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183 results for “Eulipotyphla”
Text-fig. 10. Allosorex stenodus FEJFAR, 1966 – fragmented right humerus (Z 28220 – OF 6523), Ivanovce; a – anterior view, b – posterior view. in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 10. Allosorex stenodus FEJFAR, 1966 – fragmented right humerus (Z 28220 – OF 6523), Ivanovce; a – anterior view, b – posterior view.
Text-fig. 9. Allosorex stenodus FEJFAR, 1966 – mandibles, Ivanovce, fissure 6523. a–d: incomplete toothless right mandible with alveoli of m1 to m3 (Z 28210 – OF 652358; a – buccal view, b – dorsal view, c – lingual view, d – posterior view on the condylar facet), e: condylar facet of right mandible fragment (Z 28511 – OF 652357; posterior view), f–g: incomplete left mandible with m1 (Z 28215 – OF 652366; f – lingual view, g – dorsal view), h: left mandible with the incisor, m1 amd m3 (Z 28213 – OF 6523; lingual view). in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 9. Allosorex stenodus FEJFAR, 1966 – mandibles, Ivanovce, fissure 6523. a–d: incomplete toothless right mandible with alveoli of m1 to m3 (Z 28210 – OF 652358; a – buccal view, b – dorsal view, c – lingual view, d – posterior view on the condylar facet), e: condylar facet of right mandible fragment (Z 28511 – OF 652357; posterior view), f–g: incomplete left mandible with m1 (Z 28215 – OF 652366; f – lingual view, g – dorsal view), h: left mandible with the incisor, m1 amd m3 (Z 28213 – OF 6523; lingual view).
Text-fig. 6. Allosorex stenodus FEJFAR, 1966 – lower molars, Ivanovce, fissure 6523. a–d: m1 dext. (Z 28203 – OF 652364; a – buccal view, b – lingual view, c – occlusal view, d – distal view), e–h, o: lost m1 sin. (OF 652367; e – distal view, f, o – occlusal view, g – lingual view, h – buccal view), i–j, v: m2 dext. (Z 28206 – OF 6523; i – buccal view, j – lingual view, v – occlusal view), k–l: m1 dext. (Z 28204 – OF 6523; k – occlusal view, l – lingual view), m–n: m1 dext. (Z 28205 – OF 6523; m – occlusal view, n – buccal view), p–r: m1 sin. (Z 28213 – OF 6523; p –lingual view, q – occlusal view, r – buccal view), s–u: m1 sin. (Z 28215 – OF 652366; s – buccal view, t – lingual view, u – buccal view), w–x: m3 sin. (Z 28213 – OF 6523; w – occlusal view, x – lingual view). in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 6. Allosorex stenodus FEJFAR, 1966 – lower molars, Ivanovce, fissure 6523. a–d: m1 dext. (Z 28203 – OF 652364; a – buccal view, b – lingual view, c – occlusal view, d – distal view), e–h, o: lost m1 sin. (OF 652367; e – distal view, f, o – occlusal view, g – lingual view, h – buccal view), i–j, v: m2 dext. (Z 28206 – OF 6523; i – buccal view, j – lingual view, v – occlusal view), k–l: m1 dext. (Z 28204 – OF 6523; k – occlusal view, l – lingual view), m–n: m1 dext. (Z 28205 – OF 6523; m – occlusal view, n – buccal view), p–r: m1 sin. (Z 28213 – OF 6523; p –lingual view, q – occlusal view, r – buccal view), s–u: m1 sin. (Z 28215 – OF 652366; s – buccal view, t – lingual view, u – buccal view), w–x: m3 sin. (Z 28213 – OF 6523; w – occlusal view, x – lingual view).
Text-fig. 5. Allosorex stenodus FEJFAR, 1966 – fragment of left P4 and left M3, Ivanovce, fissure 6523. a–d: P4 sin. (Z 28201 – OF 6523; a, c – lingual view, b, d – occlusal view, a–b – hypothetical reconstruction of the premolar), e–f: M3 sin. (Z 28202 – OF 6523; occlusal view). in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 5. Allosorex stenodus FEJFAR, 1966 – fragment of left P4 and left M3, Ivanovce, fissure 6523. a–d: P4 sin. (Z 28201 – OF 6523; a, c – lingual view, b, d – occlusal view, a–b – hypothetical reconstruction of the premolar), e–f: M3 sin. (Z 28202 – OF 6523; occlusal view).
Text-fig. 7. Enamel microstructure in the molars of (a) Allosorex stenodus (KOE-4196 / Z 28207 – OF 6512) and (b) Blarina brevicauda (KOE-1435). SEM photos showing transverse sections of the paralophid in a lower molar. The schmelzmuster of Allosorex is one-layered and formed exclusively from radial enamel (RE), whereas the schmelzmuster of Blarina is two-layered, with an inner enamel of laterally inclined radial enamel with distinct interrow sheets (REIS). The radial enamel of the outer layer is heavily pigmented and therefore poorly etched. The pigmentation does not affect the schmelzmuster. in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 7. Enamel microstructure in the molars of (a) Allosorex stenodus (KOE-4196 / Z 28207 – OF 6512) and (b) Blarina brevicauda (KOE-1435). SEM photos showing transverse sections of the paralophid in a lower molar. The schmelzmuster of Allosorex is one-layered and formed exclusively from radial enamel (RE), whereas the schmelzmuster of Blarina is two-layered, with an inner enamel of laterally inclined radial enamel with distinct interrow sheets (REIS). The radial enamel of the outer layer is heavily pigmented and therefore poorly etched. The pigmentation does not affect the schmelzmuster.
Text-fig. 8. The limited differentiation the schmelzmuster in Allosorex (Allosoricinae) indicates its phylogenetic position in Soricomorpha. The numbers to the right refer to the different types of schmelzmuster found in Soricidae: 1 – Soricella-schmelzmuster, 2 – Anourosorex- schmelzmuster, 3 – Crocidura-schmelzmuster, 4 – Notiosorex-schmelzmuster, 5 – Sorex-schmelzmuster, and 6 – Blarina-schmelzmuster (ex Koenigswald and Reumer 2020). in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 8. The limited differentiation the schmelzmuster in Allosorex (Allosoricinae) indicates its phylogenetic position in Soricomorpha. The numbers to the right refer to the different types of schmelzmuster found in Soricidae: 1 – Soricella-schmelzmuster, 2 – Anourosorex- schmelzmuster, 3 – Crocidura-schmelzmuster, 4 – Notiosorex-schmelzmuster, 5 – Sorex-schmelzmuster, and 6 – Blarina-schmelzmuster (ex Koenigswald and Reumer 2020).
Text-fig. 3. Allosorex stenodus FEJFAR, 1966 – paratype (Z 28209 – OF 652356), Ivanovce, fissure 6523. a–c: recontruction of the mandible with antemolar, m1 and m2 (a – buccal view, b – occlusal view, c – lingual view), d: condylar facets (posterior view), e: paratype mandible without the antemolar (SEM buccal view), f–h: lost antemolar (f – occlusal view, g – buccal view, h – anterior view), i–k: detail view on the antemolar and molars (i – buccal view, j – occlusal view, k – lingual view), l: detail SEM buccal view on m1 and m2. in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 3. Allosorex stenodus FEJFAR, 1966 – paratype (Z 28209 – OF 652356), Ivanovce, fissure 6523. a–c: recontruction of the mandible with antemolar, m1 and m2 (a – buccal view, b – occlusal view, c – lingual view), d: condylar facets (posterior view), e: paratype mandible without the antemolar (SEM buccal view), f–h: lost antemolar (f – occlusal view, g – buccal view, h – anterior view), i–k: detail view on the antemolar and molars (i – buccal view, j – occlusal view, k – lingual view), l: detail SEM buccal view on m1 and m2.
Text-fig. 2. Allosorex stenodus FEJFAR, 1966 – holotype (Z 28208 – OF 651273), Ivanovce, fissure 6512. a–c: recontruction of the mandible with incisor (a – buccal view, b – occlusal view, c – lingual view), d–e: condylar facets (d – posterior view, e – ventral view), f: holotype lower incisor (SEM lingual view), g: holotype mandible (SEM lingual view). in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 2. Allosorex stenodus FEJFAR, 1966 – holotype (Z 28208 – OF 651273), Ivanovce, fissure 6512. a–c: recontruction of the mandible with incisor (a – buccal view, b – occlusal view, c – lingual view), d–e: condylar facets (d – posterior view, e – ventral view), f: holotype lower incisor (SEM lingual view), g: holotype mandible (SEM lingual view).
Text-fig. 4. Allosorex stenodus FEJFAR, 1966 – upper and lower incisors, Ivanovce, fissure 6523. a–g: upper left incisor (Z 28193 – OF 652360; a, f – buccal view, b, g – lingual view, c – anterior view, d – dorsal view, e – ventral view), h–i: upper right incisor (Z 28192 – OF 6523; h – buccal view, i – lingual view), j–m: lower right incisor (Z 28197 – OF 652363; j, m – buccal view, k – lingual view, l – dorsal view), n–o: lower right incisor (Z 28196 – OF 652362; n – lingual view, o – crown cross-section), p–q: lower right incisor (Z 28195 – OF 652361; p – lingual view, l – crown cross-section), r: lower left incisor (Z 28199 – OF 6523; lingual view). in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 4. Allosorex stenodus FEJFAR, 1966 – upper and lower incisors, Ivanovce, fissure 6523. a–g: upper left incisor (Z 28193 – OF 652360; a, f – buccal view, b, g – lingual view, c – anterior view, d – dorsal view, e – ventral view), h–i: upper right incisor (Z 28192 – OF 6523; h – buccal view, i – lingual view), j–m: lower right incisor (Z 28197 – OF 652363; j, m – buccal view, k – lingual view, l – dorsal view), n–o: lower right incisor (Z 28196 – OF 652362; n – lingual view, o – crown cross-section), p–q: lower right incisor (Z 28195 – OF 652361; p – lingual view, l – crown cross-section), r: lower left incisor (Z 28199 – OF 6523; lingual view).
Text-fig. 1. Location of Ivanovce Pliocene primate site in Slovakia within the wider area of the Carpathians-Pannonian Basin (white circle). The northern wall of the former limestone quarry at Ivanovce near Trenčín in western Slovakia. Several karst fillings provided a rich early Pliocene vertebrate assemblage. a: schematic sketch of the site showing the location of different karst fillings, b: photo of the same site during the palaeontological research in 1960s. in Allosorex Stenodus Fejfar, 1966 (Eulipotyphla, Soricidae): Re-Description Of Type Material And Re-Interpretation Of Its Fossil Record
Text-fig. 1. Location of Ivanovce Pliocene primate site in Slovakia within the wider area of the Carpathians-Pannonian Basin (white circle). The northern wall of the former limestone quarry at Ivanovce near Trenčín in western Slovakia. Several karst fillings provided a rich early Pliocene vertebrate assemblage. a: schematic sketch of the site showing the location of different karst fillings, b: photo of the same site during the palaeontological research in 1960s.
The Late Miocene Plesiosoricidae and Soricidae (Eulipotyphla, Mammalia) from the Pannonian region, Slovakia
<p>Soricidae is the most species-rich eulipotyphlan family since the Pliocene. Numerous Late Miocene soricids and plesiosoricids are well-known from southern Europe. Localities from central Europe, despite being rare, have historically yielded better-preserved material that reveals a great diversity. We here add to this existing record with the description of eight species from MN9-MN12-aged localities of Slovakia (<em>Paenelimnoecus repenningi</em>, <em>Paenesorex bicuspis</em>, <em>Isterlestes aenigmaticus </em>nov. gen. nov. sp., <em>Crusafontina endemica</em>, <em>Crusafontina kormosi</em>, <em>Amblycoptus jessiae</em>,<em> Asoriculus gibberodon</em>, <em>Petenyia dubia</em>), alongside one species of Plesiosoricidae (<em>Plesiosorex evolutus</em>). The early occurrence of <em>A. gibberodon</em> and <em>A.</em> <em>jessiae</em>, the occurrence of <em>Paenesorex, </em>and the identification of <em>Isterlestes aenigmaticus </em>nov. gen. nov. sp. reinforce the hypothesis that the Pannonian region (south-eastern central Europe) was a source area for several soricid taxa (Allosoricinae, Anourosoricini, Soricini) during the Late Miocene.</p>
Figure 4. Sorex volnuchini G in Cytogenetic characteristic of the Caucasian pygmy shrew (Sorex volnuchini) and Levant mole (Talpa levantis) (Mammalia: Eulipotyphla) in northern Anatolia, Turkey
Figure 4. Sorex volnuchini G-bands (female).
Figure 3. Male C in Cytogenetic characteristic of the Caucasian pygmy shrew (Sorex volnuchini) and Levant mole (Talpa levantis) (Mammalia: Eulipotyphla) in northern Anatolia, Turkey
Figure 3. Male C-banded karyotype of Talpa levantis (male) from North Anatolia.
Figure 2. Sorex volnuchini C in Cytogenetic characteristic of the Caucasian pygmy shrew (Sorex volnuchini) and Levant mole (Talpa levantis) (Mammalia: Eulipotyphla) in northern Anatolia, Turkey
Figure 2. Sorex volnuchini C-bands (female), negative C-bands (–/–), heteromorphic C bands (–/+).
Figure 1 in Cytogenetic characteristic of the Caucasian pygmy shrew (Sorex volnuchini) and Levant mole (Talpa levantis) (Mammalia: Eulipotyphla) in northern Anatolia, Turkey
Figure 1. Sorex volnuchini standard karyotype (male).
FIGURE 9 in New species of Deinogalerix (Mammalia, Eulipotyphla) from the late Miocene of Scontrone (Abruzzo, central Italy)
FIGURE 9. Left mandible (SCT 243), Deinogalerix sp. 1, lateral view; 2, dorsal view.
FIGURE 1 in New species of Deinogalerix (Mammalia, Eulipotyphla) from the late Miocene of Scontrone (Abruzzo, central Italy)
FIGURE 1. Location map of Scontrone and Gargano. From Mazza (2013a), modified.
The Late Miocene Plesiosoricidae and Soricidae (Eulipotyphla, Mammalia) from the Pannonian region, Slovakia
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FIGURE 1 in New records of ectoparasites for Mexico and their prevalence in the montane shrew Sorex monticolus (Eulipotyphla: Soricidae) at Cerro del Mohinora, Sierra Madre Occidental of Chihuahua, Mexico
FIGURE 1. Sampling localities in the Flora and Fauna Protection Area (Área de Protección de Flora y Fauna—ÁPFF) Cerro del Mohinora, Guadalupe y Calvo, Chihuahua, Mexico.
Supplementary material 3 from: Ren X, Xu Y, Li Y, Yao H, Fang Y, Khanal L, Cheng L, Zeng W, Jiang X, Chen Z (2023) A new species of shrew moles, genus Uropsilus Milne-Edwards, 1871 (Mammalia, Eulipotyphla, Talpidae), from the Wuyi Mountains, Jiangxi Province, eastern China. ZooKeys 1186: 25-46. https://doi.org/10.3897/zookeys.1186.111592
Partitioning schemes and molecular evolution model used in mitochondrial–nuclear concatenated gene tree estimations
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