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.
127
datasets available to search
ShareScore release 0.7.1
Dataset results
127 results for “Central Argentina”
Supplementary Information and data for: "Quaternary and Pliocene sea-level changes at Camarones, central Patagonia, Argentina"
<p>This repository contains the supplementary information and raw data annexed to the manuscript "<em>Quaternary and Pliocene sea-level changes at Camarones, central Patagonia, Argentina</em>", authored by Karla Rubio-Sandoval et al. and submitted for consideration in the journal Quaternary Science Reviews.</p> <p>The folder contains the following items.</p> <p><strong>1. Raw_data.xlsx</strong><br>This is an excel file that includes all survey and analytical data in several sheets, briefly described hereafter.</p> <p>- <em>GNSS data</em>. Data surveyed with differential GNSS in the field.<br>- <em>Sea level index points</em>. Datapoints used as sea-level index points, and associated calculations of paleo Relative Sea Level.<br>- <em>AAR Summary</em>. Table summarising the main results of the AAR analyses.<br>- <em>AAR complete sheet</em>. The complete set of analytical data done for the Amino Acid Racemization dating.<br>- <em>Radiocarbon data</em>. The analytical results of radiocarbon dating.<br>- <em>Literature ages</em>. A compilation of the Electron Spin Resonance and U-series ages published for the Camarones site.<br>- <em>Transects</em>. Topographical transects extracted from the TanDEM-X Digital Elevation model and referred to the GEOIDEAR 16 geoid.<br>- <em>Distance plot</em>. Data for plotting Relative Sea Level vs distance along the coast of the sea-level index points described in the manuscript.</p> <p><strong>2. Holocene (folder)</strong><br>This folder contains two excel files ("Area_Camarones_Accepted.xlsx" and "Area_Camarones_Rejected.xlsx") that include the Holocene data described in the paper compiled following the standard HOLSEA template.</p> <p><strong>3. Runup_modelling</strong><br>This folder contains three folders, each with a Jupyter notebook (.ipynb) and datasets to perform the runup calculations described in the manuscript.</p>
Fig. 2 in New craniodental material of the typotherian notoungulates from the upper Oligocene of Mendoza, central-western Argentina and their taxonomical importance
Fig. 2. Upper dentition (anterior to the left) of hegetotheriid notoungulates from Quebrada Fiera, Mendoza, Argentina; upper Oligocene, Deseadan SALMA. A, B. "Prohegetotherium schiaffinoi (Kraglievich, 1932)". A. MCNAM-PV 5076, left P1–M3 in occlusal view. B. MCNAM-PV 5086, right maxillary fragment with P4–M1 (reversed), in occlusal (B1) and labial (B2) views. C. "Prohegetotherium cf. P. schiaffinoi", MCNAM-PV 4982, right maxillary fragment with M1–M3 (reversed) in occlusal (C1) and labial (C2) views. D, E. Hegetotheriinae indet. D. MCNAM-PV 4185, left M1 or M2 in occlusal view. E. MCNAM-PV 4612, left P4 or M1 in occlusal view. F, G. Prosotherium garzoni Ameghino, 1897. F. MCNAM-PV 4991, right maxillary fragment with M1–M2 (reversed) in occlusal view. G. MCNAM-PV 5016, right maxillary fragment with P2–M1 (reversed) in occlusal view.
Fig. 5 in New craniodental material of the typotherian notoungulates from the upper Oligocene of Mendoza, central-western Argentina and their taxonomical importance
Fig. 5. Dental remains (anterior to the left, except for D) of interatheriid notoungulates from Quebrada Fiera, Mendoza, Argentina; upper Oligocene, Deseadan SALMA. A–K. Argyrohyrax proavus Ameghino 1897. A. MCNAM-PV 4962, right maxillary fragment with DP1–DP4–M1, occlusal view reversed). B. MCNAM-PV 4961, maxillary fragments with left C–M2 in occlusal view (B1), see erupting C in SOM 1: fig. S5A, B and right P2–M2 in occlusal view (B2). C. MCNAM-PV 4986, left maxillary fragment with M1–M2 in occlusal view. D. MCNAM-PV 4245, mandibular symphysis with broken teeth in rostral view. E. MCNAM-PV 4646, right mandibular fragment with broken dp1–p2–p3 in occlusal view. F. MCNAM-PV 5082, right mandibular fragment with p2–m1 in occlusal view. G. MCNAM-PV 4963, right mandibular fragment with dp3–p4–m2 and separated m3 in occlusal G1, G2) and lingual (G3, G4) views. H. MCNAM-PV 4308, right lower molar (unerupted m3?) in occlusal view. I. MCNAM-PV 4622, left m3 (reversed) in occlusal view. J. MCNAM-PV 4623, right m3 in occlusal view. K. MCNAM-PV 5081, left m1 or m2 (reversed) in occlusal view. L. Interatheriidae indet. MCNAM-PV 4724, right upper molar in occlusal (reversed) (L1) and opposite (L2) views.
Fig. 1 in New craniodental material of the typotherian notoungulates from the upper Oligocene of Mendoza, central-western Argentina and their taxonomical importance
Fig. 1. Hegetotheriid notoungulate "Prohegetotherium schiaffinoi (Kraglievich, 1932)" from Quebrada Fiera, Mendoza, Argentina; upper Oligocene, Deseadan SALMA. MCNAM-PV 5076, skull in ventral (A1, A2), dorsal (A3, A4), left lateral (A5, A6), and occipital (A7, A8) views. White and gray areas indicate well-preserved bone or teeth and broken bone or teeth respectively; black areas indicates foramina, sulci and other natural depresions while striped areas indicate matrix. Photographs (A1, A3, A5, A7) and explanatory drawings (A2, A4, A6, A8).
Fig. 4 in New craniodental material of the typotherian notoungulates from the upper Oligocene of Mendoza, central-western Argentina and their taxonomical importance
Fig. 4. Dental remains (anterior to the left) of the archaeohyracid notoungulate Archaeohyrax suniensis Billet, Patterson, and de Muizon, 2009, from Quebrada Fiera, Mendoza, Argentina; upper Oligocene, Deseadan SALMA. A. MCNAM-PV 4357, rostrum and palate with right P2–M3 and left P2– M2 in dorsal (A1), palatal (A2), and right lateral (reversed) (A3) views. B. MCNAM-PV 4379, palate with left DC and both series DP2–DP4–M1–M2 in occlusal view. C. MCNAM-PV 3983, right DP3 (C1) and DP4 (C2) (reversed) of the same individual in occlusal view. D. MCNAM-PV 4204, left DP4 in occlusal (D1) and posterior (D2) views. E. MCNAM-PV 4605, left mandibular fragment with remnants of c–p1 and p2–p4 in labial (E1) and occlusal E2) views. F. MCNAM-PV 4719, left mandibular fragment with p4–m3 in occlusal view. G. MCNAM-PV 4721, right mandibular fragment with m1– m3 (reversed) in occlusal view. H. MCNAM-PV 4199, left mandibular fragment with alveoli of anterior teeth and fragments of p2–p3 in occlusal view H1), and associated left m3 in occlusal-labial view (H2). I. MCNAM-PV 4231, left mandibular fragment with p3–p4 in occlusal view. J. MCNAM-PV 4608, left mandibular fragment with m1–m2 in occlusal view. K. MCNAM-PV 4794, associated right premolars (reversed), possible p2 (K1), p3 (K2), and m3 (K3).
Fig. 3 in New craniodental material of the typotherian notoungulates from the upper Oligocene of Mendoza, central-western Argentina and their taxonomical importance
Fig. 3. Lower dentition (anterior to the left) of hegetotheriid notoungulates from Quebrada Fiera, Mendoza, Argentina; upper Oligocene, Deseadan SALMA. A–F. "Prohegetotherium schiaffinoi (Kraglievich, 1932)". A. MCNAM-PV 5076, mandible with left and right p1–m3 in occlusal (A1), ventral (A3), and left labial (A4) views, occlusal detail of left p1–m3 (A2). B. MCNAM-PV 5086, right mandibular fragment with p3–m3 (reversed) in occlusal view. C. MCNAM-PV 5018, left mandibular fragment with p4–m3 in occlusal (C1) and lingual (reversed) (C2) views. D. MCNAM-PV 5019, left mandibular fragment with p4–m3 in occlusal view. E. MCNAM-PV 5083, left mandibular fragment with p3–m3 in occlusal view. F. MCNAM-PV 5022, left mandibular fragment with p4–m2 in occlusal view. G. Hegetotheriopsis sulcatus Kramarz and Paz, 2013, MCNAM-PV 3852, left premolar (p4?) in occlusal view. H, I. Prosotherium garzoni Ameghino, 1897. H. MCNAM-PV 5017, right mandibular fragment with p4–m3 (reversed) in occlusal view. I. MCNAM-PV 4992, right mandibular fragment with p4–m1 (reversed) in occlusal view.
Figura 3. a in Nuevos registros de Pimelodella laticeps Eigenmann, 1917 (Siluriformes, Heptapteridae) y ampliación de su distribución occidental hacia los Andes Centrales de Argentina
Figura 3. a) Mapa de Argentina con la distribución de la especie Pimelodella laticeps (Tomado de Liotta (2005)), b) Mapa hidrográfico de la Provincia de San Juan: se indica el registro previo de Pimelodella laticeps y los nuevos puntos de muestreos en los que se registró la especie.
Figura 2 in Nuevos registros de Pimelodella laticeps Eigenmann, 1917 (Siluriformes, Heptapteridae) y ampliación de su distribución occidental hacia los Andes Centrales de Argentina
Figura 2. Imagen de la especie Pimelodella laticeps (ejemplar conservado), a) vista dorsal, b) vista lateral izquierda. Ejemplar (UNSJ-P1042; 65.98 mm) depositado en la colección científica DIBIOVA.
Figura 1 in Nuevos registros de Pimelodella laticeps Eigenmann, 1917 (Siluriformes, Heptapteridae) y ampliación de su distribución occidental hacia los Andes Centrales de Argentina
Figura 1. Imagen de la especie Pimelodella laticeps (UNSJ-P1043; 55.41mm LS). Figure 1. Image of the species Pimelodella laticeps (UNSJ-P1043; 55.41mm LS).
Figure 3. Daily temperature variation for a in On the oviposition of Homonota aff. darwinii in the Puna region of the Central Andes of Argentina
Figure 3. Daily temperature variation for a potential Homonota aff. darwinii nesting site. Average and standard errors are indicated.
Figure 1. Species and study area. A in On the oviposition of Homonota aff. darwinii in the Puna region of the Central Andes of Argentina
Figure 1. Species and study area. A) Homonota aff. darwinii adult in the Cordillera Frontal of the province of San Juan, Argentina. B) General view of the environment in which Homonota aff darwinii exists in the Puna region of the Central Andes of Argentina.
Fig. 8 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 8. Distribution of the dipterid ferns along the Triassic of Argentina, and their correlation with the inferred climates.
Fig. 5 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 5. Dipterid fern Dictyophyllum menendezi sp. nov. from Cortaderita Formation (Ladinian, Middle Triassic) of Barreal-Calingasta, San Juan Province, Argentina. A. Diagramatic reconstruction of the leaf. B. Sketch drawing of pinnae venation.
Fig. 6 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 6. Dipterid ferns from Barreal-Calingasta, San Juan Province, Argentina. A, D–F. Dictyophyllum tenuifolium Stipanicic and Menéndez, 1949 emend. Bonetti and Herbst, 1964; Cortaderita Formation (Ladinian, Middle Triassic). A. PBSJ 412a. D. PBSJ 1051. E. PBSJ 412b. F. PBSJ 412c. B, C. Hausmannia faltisiana Stipanicic and Menéndez, 1949 emend. herein; Barreal Formation (Anisian, Middle Triassic). B. BAPb 6248. C. BAPb 6254. Scale bars: A, C, D, 10 mm; B, 20 mm; E, F, 5 mm.
Fig. 7 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 7. Dipterid fern Thaumatopteris barrealensis Stipanicic and Menéndez, 1949 from Barreal Formation (Anisian, Middle Triassic) of Barreal-Calingasta, San Juan Province, Argentina. A. BAPb 6263. B. PBSJ 844; general view of the leaf (B1), detail of the pinnulae (B2), detail of the pinnula venation (B3). C. PBSJ 849. Scale bars: A, B1, 10 mm; C, 5 mm; B2, 3 mm; B3, 1 mm.
Fig. 4 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 4. Dipterid fern Dictyophyllum menendezi sp. nov. from Cortaderita Formation (Ladinian, Middle Triassic) of Barreal-Calingasta, San Juan Province, Argentina. A. PBSJ 832, general view of the frond (A1), details of secondary and tertiary veins, and areoles (A2, A3, A4). B. PBSJ 833. C. PBSJ 840. D. PBSJ 836. E. PBSJ 843, sample with apical part of petiole preserved (arrow). Scale bars: A1, D, 20 mm; B, C, E, 10 mm; A2, A3, A4, 5 mm.
Fig. 3 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 3. Dipterid fern Dictyophyllum castellanosi Stipanicic and Menéndez, 1949, from Barreal Formation (Anisian, Middle Triassic) of Barreal-Calingasta, San Juan Province, Argentina. BAPb 6227, part (A) and BAPb 6228 counterpart (B). Scale bars 20 mm.
Fig. 2 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 2. Sedimentological section of the Sorocayense Group (Middle–Late Triassic) in the Barreal area (Cortaderita and La Tinta creeks), showing the stratigraphic distribution of the dipterid ferns and their correlation with the inferred climates.
Fig. 1 in Middle Triassic dipterid ferns from west-central Argentina and their relationship to palaeoclimatic changes
Fig. 1. Geographic location of study area in the San Juan Province, Argentina (A, B). Geologic map showing the sampled localities (asterisks) at Cortaderita and La Tinta creeks, near Barreal (C).
Fig. 1. A in New Early Jurassic gastropods from west-central Patagonia, Argentina
Fig. 1. A. Map of Argentina showing the study area in southwestern Chubut province. B. Location map of southwestern Chubut province showing the localities of the new gastropod fauna in Argentinean Patagonia. Stratigraphical log chart of Lomas de Betancourt (C), Cerro La Trampa (D), and Lomas Occidentales (E). Abbreviations: M, mudstone; CS, coarse sand; FS, fine sand; FCMC, fine conglomerate–medium conglomerate.
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.