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52 results for “Erinaceus”

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Figure 2 in A new species in the Ophiocoma erinaceus complex from the South-west Pacific Ocean (Echinodermata: Ophiuroidea: Ophiocomidae)

Figure 2. Dental plates of Ophiocoma erinaceus (MV F109808, 22 mm d.d.): a, external surface. d, internal, Ophiocoma schoenleinii (MV F109813, 21 mm d.d.); b, external; e, internal. Ophiocoma cynthiae sp. nov. (MV F91535, paratype 22 mm d.d.): c, external; f, internal.

opencc-by-4.0Dec 2008View details →
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Figure 1 in A new species in the Ophiocoma erinaceus complex from the South-west Pacific Ocean (Echinodermata: Ophiuroidea: Ophiocomidae)

Figure 1. Ophiocoma cynthiae sp. nov. holotype (22 mm d.d.): a, dorsal surface of the whole animal; b, ventral surface; c, detail of oral frame; d, detail of the dorsal disc and arm surfaces.

opencc-by-4.0Dec 2008View details →
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Fig. 1 in Short communication An evidence of asp viper (Vipera aspis) consumption by a western European hedgehog (Erinaceus europaeus) on Elba Island (Italy)

Fig. 1 - Map of Italy. The red arrow points to the Elba Island. / Mappa d'Italia. La freccia rossa indica l'Isola d'Elba. (Google Earth. Data SIO, NOAA, U.S. Navy, NGA, GEBCO. Image Landsat / Copernicus).

opencc-by-4.0Oct 2022View details →
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Fig. 2 - A in Short communication An evidence of asp viper (Vipera aspis) consumption by a western European hedgehog (Erinaceus europaeus) on Elba Island (Italy)

Fig. 2 - A hedgehog consuming an asp viper on Elba. / Un riccio che consuma un aspide all'Elba. (Photo/foto: Walter Costa).

opencc-by-4.0Oct 2022View details →
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Fig. 2 in The western European hedgehog Erinaceus europaeus L. 1758 on San Pietro Island (southern Sardinia, Italy) and an updated review of its presence on the Italian small islands

Fig. 2 - The small Italian islands with evidence of western European hedgehog presence. Thick-bordered circles: probable occurrence of stable populations; thin-bordered circles: only occasional presence of individuals (low probability of short-term persistence). See Tab. 2 for details. / Evidenze di presenza di riccio europeo occidentale nelle piccole isole italiane. Cerchi con bordo spesso: probabile presenza di popolazioni stabili; cerchi con bordo sottile: probabile presenza di singoli individui (bassa probabilità di persistenza a breve termine). Vedasi Tab. 2 per dettagli. 1) Elba; 2) Capraia; 3) Pianosa; 4) Alicudi; 5) Salina; 6) Favignana; 7) Ustica; 8) Procida; 9) Vivara; 10) Capraia; 11) La Maddalena; 12) Asinara; 13) San Pietro.

opencc-by-4.0Oct 2022View details →
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Fig. 1 in The western European hedgehog Erinaceus europaeus L. 1758 on San Pietro Island (southern Sardinia, Italy) and an updated review of its presence on the Italian small islands

Fig. 1 - The study area (San Pietro Island, Sulcis archipelago; South Sardinia) with the evidence of presence of western European hedgehog. Black circles: direct observations; grey circles: indirect data. See Table 1 for details and numbers. / L'area di studio (Isola di San Pietro, arcipelago del Sulcis; Sardegna meridionale) con i siti di presenza del riccio europeo occidentale. Cerchi neri: osservazione dirette; cerchi grigi: dati indiretti. Vedere Tabella 1 per dettagli e numerazione.

opencc-by-4.0Oct 2022View details →
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Fig. 2 in Infestation of the road-killed Eastern European hedgehogs (Erinaceus roumanicus) with Ixodidae ticks in some parts of Upper Thracian Plain (Bulgaria)

Fig. 2. Ixodidae ticks found parasitizing on road-killed Eastern European hedgehogs: (A) male Rh. bursa; (B) engorged female Rh. sanguineus (left) and male Rh. turanicus (right); (C) male H. marginatus; (D) engorged female I. ricinus.

opencc-by-4.0Dec 2022View details →
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Fig. 1 in Infestation of the road-killed Eastern European hedgehogs (Erinaceus roumanicus) with Ixodidae ticks in some parts of Upper Thracian Plain (Bulgaria)

Fig. 1. Location of the field study area (1- part of national road II-66; 2- part of national road I-8; 3- national road Karlovo - Plovdiv).

opencc-by-4.0Dec 2022View details →
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Figure 6 in Discrimination of the sister hedgehog species Erinaceus concolor and E. roumanicus (Erinaceomorpha: Mammalia): a geometric morphometric approach

Figure 6. Multivariate regression analysis of shape variables vs centroid size of the dorsal cranium (closed circle: E. concolor, n = 39; open circle: E. roumanicus, n = 10).

opencc-by-4.0Mar 2022View details →
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Figure 4 in Discrimination of the sister hedgehog species Erinaceus concolor and E. roumanicus (Erinaceomorpha: Mammalia): a geometric morphometric approach

Figure 4. PCA scatter plot graphics showing the variations in the mandible (closed circle: E. concolor, n = 54; open circle: E. roumanicus, n = 14) with warped outline drawings describing shape changes along the PC1 axis for each species.

opencc-by-4.0Mar 2022View details →
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Figure 5 in Discrimination of the sister hedgehog species Erinaceus concolor and E. roumanicus (Erinaceomorpha: Mammalia): a geometric morphometric approach

Figure 5. Histograms of the crossvalidation results. a. Dorsal surface of crania, b. Right side of mandible. Red bars: E. concolor; blue bars: E. roumanicus.

opencc-by-4.0Mar 2022View details →
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Fig. 2 in An investigation of endoparasites and the determinants of parasite infection in European hedgehogs (Erinaceus europaeus) from Denmark

Fig. 2. Overall parasite prevalence by age. Numbers on the x-axis indicate age in years. Numbers on top of the columns indicate number of individuals, in red for hedgehogs with endoparasites, in blue for hedgehogs without endoparasites. Statistically significant differences in proportions of hedgehogs with endoparasites versus without hedgehogs, were found between juveniles (<1 year) and age classes 1–6 years, and between hedgehogs of one year versus two years of age as shown in the upper right corner of the figure. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Dec 2021View details →
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Fig. 4 in An investigation of endoparasites and the determinants of parasite infection in European hedgehogs (Erinaceus europaeus) from Denmark

Fig. 4. Overall parasite prevalence by region. Numbers indicate number of individuals, in red for hedgehogs with parasites, in blue without. JNL denotes Jutland north of the Limfjord, and JSL abbreviates Jutland south of the Limfjord. Statistically significant differences in proportions of hedgehogs with endoparasites versus hedgehogs without endoparasites were found between Zealand and Jutland south of the Limfjord (JSL), and Zealand and Falster (p <0.05 in both cases). We removed seven individuals from the analyses (Jutland north of the Limfjord (n = 1), Jutland south of the Limfjord (n = 4), Lolland (n = 1), Bornholm (n = 1)), as they were the only individuals found in April and December, and four were only categorised as collected in "Summer 2016". (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Dec 2021View details →
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Fig. 1. A in An investigation of endoparasites and the determinants of parasite infection in European hedgehogs (Erinaceus europaeus) from Denmark

Fig. 1. A map representing Denmark and the geographical locations of the 299 dead European hedgehogs examined. Colours indicate the different species of endoparasites detected in each individual. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Dec 2021View details →
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FIG. 14. — A in Quaternary and Recent shells of Ocenebra erinaceus (Linnaeus, 1758) and O. brevirobusta Houart, 2000 (Mollusca, Muricidae, Ocenebrinae): reflections on the intra- and interspecific variations

FIG. 14. — A, the two first axes of a PCA performed on the harmonics of Fourier for the ventral view; B, the same for the apical view; C, D, location of the the populations means in the canonical space corresponding to the amplitudes of the harmonics of Fourier for the apical view; C, the two first canonical axes CA1 versus CA2; D, canonical axes CA1 versus CA3; green triangle, Moroccan Atlantic; yellow triangle, Cap Rhir; green square, Oualidia (O. brevirobusta). Red group, Mediterranean forms (Ocenebra erinaceus (Linnaeus, 1758)); blue group, North Atlantic forms (O. erinaceus); green group, Moroccan Atlantic forms (O. brevirobusta Houart, 2000), black square (Ocinebrellus inornatus (Récluz, 1851)). Abbreviations: P, Pleistocene; Pl, Pliocene.

opencc-zeroDec 2004View details →
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FIG. 15. — A in Quaternary and Recent shells of Ocenebra erinaceus (Linnaeus, 1758) and O. brevirobusta Houart, 2000 (Mollusca, Muricidae, Ocenebrinae): reflections on the intra- and interspecific variations

FIG. 15. — A, average Fourier power spectrum for the apical view, 99.95% of the power is described by the first nine harmonics, represented by the arrow; B, same for the ventral view, 99.95% of the power is described by the first 12 harmonics, represented by the arrow.

opencc-zeroDec 2004View details →
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FIG. 11 in Quaternary and Recent shells of Ocenebra erinaceus (Linnaeus, 1758) and O. brevirobusta Houart, 2000 (Mollusca, Muricidae, Ocenebrinae): reflections on the intra- and interspecific variations

FIG. 11. — Majority rule consensus tree obtained by the comput- er program Winclada99 (Lenght: 100, CI: 0.48, RI: 0.67). Abbreviations: H, Holocene; Md, Middle Age; P, Pleistocene; Pl, Pliocene; R, Recent; s.f., subfossil; O., Ocenebra.

opencc-zeroDec 2004View details →
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FIG. 10 in Quaternary and Recent shells of Ocenebra erinaceus (Linnaeus, 1758) and O. brevirobusta Houart, 2000 (Mollusca, Muricidae, Ocenebrinae): reflections on the intra- and interspecific variations

FIG. 10. — Strict consensus tree obtained by the computer programs Hennig86 (Lenght: 96, CI: 0.38, RI: 0.50) and Winclada99 (Lenght: 96, CI: 0.38, RI: 0.49). Abbreviations: Cl. 1-Cl. 6, number of the clades; in bold, the characters and in parenthesis, the character states; H, Holocene; Md, Middle Age; P, Pleistocene; Pl, Pliocene; R, Recent; s.f., subfossil; O., Ocenebra.

opencc-zeroDec 2004View details →
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FIG. 8 in Quaternary and Recent shells of Ocenebra erinaceus (Linnaeus, 1758) and O. brevirobusta Houart, 2000 (Mollusca, Muricidae, Ocenebrinae): reflections on the intra- and interspecific variations

FIG. 8. — Spiral sculpture of recent Ocenebra erinaceus (Linnaeus, 1758) and O. brevirobusta Houart, 2000 (apertural view); A, B, O. erinaceus (Malaga, Mediterranean Sea, Spain) (MNHN, domaine de collection Botanique et Zoologie); C, D, O. brevirobusta (Casablanca, Atlantic, Morocco) (MNHN R11448 et R11449; Lecointre coll.). Abbreviations: see p. 267. Scale bars: A, C, 1 mm; B, D, 5 mm.

opencc-zeroDec 2004View details →
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FIG. 9 in Quaternary and Recent shells of Ocenebra erinaceus (Linnaeus, 1758) and O. brevirobusta Houart, 2000 (Mollusca, Muricidae, Ocenebrinae): reflections on the intra- and interspecific variations

FIG. 9. — Spiral sculpture of Ocenebra erinaceus (Linnaeus, 1758) (apertural view); A, specimen from Asti (Pliocene, Italy) (MNHN R11447; Vibray coll.); B, specimen from Aigues-Mortes (Recent, Mediterranean Sea, France) (MNHN R63993; Merle coll.); C, specimen from Saint-Brieuc (English Channel, France) (MNHN R11445; Lhomme coll.); D, specimen from Oléron Island (Atlantic, France) (MNHN R11446; Lacour coll.). Abbreviations: see p. 267. Scale bar: 5 mm.

opencc-zeroDec 2004View details →

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