Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
135
datasets available to search
ShareScore release 0.9.0
Dataset results
135 results for “Podocnemididae”
Fig. 13 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 13. Bauruemys elegans (Suárez, 1969a). MCZ 4123. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [A. Venjara, del.]
Fig. 12 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 12. Bauruemys elegans (Suárez,1969a). DGM MCT 1753-R. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [M. Vabulas, del.]
Fig. 10 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 10. Bauruemys elegans (Suárez,1969a). DGM MCT 1492-R, skull of holotyope. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [C. Facella, del.]
Fig. 1 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 1. Hamadachelys escuilliei Tong and Buffetaut, 1996. Partially restored skull based on MDE T03 and AMNH 30644. A, dorsal; B, ventral; C, lateral. [C. Facella, del.]
Fig. 8 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 8. Bauruemys elegans (Suárez, 1969a). Partially restored ventral view based on DGM MCT 1492- R and MCZ 4123. [A. Venjara, del.]
Fig. 9 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 9. Bauruemys elegans (Suárez,1969a). DGM MCT 1492-R, skull of holotyope. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [C. Facella del.]
Fig. 4 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 4. Hamadachelys escuilliei Tong and Buffetaut, 1996. MDE T03. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [A. Phillips, del.]
Fig. 3 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 3. Hamadachelys escuilliei Tong and Buffetaut, 1996. MDE T03. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [A. Phillips, del.]
Fig. 6 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 6. Hamadachelys escuilliei Tong and Buffetaut, 1996. AMNH 30644. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [C. Facella del.]
Fig. 2 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 2. Hamadachelys escuilliei Tong and Buffetaut, 1996. Partially restored ventral view based on MDE T03 and AMNH 30644. [A. Phillips, del.]
Fig. 5 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 5. Hamadachelys escuilliei Tong and Buffetaut, 1996. AMNH 30644. A, dorsal; B, ventral; C, right lateral; D, anterior; E, left lateral; F, posterior. [C. Facella del.]
Fig. 7 in Evolution Of The Side-Necked Turtles: The Family Podocnemididae
Fig. 7. Bauruemys elegans (Suárez,1969a). Partially restored skull based on DGM MCT 1492-R, DGM uncat A, MCZ 4123. A, dorsal; B, ventral; C, lateral. [A. Venjara, del.]
Fig. 3 in Haemocystidium spp., a species complex infecting ancient aquatic turtles of the family Podocnemididae: First report of these parasites in Podocnemis vogli from the Orinoquia
Fig. 3. (A) A Bayesian phylogenetic analysis of reptile haemosporidian parasites based on 62 partial sequences of cytb gene sequences corresponding to a bigger fragment of cytb (707 bp excluding gaps). Leucocytozoon genus was used as outgroup. In parenthesis are GenBank sequence accession number, isolate name, and turtle species name respectively. Branch color indicates the parasites genus: Blue, Plasmodium sp.; light green, Haemocystidium spp. infecting lizards and snakes; dark green, Haemocystidium sp. Infecting turtles; black, Haemoproteus and Leucocytozoon spp. (B–C) Estimates of evolutionary divergence between/within Haemocystidium spp. Genetic distances were estimated using the bigger fragment of cytb (707 bp excluding gaps). The number of base substitutions per site between sequences are shown in black and the standard error estimate(s) are shown above the diagonal in blue. Evolutionary divergence between/within Haemocystidium pacayae and Haemocystidium sp. (GERPH: PC005) are shown in bold and red respectively. Sequences previously identified as Hae. pacayae (KF049495 and KF049507) are likely Hae. (Simondia) sp. (group 2). (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)
Fig. 4 in Haemocystidium spp., a species complex infecting ancient aquatic turtles of the family Podocnemididae: First report of these parasites in Podocnemis vogli from the Orinoquia
Fig. 4. Haemocystidium (Simondia) sp. (GERPH: PC005) identified in Podocnemis vogli (A–H). (A–F) Young gametocytes, (E) coinfection with a gamont of Haemogregarina, (G) microgametocyte, and (H) macrogametocyte. Haemocystidium (S.) pacayae (GERPH: PC004-PC006) identified in P. vogli (I–J). (I) Young gametocyte, (K) microgametocyte, and (L) macrogametocyte. Bold black arrow: hemozoin granules; white arrow: parasitophorous vacuole; fine black arrow: vacuole. Giemsa stain, Scale bar: 10 μm.
Fig. 2 in Haemocystidium spp., a species complex infecting ancient aquatic turtles of the family Podocnemididae: First report of these parasites in Podocnemis vogli from the Orinoquia
Fig. 2. Species and sampling locations for turtles analyzed in the study. Turtle species present in these localities are shown.
Fig. 1 in Haemocystidium spp., a species complex infecting ancient aquatic turtles of the family Podocnemididae: First report of these parasites in Podocnemis vogli from the Orinoquia
Fig. 1. Timeline of the taxonomic classification of the genus Haemocystidium. Relevant events in the description of this genus.
Fig. 5 in Avaliação da influência de fatores hidroclimáticos sobre a estrutura populacional de Podocnemis expansa (Testudines: Podocnemididae) no Rio Formoso, sudeste da Amazônia brasileira
Fig. 5. CarapaÇa e plastrÃo de treze espÉcimes adultos de Podocnemis expansa (Schweigger, 1812) predados por humanos no ano 2017, em um dos pontos de amostragem no Rio Formoso, Estado do Tocantins, Brasil.
Fig. 4 in Avaliação da influência de fatores hidroclimáticos sobre a estrutura populacional de Podocnemis expansa (Testudines: Podocnemididae) no Rio Formoso, sudeste da Amazônia brasileira
Fig. 4. RelaÇÃo entre a vazÃo na estaÇÃo chuvosa (linha azul) e a condiÇÃo corporal de Podocnemis expansa (Schweigger, 1812) entre os anos de 2016 e 2018, no Rio Formoso, Estado do Tocantins, Brasil.
Fig. 3 in Avaliação da influência de fatores hidroclimáticos sobre a estrutura populacional de Podocnemis expansa (Testudines: Podocnemididae) no Rio Formoso, sudeste da Amazônia brasileira
Fig. 3. RelaÇÃo entre a vazÃo na estaÇÃo seca (linha azul) e o tamanho de Podocnemis expansa (Schweigger, 1812) entre os anos de 2016 e 2018, no Rio Formoso, Estado do Tocantins, Brasil.
Fig. 2 in Avaliação da influência de fatores hidroclimáticos sobre a estrutura populacional de Podocnemis expansa (Testudines: Podocnemididae) no Rio Formoso, sudeste da Amazônia brasileira
Fig. 2. DistribuiÇÃo de frequÊncias das classes de tamanhos das carapaÇas de machos e fÊmeas de Podocnemis expansa (Schweigger, 1812) capturados entre os anos de 2016 e 2018, no Rio Formoso, Estado do Tocantins, Brasil.
ScienceDex guides
Understand access before you commit
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.