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FIG. 3 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 3. — Morphology of the P1 element of Lochriea Scott, 1942 and the terms for the orientation of the elements (Purnell et al. 2000).
FIG. 6 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 6. — Morphological schemes of sinistral (A-D) and dextral (E-G) P1 elements of Lochriea monocarinata n. sp. and scheme of probable occlusion of sinistral (red) and dextral (green) elements (H). The line drawings are based on the SEM microphotographs (see Fig. 5). D, holotype, specimen 445/12. Abbreviations: d, dextral; s, sinistral.
FIG. 1 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 1. — Location of the studied sections (*): A, general geographical position of the studied area; B, location of the sections: 1, Kamenka section; 2, Izyayu section; 3, Kozhim section; 4, Bolshaya Nadota section.
FIG. 2 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 2. — Correlation of the key sections of the uppermost Viséan-Serpukhovian interval in the North Urals and Cis-Urals (Vevel et al. 2018; Zhuravlev et al. 2023). Abbreviations: m, mudstone; w, wackestones; p, packstone; g, grainstone; f, floatstone; FOD, first occurrence datum; G., Gnathodus Pander, 1856; L., Lochriea Scott, 1942. The stars mark occurrences of Lochriea monocarinata n. sp.
FIG. 5 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 5. — Some advanced Lochriea from the Serpukhovian (Lochriea ziegleri Zone) of North of Urals and Cis-Urals region: A, Lochriea ziegleri Nemirovskaya, Perret-Mirouse, Meischner, 1994, specimen 145/24, sample Iz4-51/98, Izyayu section; B, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/19, sample K99-21/22, Kamenka section; C, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994, specimen 145/22, sample 125-19/22, Kamenka section; D, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/20, sample K99-21/22, Kamenka section; E, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994-Lochriea cruciformis (Clarke, 1960) transition, specimen 145/23, sample Iz4-52/98, Izyayu section; F, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994 – Lochriea cruciformis (Clarke, 1960) transition, specimen 145/27, sample Iz4-53/98, Izyayu section; G, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/15, sample N2-1-11/99, Bolshaya Nadota section; H, Lochriea sp., specimen 145/12,
Fig 10 in Correction: Integrated Taxonomy Reveals Hidden Diversity in Northern Australian Fishes: A New Species of Seamoth (Genus Pegasus)
Fig 10. Molecular species identification of Pegasus species using Genetic treeML trees. (A) sequences from the 16S gene; (B) sequences from the COI gene. Trees are based on the K2 evolutionary distance model and are shown here with mined Pegasus and Eurypegasus sequences from GenBank. The trees are shown here with an E. draconis outgroup. Bootstrap support values (following 1000 replicates) are shown above the nodes. https://doi.org/10.1371/journal.pone.0251680.g001
FIG. 5 in A new species, Lochriea monocarinata n. sp., and its position in the morphospace of the genus Lochriea Scott, 1942 (Conodonta, Mississippian)
FIG. 5. — Some advanced Lochriea from the Serpukhovian (Lochriea ziegleri Zone) of North of Urals and Cis-Urals region: A, Lochriea ziegleri Nemirovskaya, Perret-Mirouse, Meischner, 1994, specimen 145/24, sample Iz4-51/98, Izyayu section; B, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/19, sample K99-21/22, Kamenka section; C, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994, specimen 145/22, sample 125-19/22, Kamenka section; D, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/20, sample K99-21/22, Kamenka section; E, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994-Lochriea cruciformis (Clarke, 1960) transition, specimen 145/23, sample Iz4-52/98, Izyayu section; F, Lochriea senckenbergica Nemirovskaya, Perret & Meischner, 1994 – Lochriea cruciformis (Clarke, 1960) transition, specimen 145/27, sample Iz4-53/98, Izyayu section; G, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/15, sample N2-1-11/99, Bolshaya Nadota section; H, Lochriea sp., specimen 145/12 sample N2-1-7/99, Bolshaya Nadota section; I, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/18, sample K99-21/22, Kamenka section; J, Lochriea monocarinata n. sp.-Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994 transition, specimen 145/14, sample N2-1-10/99, Bolshaya Nadota section; K, Lochriea monocostata (Pazukhin & Nemirovskaya in Kulagina et al., 1992), specimen 145/4, sample Iz4-53/98, Izyayu section; L, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/8, sample Iz4-52/98, Izyayu section; M, Lochriea ziegleri Nemirovskaya, Perret & Meischner, 1994, specimen 145/21, sample K99-21/22, Kamenka section; N, Lochriea monocarinata n. sp., specimen 145/16, sample N2-1-11/99, Bolshaya Nadota section; O, Lochriea commutata (Branson & Mehl, 1941)-Lochriea mononodosa (Rhodes, Austin & Druce, 1969) transition, specimen 145/11, sample N2-1-5/99, Bolshaya Nadota section; P, Lochriea monocarinata n. sp., specimen 145/17, sample N2-1-11/99, Bolshaya Nadota section; Q, Lochriea mononodosa (Rhodes, Austin & Druce, 1969)-Lochriea monocarinata n. sp. transition, specimen 145/3, sample Iz4-53/98, Izyayu section; R, Lochriea monocarinata n. sp., specimen 145/7, sample Iz4- 52/98, Izyayu section; S, Lochriea monocarinata n. sp., specimen 145/6, sample Iz4-52/98, Izyayu section; T, Lochriea mononodosa (Rhodes, Austin & Druce, 1969)-Lochriea monocarinata n. sp. transition, specimen145/9, sample Iz4-60/98, Izyayu section; U, Lochriea monocarinata n. sp., specimen 145/10, sample N2-1-5/99, Bolshaya Nadota section; V, Lochriea monocarinata n. sp., specimen 145/2, sample Iz4-53/98, Izyayu section; W, Lochriea monocarinata n. sp., specimen 145/1, sample K99-21/22, Kamenka section; X, Lochriea mononodosa (Rhodes, Austin & Druce, 1969), specimen 145/25, sample Iz4-45/98, Izyayu section; Y, Lochriea monocostata (Pazukhin & Nemirovskaya in Kulagina et al., 1992)-Lochriea monocarinata n. sp. transition, specimen 145/13, sample N2-1- 8/99, Bolshaya Nadota section; Z, Lochriea monocarinata n. sp., holotype, specimen 445/12, sample Iz4-52/98, Izyayu section; AA, Lochriea sp., P2 element, specimen 145/26, sample Iz4-51/98, Izyayu section. Scale bar: 0.1 mm.
Fig. 10 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 10. Meotipa tortuosa sp. nov., ♂, paratype (HNU814). A–C. Left palp. A. Prolateral view. B. Ventral view. C. Retrolateral view. Abbreviations: see Material and methods. Scale bars = 0.1 mm.
Fig. 9 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 9. Meotipa tortuosa sp. nov., ♂, paratype (HNU814). A–C. Habitus. A. Dorsal view. B. Ventral view. C. Lateral view. D–E. Left palp. D. Prolateral view. E. Ventral view. F. Retrolateral view. Abbreviations: see Material and methods. Scale bars: A–C = 1 mm; D–F = 0.1 mm.
Fig. 8 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 8. Meotipa tortuosa sp. nov., ♀, holotype (HNU813). A. Epigyne, ventral view. B. Vulva, dorsal view. Abbreviations: see Material and methods. Scale bars = 0.1 mm.
Fig. 7 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 7. Meotipa tortuosa sp. nov., ♀, holotype (HNU813). A–C. Habitus. A. Dorsal view. B. Ventral view. C. Lateral view. D–E. Epigyne, ventral view. F. Vulva, dorsal view (E–F, after digestion with pancreatin). Abbreviations: see Material and methods. Scale bars: A–C = 0.5 mm; D–F = 0.1 mm.
Fig. 5 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 5. Meotipa pseudomultuma sp. nov., ♂, paratype (HNU803). A–C. Habitus. A. Dorsal view. B. Ventral view. C. Lateral view. D–E. Left palp. D. Prolateral view. E. Ventral view. F. Retrolateral view. Abbreviations: see Material and methods. Scale bars: A–C = 0.5 mm; D–F = 0.1 mm.
Fig. 6 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 6. Meotipa pseudomultuma sp. nov., ♂, paratype (HNU803). A–C. Left palp. A. Prolateral view. B. Ventral view. C. Retrolateral view. Abbreviations: see Material and methods. Scale bars = 0.1 mm.
Fig. 4 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 4. Meotipa pseudomultuma sp. nov., ♀, holotype (HNU802). A. Epigyne, ventral view. B. Vulva, dorsal view. Abbreviations: see Material and methods. Scale bars = 0.1 mm.
Fig. 2 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 2. Meotipa lingulata sp. nov., ♀, holotype (HNU800). A. Epigyne, ventral view. B. Vulva, dorsal view. Abbreviations: see Material and methods. Scale bars = 0.1 mm.
Fig. 1 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 1. Meotipa lingulata sp. nov., ♀, holotype (HNU800). A–C. Habitus. A. Dorsal view. B. Ventral view. C. Lateral view. D–E. Epigyne, ventral view. F. Vulva, dorsal view (E–F, after digestion with pancreatin). Abbreviations: see Material and methods. Scale bars: A–C = 1 mm; D–F = 0.1 mm.
Fig. 3 in Three new species of the spider genus Meotipa Simon, 1895 from Guangxi Zhuang Autonomous Region, China (Araneae: Theridiidae)
Fig. 3. Meotipa pseudomultuma sp. nov., ♀, holotype (HNU802). A–C. Habitus. A. Dorsal view. B. Ventral view. C. lateral view. D–E. Epigyne, ventral view. F. Vulva, dorsal view (E–F, after digestion with pancreatin). Abbreviations: see Material and methods. Scale bars: A–C = 0.5 mm; D–F = 0.1 mm.
Fig. 12. Holotypes. A–C. H in On the origin and diversification of the stygobiotic freshwater snail genus Hauffenia (Caenogastropoda: Hydrobiidae) with special focus on the northern species and the description of two new species
Fig. 12. Holotypes. A–C. H. lozekiana sp. nov. (NHMW 113638). D–E. H. steffeki sp. nov. (NHMW 113640). Scale bar = 500 µm.
Fig. 1 in On the origin and diversification of the stygobiotic freshwater snail genus Hauffenia (Caenogastropoda: Hydrobiidae) with special focus on the northern species and the description of two new species
Fig. 1. Current distribution of Hauffenia Pollonera, 1898 in relation to the extension of the Pannonian Sea 10 Ma.
Fig. 17 in On the origin and diversification of the stygobiotic freshwater snail genus Hauffenia (Caenogastropoda: Hydrobiidae) with special focus on the northern species and the description of two new species
Fig. 17. Penes (SEM micrographs). A–B. H. lozekiana sp. nov. (different specimens). C–E. H. steffeki sp. nov. (one specimen). Arrow points at penial stylet, which is withdrawn in A and B. Scale bars: A–C = 50 µm; D = 10 µm; E = 2 µm.
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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
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.