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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).

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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).

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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.

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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).

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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.

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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).

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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).

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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.

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Figure 3 in Re-descriptions of Amblyseius decolor (Westerboer) and Proprioseiopsis sororculus (Wainstein) (Acari: Phytoseiidae) based on the specimens collected in Turkey and France

Figure 3 Proprioseiopsis sororculus(Wainstein)-Turkey, female: A – Dorsal view; B – Ventral view; C – Spermathecae; D – Chelicera; E – Genu, tibia and basitarsus IV.

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Figure 2 in Re-descriptions of Amblyseius decolor (Westerboer) and Proprioseiopsis sororculus (Wainstein) (Acari: Phytoseiidae) based on the specimens collected in Turkey and France

Figure 2 Amblyseius decolor(Westerboer)-France female: A – Dorsal view; B – Ventral view; C – Spermathecae; D – Chelicera; E – Genu, tibia and basitarsus IV.

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Figure 1 in Re-descriptions of Amblyseius decolor (Westerboer) and Proprioseiopsis sororculus (Wainstein) (Acari: Phytoseiidae) based on the specimens collected in Turkey and France

Figure 1 Amblyseius decolor(Westerboer)-Turkey, female: A – Dorsal view; B – Ventral view; C – Spermathecae; D – Chelicera; E – Genu, tibia and basitarsus IV.

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Fig. 11 in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 11. Dorsal fins of A, Thrissina tuberculosa (BPBM 20277, 86.6 mm SL, Mauritius; triangles indicate several distinct dark spots scattered on anterior part), B, T. baelama (BMNH 1963.12.9.1–19, 102.4 mm SL, Djibouti), C, T. evermanni [BPBM 41796, 87.3 mm SL, Tonga (left-right inverted)], D, T. polynemoides (BMNH 1966.11.16.985–992, 89.5 mm SL, Mombasa, Kenya), and E, T. samam (BMNH 1971.2.8.50–58, 75.3 mm SL, New Britain, Papua New Guinea).

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Fig. 10 in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 10. Neotype of Clupea tuberculosa, BPBM 41797, 90.9 mm SL, Black River District, Mauritius (also neotype of Engraulis nesogallicus): A, fresh condition (courtesy of Bishop Museum); B, preserved condition.

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Fig. 8. A in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 8. A, Holotype of Engraulis polynemoides (BMNH 1979.7.5.26, 93.3 mm SL, Madagascar), and B, non-type specimen of T. polynemoides (BMNH 1966.11.16.985–992, 94.0 mm SL, Mombasa, Kenya).

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Fig. 9. A in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 9. A, Neotype of Engraulis samam (BMNH 1971.2.8.49, 79.6 mm SL, New Britain, Papua New Guinea), and B, non-type specimen of Thrissina samam (fresh condition) (NSMT-P 145681, 87.4 mm SL, Sulawesi, Indonesia).

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Fig. 7 in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 7. Morphometrics of Thrissina baelama (blue triangles ▲), T. evermanni (yellow squares ■), T. polynemoides (green diamonds ◆), T. samam (red circles ●), and T. tuberculosa (pink stars) (all vs. standard length; SL). A, Ratio of caudal-peduncle depth to SL; B, pre-dorsal-fin length to SL; C, snout length to SL, D, body depth to SL; E, pre-anal-fin length to SL; F, dorsal-fin base length to SL; G, distance from pelvic-fin insertion to anal-fin origin to SL; H, pectoral-fin length to SL; I, pelvic-fin length to SL; J, maxilla length to SL; K, lower-jaw length to SL; L, caudal-peduncle length to SL.

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Fig. 6 in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 6. Relationships of total gill-raker numbers (TGR) on A, first gill arch (1GA), B, second gill arch (2GA), C, third gill arch (3GA), and D, fourth gill arch (4GA) to standard length in Thrissina baelama (blue triangles ▲), T. evermanni (yellow squares ■), T. polynemoides (green diamonds ◆), T. samam (red circles ●), and T. tuberculosa (pink stars).

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Fig. 1. A–D in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 1. A–D, Diagnostic characters of species previously identified as Thrissina baelama [A, lateral view of whole body, B, head (yellow line indicates posterior part of maxilla; blue line and broken lines indicate anterior and posterior margins of preopercle, respectively), C, first and second supramaxillae (left-right inverted), D, ventral view of isthmus (no scutes located anterior to pectoral fins)] and E, ventral view of isthmus of Thrissina encrasicholoides (scutes located anterior to pectoral fins) (A: fresh condition, 72.9 mm SL, Sulawesi, Indonesia; B–D: T. samam, NSMT-P 144842, 58.4 mm SL, Ryukyu Archipelago, Japan; E: T. encrasicholoides, NSMT-P 50306, 69.8 mm SL, Philippines) (B–E, alizarin stain).

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Fig. 3. A in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 3. A, Neotype of Clupea baelama, BMNH 1963.12.9.27, 69.5 mm SL, Red Sea near Port Sudan, Sudan, and B, non-type specimen of Thrissina baelama (fresh condition) (BPBM 27411, 83.4 mm SL, Port Sudan, Sudan; courtesy of Bishop Museum).

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Fig. 5. A in Resurrection of nominal species previously regarded as junior synonyms of Thrissina baelama (Fabricius, 1775) and their re-descriptions (Teleostei: Clupeiformes: Engraulidae)

Fig. 5. A, Holotype of Anchovia evermanni, USNM 51719, 105.0 mm, and B, paratype of Anchovia evermanni, USNM 451580, 98.3 mm SL, Apia, Samoa.

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Allen Brain Atlas

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allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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Last verified 2026-04-30Open record

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record