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FIGURE 30 in New taxa of Tateidae (Caenogastropoda, Truncatelloidea) from springs associated with the Great Artesian Basin and Einasleigh Uplands, Queensland, with the description of two related taxa from eastern coastal drainages

FIGURE 30. Male and female reproductive anatomy of Nundalia secreta n. gen. and n. sp. (C.200900). A. Penis, showing penial duct and vas deferens. B. Female system from left side. C. Bursa copulatrix and seminal receptacle. Abbreviations: agalbumen gland; bc—bursa copulatrix; cg—capsule gland; o—opening of oviduct; p—papilla; pd—penial duct; pw—posterior wall of mantle cavity; ro—renal oviduct; sr—seminal receptacle; v—vestibule; vc—ventral channel. Scale bar 200 µm.

opennotspecifiedApr 2019View details →
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FIGURE 31 in New taxa of Tateidae (Caenogastropoda, Truncatelloidea) from springs associated with the Great Artesian Basin and Einasleigh Uplands, Queensland, with the description of two related taxa from eastern coastal drainages

FIGURE 31. Phylogram of Australian tateid spring taxa and selected outgroups with Bayesian posterior probability values (shown above nodes) and RAxML bootstrap support values (shown below nodes). Posterior probability values below 0.85 and bootstrap support below 70% are not shown, and asterisks indicate optimal support. Two parallel diagonal lines on branches indicate those branches have been shortened. Bayesian tree is shown. The grey box indicates the clade encompassing all Queensland spring taxa, the monotypic Nundalia from New South Wales, and the coastal, riverine genus Jardinella from northern Queensland. All taxa included in this clade are illustrated to the right and where possible aligned with their respective placement in the phylogram. Abbreviations: C—Carnarvoncochlea; E. (B.)—Edgbastonia (Barcaldinia); E. (E.) -Edgbastonia (Edgbastonia); NQ—North Queensland (coastal); NSW—New South Wales; S—Springvalia. Names of imaged taxa are indicated, next to the illustrations, by the three first letters in their species (or subspecies) name, or, when identical, the four first letters. For details of superscript numbers 1–40, see Table 20.

opennotspecifiedApr 2019View details →
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FIGURE 23 in New taxa of Tateidae (Caenogastropoda, Truncatelloidea) from springs associated with the Great Artesian Basin and Einasleigh Uplands, Queensland, with the description of two related taxa from eastern coastal drainages

FIGURE 23. Male and female reproductive anatomy of Carnarvoncochlea cf. carnarvonensis (Ponder & Clark, 1990) (C.400126). A. Penis, showing penial duct and vas deferens. B. Prostate, with associated vas deferens and vas efferens. C. Female system shown from left side. D. Bursa copulatrix and seminal receptacle. Abbreviations: ag—albumen gland; avdanterior vas deferens; bc—bursa copulatrix; cg—capsule gland; o—opening of oviduct; pd—penial duct; pw—position of posterior wall of pallial cavity; ro—renal oviduct; sr—seminal receptacle; vc—ventral channel; vd—vas deferens; ve—vas efferens. Scale bar 200 µm.

opennotspecifiedApr 2019View details →
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FIGURE 5 in New taxa of Tateidae (Caenogastropoda, Truncatelloidea) from springs associated with the Great Artesian Basin and Einasleigh Uplands, Queensland, with the description of two related taxa from eastern coastal drainages

FIGURE 5. Radulae of Eulodrobia n. gen. A, B. Eulodrobia fenshami n. sp., paratype, spring at Town Common, Eulo (C.410721). A, half rows, B, detail of lateral tooth. C–E. Eulodrobia eulo (Ponder & Clark, 1990), paratype, Massey Spring (C.156779), C, half rows, D detail of lateral tooth, E, detail of central tooth. F–H. Eulodrobia ovata n. sp., paratype, Yowah Springs, Bundoona Stn (C.400130). F. Detail of central tooth. G. Detail of inner marginal tooth. H. Detail of outer lateral teeth. I–K. Eulodrobia bundoona n. sp., paratype, Yowah Springs, Bundoona Stn (C.400132). I. Part of tooth row. J. Detail of lateral teeth. K. Detail of inner marginal tooth. L.Eulodrobia carinata n. sp., paratype, Yowah Springs, Bundoona Stn (C.400131), half rows. M. N. Eulodrobia spirula n. sp., paratype, Yowah Springs, Bundoona Stn (C.400133), half rows. Scale bars 10 µm.

opennotspecifiedApr 2019View details →
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FIGURE 27 in New taxa of Tateidae (Caenogastropoda, Truncatelloidea) from springs associated with the Great Artesian Basin and Einasleigh Uplands, Queensland, with the description of two related taxa from eastern coastal drainages

FIGURE 27. Male and female reproductive anatomy of Conondalia buzwilsoni n. gen. and n. sp. (C.200788). A. Penis, showing penial duct and vas deferens. B. Prostate, with associated vas deferens and vas efferens. C. Female system from left side. D. Bursa copulatrix and seminal receptacle. Abbreviations: ag—albumen gland; avd—anterior vas deferens; bc—bursa copulatrix; cg—capsule gland; o—opening of oviduct; pd—penial duct; pvd—posterior vas deferens; pw—posterior wall of mantle cavity; ro—renal oviduct; sr—seminal receptacle; vc—ventral channel. Scale bar 200 µm.

opennotspecifiedApr 2019View details →
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FIGURE 2 in New taxa of Tateidae (Caenogastropoda, Truncatelloidea) from springs associated with the Great Artesian Basin and Einasleigh Uplands, Queensland, with the description of two related taxa from eastern coastal drainages

FIGURE 2. Shells of species of Eulodrobia n. gen. A. Eulodrobia fenshami n. sp., holotype, spring at Town Common, Eulo (C.479950). B. Eulodrobia eulo (Ponder & Clark, 1990), paratype, Massey Spring (C.156779). C. Eulodrobia cf. eulo (Ponder & Clark, 1990), Tunga Spring (C.410643). D. Eulodrobia ovata n. sp., holotype, Yowah Springs, Bundoona Station (C.479944). E. Eulodrobia bundoona n. sp., holotype, Yowah Springs, Bundoona Station (C.479943). F. Eulodrobia carinata n. sp., holotype, Yowah Springs, Bundoona Station (C.479942). G–I. Eulodrobia spirula n. sp., Yowah Springs, Bundoona Station. G. dorsal view of holotype (479945). H, I. apertural view of paratypes (C.400133). Scale bars 1 mm.

opennotspecifiedApr 2019View details →
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FIGURE 1 in New taxa of Tateidae (Caenogastropoda, Truncatelloidea) from springs associated with the Great Artesian Basin and Einasleigh Uplands, Queensland, with the description of two related taxa from eastern coastal drainages

FIGURE 1. Map of the spring supergroups associated with the Great Artesian Basin (GAB) in Queensland, showing the main non-town locations mentioned in the text (squares) and some of the towns in the area (ovals). The pale grey shading is the discharge part of the GAB, the dark grey the recharge part. The inset map of Australia shows the area illustrated. The approximate location of Conondale is indicated by a triangle and Nundle by a star. The spring supergroups are outlined with dotted lines and are as follows: A, Mulligan River; B, Springvale; C, Flinders River; D, Hughenden; E, Barcaldine (see inset at upper right for details); F, Springsure; G, Eulo.

opennotspecifiedApr 2019View details →
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Supplementary material, Figure S11 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S11 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S11. Comparison between the sizes of microparticles collected in surface waters in the Santos Basin during winter and summer in the period 2020-2021.<br>Caption: SB, Santos Basin. S, Summer. W, Winter.</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S10 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S10 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S10. Relative distribution of different sizes of microparticles collected in surface waters in the Santos Basin in the period 2020-2021.<br>Caption: SB, Santos Basin.</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S9 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S9 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S9. Color distribution of microparticles collected during the winter and summer in surface waters of the Santos Basin in the period 2020-2021.<br>Caption: SB, Santos Basin. S, Summer. W, Winter.</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S8 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S8 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S8. Distribution of the concentration of items and colors of particles at each sampling point in surface waters collected in the Santos Basin in the period 2020-2021.<br>Caption: SB, Santos Basin.</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S7 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S7 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S7. Morphological abundance of particles in surface waters collected in the Santos Basin in the period 2020-2021 during winter and summer.<br>Caption: SB, Santos Basin. S, Summer. W, Winter.</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S5 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S5 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S5. Volume distribution of microparticles in surface water samples collected in the Santos Basin in the period 2020-2021 by sampling point.<br>Caption: SB, Santos Basin.</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S4 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S4 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S4. Number of microparticles by sampling stations in surface waters collected in the Santos Basin in the period 2020-2021.<br>Caption: SB, Santos Basin.</p> <p>&nbsp;</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S3 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p><span>Supplementary material, Figure S3 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</span></p> <p><span>Figure S3. Wave direction and height recorded during microplastic collections in surface waters in the Santos Basin.<br>Caption: (A) Wave direction; (B) Wave Height. SB, Santos Basin.<br></span></p> <p>&nbsp;</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Table S5 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p><span>Supplementary material, Table S5 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</span></p> <p><span>Table S5. Comparison between studies on the presence of microplastics in coastal and oceanic waters.<br>Captions: Mps - microplastics; Mp/L - microplastics per liter; Mp/m2 - microplastics per square meter; Mp/m&sup3; - microplastics per cubic meter; n.d. - Not determined; &mu;m - microns; mm - millimeters.<br></span></p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S2 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p><span>Supplementary material, Figure S2 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</span></p> <p><span>Figure S2. Drift current conditions recorded during microplastics collections in surface waters in the Santos Basin.<br>Caption: (A) current drift direction and speed 2020; (B) current drift direction and speed 2021.<br></span></p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Table S4 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Table S4 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Table S4. Most common types of microplastics.<br>Source: adapted from Gago et al. (2019).</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Figure S1 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p>Supplementary material, Figure S1 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</p> <p>Figure S1. Wind conditions recorded during microplastics collections in surface waters in the Santos Basin.</p> <p>Caption: (A) 2020 wind direction and speed; (B) 2021 wind direction and speed.</p>

opencc-by-4.0Aug 2024View details →
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Supplementary material, Table S1 from Hudson Carvalho Ferreira and Gisele Lôbo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.

<p><span>Supplementary material, Table S1 from Hudson Carvalho Ferreira and Gisele L&ocirc;bo-Hajdu (accepted) Preliminary assessment of microplastic pollution in surface waters of the Santos Basin: abundance and diversity in the most important oil and gas exploration hub in Brazil. Ocean and Coastal Research.</span></p> <p><span>Table S1. Sampled and unsampled seasons over the summer and winter of 2020-2021.<br>Caption: SB, Santos Basin.<br></span></p>

opencc-by-4.0Aug 2024View details →

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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

Annotated Behaviour and Observability Dataset (ABODe)

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
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