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Fig. 3 in Molecular study supports the position of the New Zealand endemic genus Lamellomorpha in the family Vulcanellidae (Porifera, Demospongiae, Tetractinellida), with the description of three new species
Fig. 3. Morphology, megascleres, and microscleres of Lamellomorpha australis Kelly & Cárdenas sp. nov. A. Bilamellate form (NIWA 89736 leg., holotype). B. Club-shaped morphology showing both sides (NIWA 93483 leg., paratype). C. Sinuous oxeas (NIWA 44388 leg.). D. Curved, roughened microstrongyles (rounded ends) and microxeas (blunt-pointed ends) (NIWA 44388 leg.). E. Metasterlike streptasters with heavily spined, relatively long rays (NIWA 89736 leg. and NIWA 89717 leg.). F. Spirasters with dense, short, microspined rays (NIWA 44388 leg. and NIWA 89736 leg.).
Fig. 2 in Molecular study supports the position of the New Zealand endemic genus Lamellomorpha in the family Vulcanellidae (Porifera, Demospongiae, Tetractinellida), with the description of three new species
Fig. 2. Morphology, megascleres and microscleres of Lamellomorpha strongylata Bergquist, 1968. A. Deck image showing midnight blue colouration and palmate morphology (NIWA 93474 leg., image Lori J. Bell, CRRF). B. Loss of colouration and radiating skeleton (NIWA 73253 leg.). C. Range of roughened microstrongyles showing centrotylote forms and more typical curved forms (penultimate: NIWA 356 leg., rest: NIWA 93474 leg.). D. Sinuous oxeas (NIWA 93474 leg.). E. Metaster- to amphiaster-like streptasters (left: NIWA 93474 leg., center and right: NIWA 356 leg.); F. Metaster- to amphiaster-like streptasters (left and center: NIWA 356 leg., right: NIWA 93474 leg.).
Fig. 1 in Molecular study supports the position of the New Zealand endemic genus Lamellomorpha in the family Vulcanellidae (Porifera, Demospongiae, Tetractinellida), with the description of three new species
Fig. 1. Study area showing the collection localities for: Lamellomorpha strongylata Bergquist, 1968, around Middlesex Bank, Three Kings Islands, and Spirits Bay (triangles); L. australis Kelly & Cárdenas sp. nov., Bounty Platform, Campbell Plateau, Solander Trough, and Macquarie Ridge (Australian EEZ) (circles); Poecillastra ducitriaena Kelly & Cárdenas sp. nov., on the eastern edge of the Snares Platform (square); and Poecillastra macquariensis Kelly & Cárdenas sp. nov., on Seamount 5, Macquarie Ridge (star).
FIG. 2 in Sagina hookeri Timaná, sp. nov. (Caryophyllaceae), a new endemic species for the flora of Île Amsterdam (French Southern and Antarctic Lands)
FIG. 2. — Close-up of type specimen of Sagina hookeri Timaná, sp. nov. (specimen P02434524; Rouhan et al. 1841).
FIG. 1. — A in Sagina hookeri Timaná, sp. nov. (Caryophyllaceae), a new endemic species for the flora of Île Amsterdam (French Southern and Antarctic Lands)
FIG. 1. — A, Location of Île Amsterdam in the Southern Indian Ocean; B, locality details showing the two sites known for Sagina hookeri Timaná, sp. nov. (dashed frames).
FIG. 4 in Sagina hookeri Timaná, sp. nov. (Caryophyllaceae), a new endemic species for the flora of Île Amsterdam (French Southern and Antarctic Lands)
FIG. 4. — Fruit close-up: A, fruit before dehiscence; B, fruit before dehiscence, with sepals removed, showing petals; C, mature fruit at dehiscence. Lourteig & Cour 57. Photo credits: MNHN – Germinal Rouhan, 2018. Scale bars: A, C, 500 µm; B, 1 mm.
FIG. 3 in Sagina hookeri Timaná, sp. nov. (Caryophyllaceae), a new endemic species for the flora of Île Amsterdam (French Southern and Antarctic Lands)
FIG. 3. — Living specimens and habitat of Sagina hookeri Timaná, sp. nov. in Île Amsterdam: A, habit; B, fruit close-up; C, flower close-up; D, fruiting individual; E, habitat of type specimen at Point Del Cano, in the middle of ' Terres Rouges'. Photos: MNHN – Germinal Rouhan, 2016.
Fig. 3 in Three new species of Sinningia (Gesneriaceae) endemic to Espírito Santo, Brazil
Fig. 3. – Sinningia flammea Chautems & Rossini. A. Habit; B. Adaxial leaf surface and margin detail; C. Lateral view of flower with calyx; D. Frontal view of corolla; E. Calyx and style; F. Schematic arrangement of the nectary glands; G. Insertion of stamens in the corolla; H. Ventral surface of anthers; I. Dorsal surface of anthers showing the star shape; J. Fruit. [Fontana & Menini Neto 6076, MBML] [Drawing: J. Rossini]
Fig. 4. – Sinningia hoehnei Chautems. A.P. Fontana & Rossini. A in Three new species of Sinningia (Gesneriaceae) endemic to Espírito Santo, Brazil
Fig. 4. – Sinningia hoehnei Chautems. A.P. Fontana & Rossini. A. Habit; B. Lateral view of flower with calyx; C. Calyx and style; D. Dorsal view of nectary glands; E. Schematic arrangement of the nectary glands; F. Dorsal surface of anthers; G. Ventral surface of anthers; H. Fruit split open. [Kollmann & Fontana 12720, MBML] [Drawing: J. Rossini]
Fig. 5 in Three new species of Sinningia (Gesneriaceae) endemic to Espírito Santo, Brazil
Fig. 5. – Sinningia stapelioides Chautems & M. Peixoto. A. Habit, leaf stage; B. Habit, flowering stage; C. Frontal view of corolla; D. Longitudinal cut of corolla showing androecium and gynoecium; E. Lateral view of corolla; F. Dorsal surface of anthers; G. Ovary and nectary, corolla removed; H. Schematic arrangement of the nectary glands; I. Calyx, ovary and style. [Chautems 555, G] [Drawing: G. Loza]
Fig. 2 in Three new species of Sinningia (Gesneriaceae) endemic to Espírito Santo, Brazil
Fig. 2. – Photographs of Sinningia Nees. A. Sinningia flammea Chautems & Rossini; B–C. Sinningia hoehnei Chautems, A.P. Fontana & Rossini; D. Sinningia stapelioides Chautems & M. Peixoto. [Pictures: A–C: A. P. Fontana; D: M. Peixoto]
Fig. 1 in Three new species of Sinningia (Gesneriaceae) endemic to Espírito Santo, Brazil
Fig. 1. – Distribution map of Sinningia flammea Chautems & Rossini (triangles), S. hoehnei Chautems, A.P. Fontana & Rossini (squares) and S. stapelioides Chautems & M. Peixoto (star).
Fig. 3 in Pichonia munzingeri (Sapotaceae), a new and rare micro-endemic species from New Caledonia
Fig. 3. – Pichonia munzingeri Gâteblé & Swenson. A. Flowering branch; B. Leaf with brochidodromous leaf venation; C. Lower surface of leaf showing an areolate higher leaf venation; D. Canaliculate petiole; E. Axillary solitary flowers; F. Flowers; G. Sepals, outer surface of an outer sepal (left), inner surface of an outer sepal (middle), and outer surface of an inner sepal (right); H. Open corolla with stamens and staminodes; I. Flower with sepals and corolla removed; J. Transection of fruit.
Fig. 2 in Pichonia munzingeri (Sapotaceae), a new and rare micro-endemic species from New Caledonia
Fig. 2. – Pichonia munzingeri Gâteblé & Swenson. A. Overview of a single shrub; B. Decumbent shrub with leaves from above, resembling those of Pycnandra francii (Guillaumin & Dubard) Swenson & Munzinger; C–E. Sessile flower; F. Immature fruit. [Photos: A–D, F: G. Gâteblé; E: G. Rochard]
Fig. 1 in Pichonia munzingeri (Sapotaceae), a new and rare micro-endemic species from New Caledonia
Fig. 1. – Pichonia munzingeri Gâteblé & Swenson. A. Overview of the Montagne des Sources fire on 29 December 2005, the arrow points to the fire in the Oumbéa creek; B. Upper population in degraded maquis vegetation showing Pteridium esculentum (G. Forst.) Cockayne flammable dead whitish fronds along the pipe to the water catchment, arrows point to ten individuals of Pichonia munzingeri. [Photos: G. Gâteblé]
Figure 7 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 7. Cerciplanus maricaensis sp. n.: a) Galled leaf of Ouratea cuspidata (A.St.- Hil.) Engl. (Ochnaceae), general aspect; b) Galls on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), longitudinal section.
Figure 1 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 1. Cerciplanus maricaensis sp. n.: a) Female head, frontal view; b) Male scape, pedicel and 1st–4th flagellomeres; c) Male 5th flagellomere; d) Female 5th flagellomere; d) Male 12th flagellomere.
Figure 5 in A new species of gall midge (Diptera, Cecidomyiidae) on Ouratea cuspidata (A.St.-Hil.) Engl. (Ochnaceae), a plant endemic to Brazil
Figure 5. Cerciplanus maricaensis sp. n., pupal exuviae: a) Head and prothoracic spiracle, ventral view; b) Apical plate, dorsal view (apical seta broken); c) Last abdominal segments, dorsal view.
Figure 7 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 7 Zalepidota distincta new species, pupa: a) head, ventral view; b) antennal horns; c) upper frontal horns; d) lower frontal horn.
Figure 3 in A new species of Zalepidota Rübsaamen, 1908 (Diptera, Cecidomyiidae) on Piper vicosanum (Piperaceae), an endemic plant to Brazil
Figure 3 Zalepidota distincta new species, male: a) foreleg, 1st tarsomere; b) foreleg, tarsal claw and empodium, lateral view; c) abdomen, lateral view.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.