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Figs 10a–f in A New Trichodina Species (Peritrichia: Mobilida) from Anuran Tadpole Hosts, Sclerophrys spp. in the Okavango Panhandle, Botswana, with Comments on this Taxon
Figs 10a–f. Denticle dimensions, as by van As and Basson (1989, 1992), of Trichodina koloti sp. nov. representatives from six different populations collected at the Nxamasere Floodplain, where a–e from Sclerophrys gutturalis (Power, 1927) and f – S. poweri (Hewitt, 1935) tadpoles during the 2016 winter (July to August) expedition (scale = 10 µm).
Figs 2–5 in A New Trichodina Species (Peritrichia: Mobilida) from Anuran Tadpole Hosts, Sclerophrys spp. in the Okavango Panhandle, Botswana, with Comments on this Taxon
Figs 2–5. Micrographs of representative Trichodina koloti sp. nov. specimens from each of the six populations measured from the Nxamasere Floodplain; 2 – Haematoxylin stained nuclear material; 3–5 – collected from the skin and gills of Sclerophrys gutturalis (Power, 1927) (scale = 10 µm).
Fig. 1 in A New Trichodina Species (Peritrichia: Mobilida) from Anuran Tadpole Hosts, Sclerophrys spp. in the Okavango Panhandle, Botswana, with Comments on this Taxon
Fig. 1. Map of the Okavango River System in southern Africa, including the Nxamasere Floodplain where Sclerophrys gutturalis (Power, 1923) and S. poweri (Hewitt, 1953) were collected (redrawn and adapted from West et al. 2015) (scale = 200 km).
Figs 11a–f in A New Trichodina Species (Peritrichia: Mobilida) from Anuran Tadpole Hosts, Sclerophrys spp. in the Okavango Panhandle, Botswana, with Comments on this Taxon
Figs 11a–f. Denticle dimensions, as proposed by van As and Basson (1989, 1992), of Trichodina koloti sp. nov. as recorded by and redrawn from: a and b – Arthur and Lom (1984), c – Kruger et al. (1993a), d – Dias et al. (2009), e and f – Pala et al. (2018).
Figs 6–9 in A New Trichodina Species (Peritrichia: Mobilida) from Anuran Tadpole Hosts, Sclerophrys spp. in the Okavango Panhandle, Botswana, with Comments on this Taxon
Figs 6–9. Micrographs of representative Trichodina koloti sp. nov. specimens from each of the six populations measured from the Nxamasere Floodplain; 6–8 – collected from the skin and gills of Sclerophrys gutturalis (Power, 1927); 9 – collected from the skin and gills of S. poweri (Hewitt, 1935) tadpoles during the 2016 winter (July to August) expedition (scale = 10 µm).
Fig. 2 in Strange tadpoles from the lower Miocene of Turkey: Is paedogenesis possible in anurans?
Fig. 2. Sites of collection of the fossil tadpoles in the Gürcü Valley studied here (enlarged from Fig. 1), Turkey. A. Ahlath Dere, where the specimen MNHN 1998.9173 was collected. B. Agaöz, where the specimen MNHN 1998.9174 and the slab with the mass of roundish spots MNHN 1998.9191 were collected.
Fig. 1 in Strange tadpoles from the lower Miocene of Turkey: Is paedogenesis possible in anurans?
Fig. 1. Map of Northwestern Turkey showing the area which yielded the fossil tadpoles in this study, near Güvem, in the Gürcü Valley. See Fig. 2 for detailed map of this area.
Fig. 5 in Strange tadpoles from the lower Miocene of Turkey: Is paedogenesis possible in anurans?
Fig. 5. Photograph of the isolated group of spots (MNHN 1998.9191 from Agaöz, Gürcü Valley, lower Miocene, Turkey).
Fig. 4 in Strange tadpoles from the lower Miocene of Turkey: Is paedogenesis possible in anurans?
Fig. 4. Photograph of the fossil tadpole MNHN 1998.9174 from Agaöz, Gürcü Valley, lower Miocene, Turkey, bearing a few spots in the abdominal region.
Fig. 10 in First record of Gracixalus quangi Rowley, Dau, Nguyen, Cao & Nguyen, 2011, from Hoa Binh Province, Vietnam, including the first documentation of advanced larval stages and an extended tadpole description
Fig. 10. Drawing of the oral field of a larva of Gracixalus quangi from Hoa Binh Province (IEBR 4333b) in development stage 35: natural view on top, schematic drawing below). Drawing by C. Niggemann.
Fig. 9 in First record of Gracixalus quangi Rowley, Dau, Nguyen, Cao & Nguyen, 2011, from Hoa Binh Province, Vietnam, including the first documentation of advanced larval stages and an extended tadpole description
Fig. 9. Drawing of a larva of Gracixalus quangi from Hoa Binh Province (IEBR 4333b) in development stage 35 in dorsal and lateral view. Drawing by C. Niggemann.
Fig. 8 in First record of Gracixalus quangi Rowley, Dau, Nguyen, Cao & Nguyen, 2011, from Hoa Binh Province, Vietnam, including the first documentation of advanced larval stages and an extended tadpole description
Fig. 8. Advanced developmental stages of Gracixalus quangi from Hoa Binh Province (development stages indicated). Photo credit T. Ziegler and T.D. Tran.
Fig. 6 in First record of Gracixalus quangi Rowley, Dau, Nguyen, Cao & Nguyen, 2011, from Hoa Binh Province, Vietnam, including the first documentation of advanced larval stages and an extended tadpole description
Fig. 6. Early developmental stages of Gracixalus quangi from Hoa Binh Province (development stages indicated). Photo credit C.T. Pham.
Fig. 3 in First record of Gracixalus quangi Rowley, Dau, Nguyen, Cao & Nguyen, 2011, from Hoa Binh Province, Vietnam, including the first documentation of advanced larval stages and an extended tadpole description
Fig. 3. Adult couple of Gracixalus quangi from Hoa Binh Province (male above, female below). Photo credit C.T. Pham.
Fig. 11 in First record of Gracixalus quangi Rowley, Dau, Nguyen, Cao & Nguyen, 2011, from Hoa Binh Province, Vietnam, including the first documentation of advanced larval stages and an extended tadpole description
Fig. 11. Larva of Gracixalus quangi from Hoa Binh Province (IEBR 4333b) in development stage 35 in life (photo taken 4 May 2014). Photo credit T. Ziegler.
Fig. 6 in Morphology And Buccopharyngeal Anatomy Of The Tadpole Of Rana (Nasirana) Alticola (Anura: Ranidae)
Fig. 6. Buccal cavity of the tadpole of Rana alticola (MNHN 2000.4629, stage 35). A, buccal floor; B, buccal roof. BFA = buccal floor arena; BP = buccal pocket; BRA = buccal roof arena; C = choana; GZ = glandular zone; IP = infralabial papilla; MN = medial notch; PA = postnarial arena; PR = prenarial ridge; TA = tongue anlage; VV = ventral velum. Scale bar = 5 mm. Note the rather simple structure of buccal cavity: simple structure of most papillae, absence of tongue anlage papillae, lateral ridge papillae as well as buccal roof arena papillae.
Fig. 5 in Morphology And Buccopharyngeal Anatomy Of The Tadpole Of Rana (Nasirana) Alticola (Anura: Ranidae)
Fig. 5. Tadpole of Rana alticola in stage 25 (MNHN 2000.4656). A, dorsal view; B, profile. Total length = 20.0 mm. Note the striking difference of coloration and glands much less developed (supracaudal gland visible in dorsal view) in comparison with older stages.
Fig. 3 in Morphology And Buccopharyngeal Anatomy Of The Tadpole Of Rana (Nasirana) Alticola (Anura: Ranidae)
Fig. 3. Tadpole of Rana alticola in stage 35 (MNHN 2000.4660) showing venom expelled by parotoid and supracaudal glands. Total length = 76.3 mm.
Fig. 2 in Morphology And Buccopharyngeal Anatomy Of The Tadpole Of Rana (Nasirana) Alticola (Anura: Ranidae)
Fig. 2. Tadpole of Rana alticola in stage 36 (MNHN 2000.4630) showing its glands and three ocelli. A, dorsal view; B, profile. 1 = parotoid gland; 2 = supracaudal gland; 3 = pectoral gland; 4 = posteroventral gland; 5 = infracaudal gland. Scale bar = 10 mm.
Fig. 6 in Larval Descriptions Of Some Poorly Known Tadpoles From Peninsular Malaysia (Amphibia: Anura)
Fig. 6. Dorsal aspect of recent emergent of Rhacophorus appendiculatus (Stage 46). Note symmetrical pale areas on axilla, upper arm to elbow, knee, heel and around vent.
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.