male and female pupae. The proportion of male and female pupae is shown in 10 pupal size classes (pupal diam mm) on the x-axis.
Fig. 3 in Pupal size distribution and sexual dimorphism in wild and laboratory populations of two species of Anastrepha (Diptera: Tephritidae) fruit flies
Fig. 3. Canonical analysis for pupae size parameters of males and females of laboratory and wild populations in Anastrepha obliqua. The canonical analysis is represented on the first canonical axis (can 1), where the boxplots indicate the populations (laboratory and wild) and sexes (males and females) (lef). The variables of pupae size: length (mm), width (mm), and weight (mg) are indicated by vectors (right).
Figure 2 in Sexual size dimorphism in Rana (Pelophylax) ridibunda ridibunda Pallas, 1771 from a population in Darre-Shahr Township, Ilam Province, western Iran
Figure 2. The presence of vocal pouches (a) and digital pads (b) in male Rana (Pelophylax) ridibunda ridibunda distinguishes them from females.
Figure 3 in Sexual size dimorphism in Rana (Pelophylax) ridibunda ridibunda Pallas, 1771 from a population in Darre-Shahr Township, Ilam Province, western Iran
Figure 3. Ordination of the individual males and females of Rana (Pelophylax) ridibunda ridibunda on the first two principal components. Note the relative degree of isolation between males and females, which is mainly attributed to SVL, LHL, LFL, HL, and HW in the PC1 and EEL and ELW in the PC2.
Genome streamlining: effect of mutation rate and population size on genome size reduction: simulated data
<p>Lineages data of populations simulated with Aevol (<a href="https://gitlab.inria.fr/aevol/aevol">https://gitlab.inria.fr/aevol/aevol</a>), and the Wild-Types sequences used for that.</p> <p>Conditions: change of mutation rate, population size, or both.<br>Mutational bias: none, insertion bias or deletion bias</p>
Fig. 4 in Population size, distribution and daylight behaviour of Irrawaddy dolphins (Orcaella brevirostris) in Penang Island, Malaysia
Fig. 4. Distribution of sightings based on behavioural observations recorded in west Penang throughout the period of the study.
Fig. 2 in Population size, distribution and daylight behaviour of Irrawaddy dolphins (Orcaella brevirostris) in Penang Island, Malaysia
Fig. 2. Discovery curve showing the accumulation of new individuals identified during the period of study, related to the effort in hours per month when sighting were recorded. LDF = Left dorsal fin; RDF = Right dorsal fin; OBP = regardless of side.
Fig. 3. A in Population size, distribution and daylight behaviour of Irrawaddy dolphins (Orcaella brevirostris) in Penang Island, Malaysia
Fig. 3. A, individuals with the widest range of distribution during the time of the study; B, distribution of the sightings with the tide level (m) recorded for each sighting.
Fig. 5 in Population size, distribution and daylight behaviour of Irrawaddy dolphins (Orcaella brevirostris) in Penang Island, Malaysia
Fig. 5. The pattern of movement tracked when the Irrawaddy dolphins were feeding. The actual track is that of the boat following the dolphins. Some loops have been tagged as an example of what they look like (see inset). The movement was recorded 400 m from Pantai Kerachut while following a group of dolphins outside the survey path, west Penang.
Fig. 1 in Estimating Population Size And Distribution Of Hume'S Pheasant In Northern Thailand
Fig. 1. Study area is covered by two LANDSAT 7/ETM+ images, path 131/row 46 and path 131/row 47, which were acquired in Feb.2002.
Fig. 4 in Population size, demography and diet of the Siamese crocodile, Crocodylus siamensis (Schneider, 1801) in the Mesangat Swamp in Kalimantan, Indonesia
Fig. 4. Relative dry weight of each prey category found in all 13 samples of stomach lavages from Crocodylus siamensis.
Fig. 1 in Population size, demography and diet of the Siamese crocodile, Crocodylus siamensis (Schneider, 1801) in the Mesangat Swamp in Kalimantan, Indonesia
Fig. 1. The Mesangat wetland in East Kalimantan (inset: the Mesangat position within Kalimantan). Black – Villages; Black with Red dot – Survey locations; maps modified after © OpenStreetMap).
Fig. 2 in Population size, demography and diet of the Siamese crocodile, Crocodylus siamensis (Schneider, 1801) in the Mesangat Swamp in Kalimantan, Indonesia
Fig. 2. Code for cut tail scutes on Crocodylus siamensis in Danau Mesangat (modified after Kay, 2004).
Fig. 1 in Population size and survivorship for juvenile lemon sharks (Negaprion brevirostris) on their nursery grounds at a marine protected area in Brazil
Fig. 1. Map of the Atol das Rocas Biological Reserve off Brazil, showing the sampling sites: BL = Baía da Lama (total capture (tc) = 272), 1 = Farol Pool (tc = 29), 2 = Cemitério Pool (tc = 25), 3 = Podes Crer Pool (tc = 3), 4 = Barretinha (tc = 6), 5 = Lagoon, North of Cemitério Island (tc = 5), 6 = Lagoon, South of Farol Island (tc = 7). CI = Cemitério Island, FI = Farol Island. Broken lines represent the 5 and 10 m isobaths.
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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.