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183 results for “mediterranean islands”
Figure 3 in How common is gigantism in insular fossil shrews? Examining the 'Island Rule' in soricids (Mammalia: Soricomorpha) from Mediterranean Islands using new body mass estimation models
Figure 3. Measurements of mandible, cranium, and postcranial bones. A, cranium: WOC, width of the occipital condyles. B, mandible: TRLM/1, tooth row length of lower molars. C, femur: FL, femur length; FTDp, proximal femoral transversal diameter; FAPDd, distal femoral anteroposterior diameter; FTDd, distal femoral transversal diameter. D, humerus: HL, humerus length; HAPDp, proximal humeral anteroposterior diameter; HAPDd, distal humeral anteroposterior diameter; HTDd, distal humeral transversal diameter. E, tibia: TL, tibia length; TAPDp, proximal tibia anteroposterior diameter; TTDp, proximal tibia transversal diameter; TTDd, distal tibia transversal diameter.
Figure 5 in How common is gigantism in insular fossil shrews? Examining the 'Island Rule' in soricids (Mammalia: Soricomorpha) from Mediterranean Islands using new body mass estimation models
Figure 5. Diagrams comparing the body mass (in g) of extant relatives and fossil species: A, extinct Asoriculus and Nesiotites species and the extant species of the tribe Nectogalini; B, extinct and extant Crocidura species. Lines indicate the body mass range of groups. See the legend for symbols.
Figure 5 in The last of the large-sized tortoises of the Mediterranean islands
Figure 5. Solitudo sicula sp. nov. from the latest Pleistocene of Zubbio di Cozzo San Pietro Cave, Sicily, Italy. Right ischium ZCSP US.0-Q1 in dorsomedial (A) and ventrolateral (B) views. Left pubis ZCSP US.2-Q4 in ventromedial (C) and dorsolateral (D) views. Ungual phalanx ZCSP US.0-Q3 in dorsal (E), ventral (F) and lateral (G) views. Scale bar = 10 cm.
Figure 4 in The last of the large-sized tortoises of the Mediterranean islands
Figure 4. Solitudo sicula sp. nov. from the latest Pleistocene of Zubbio di Cozzo San Pietro Cave, Sicily, Italy. Holotype ZCSP US.0-Q2, right femur, in dorsal (A), anterior (B), ventral (C), posterior (D), proximal (E) and distal (F) view. The right femur of the extant Te. marginata (the largest Mediterranean extant tortoise) is included for comparison at the same scale. Scale bar = 10 cm.
Figure 3 in The last of the large-sized tortoises of the Mediterranean islands
Figure 3. Consensus tree of the seven most parsimonious trees of 5469 steps, resulting from the cladistic analysis of extant and extinct tortoises (22 taxa scored for 177 morphological characters). The femora of the circum-Mediterranean tortoises represent three morphotypes that are independent from body size. They belong mostly to two different morphotypes (I, II) that show a phylogenetic signal within Testudininae, i.e. Testudinini vs. Geochelonini, whereas insular tortoises from the Mediterranean show a different morphotype (III). The simplified drawings are not to scale. Abbreviations: major tr.: major trochanter; minor tr.: minor trochanter.
Figure 2 in The last of the large-sized tortoises of the Mediterranean islands
Figure 2. Map of Sicily, showing the location of the cave Zubbio di Cozzo San Pietro (A). Base of the pit-hole of the cave entrance (B).
Figure 1 in The last of the large-sized tortoises of the Mediterranean islands
Figure 1. Map of the circum-Mediterranean area and northern Africa showing the distribution of extant species of tortoises (filled squares), based on the data of TTWG (2021): Te. graeca; Te. hermanni; Te. marginata; Te. kleinmanni; Centrochelys sulcata, and other large and giant tortoises from the Neogene-Quaternary either included in our analysis or mentioned in the text. Map generated in GPlates 2.2.0, using the 1 arc minute resolution topography of Amante et al. (2009).
Tape lures swell bycatch on a Mediterranean island harbouring illegal bird trapping
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Pleistocene range expansion throughout the Mediterranean and back-colonization from the Canary Islands in the legume Bituminaria bituminosa
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Data from: Species-specific responses to island connectivity cycles: refined models for testing phylogeographic concordance across a Mediterranean Pleistocene Aggregate Island complex
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Data from: Assessing the co-occurrence of European pine marten (Martes martes) with humans and domestic cats on a Mediterranean island
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Scale-dependent shifts in functional and phylogenetic structure of Mediterranean island plant communities over two centuries
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Fig. 1 in French Mediterranean islands as a refuge of relic earthworm species: Cataladrilus porquerollensis sp. nov. and Scherotheca portcrosana sp. nov. (Crassiclitellata, Lumbricidae)
Fig. 1. Detail of the clades including the species Cataladrilus porquerollensis Marchán & Decäens sp. nov. and Scherotheca portcrosana Marchán & Decäens sp. nov. obtained by Bayesian phylogenetic analysis of the concatenated sequence of molecular markers COI–16S–ND1–28S. The complete phylogenetic tree is shown in Appendix 2. Posterior probability support values are shown besides corresponding nodes.
Fig. 3 in French Mediterranean islands as a refuge of relic earthworm species: Cataladrilus porquerollensis sp. nov. and Scherotheca portcrosana sp. nov. (Crassiclitellata, Lumbricidae)
Fig. 3. External morphology of Scherotheca portcrosana Marchán & Decäens sp. nov. a. Live specimen (© T. Decaëns). b. Fixed specimen. c. Schematic drawing. Abbreviations: cl = clitellum; fp = female pore; mp = male pore; tp = tubercula pubertatis.
Fig. 2 in French Mediterranean islands as a refuge of relic earthworm species: Cataladrilus porquerollensis sp. nov. and Scherotheca portcrosana sp. nov. (Crassiclitellata, Lumbricidae)
Fig. 2. External morphology of Cataladrilus porquerollensis Marchán & Decäens sp. nov. a. Fixed specimen. b. Schematic drawing. Abbreviations: cl = clitellum; fp = female pore; mp = male pore; tp = tubercula pubertatis.
Figure 3 in Does the river blenny Salaria fluviatilis (Asso, 1801) (Actinopterygii: Perciformes) still survive on the Mediterranean island of Cyprus?
Figure 3. Principal components analysis ordination on the abiotic descriptors of 22 Mediterranean islands, including the 10 islands where Salaria fluviatilis is present (P) with black dots. The axes refer to island areal size and distance to mainland; and the numbers refer to the island numbers as in Table 2.
Figure 2 in Does the river blenny Salaria fluviatilis (Asso, 1801) (Actinopterygii: Perciformes) still survive on the Mediterranean island of Cyprus?
Figure 2. Recent photograph of adult male S. fluviatilis specimen deposited in 1909 from Cyprus. Natural History Museum, London, UK.
FIGURE 12 in Bryozoa from detritic bottoms in the Menorca Channel (Balearic Islands, western Mediterranean), with notes on the genus Cribellopora
FIGURE 12. Ovicellate zooids of Coronellina fagei (MNCN–25.03/3822).
FIGURES 10, 11 in Bryozoa from detritic bottoms in the Menorca Channel (Balearic Islands, western Mediterranean), with notes on the genus Cribellopora
FIGURES 10, 11. Coronellina fagei (MNCN–25.03/3822). 10, view of the colony; 11, autozooids.
FIGURE 1 in Bryozoa from detritic bottoms in the Menorca Channel (Balearic Islands, western Mediterranean), with notes on the genus Cribellopora
FIGURE 1. Distribution map of sample stations.
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Allen Brain Atlas
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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.