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.
553
datasets available to search
ShareScore release 0.9.0
Dataset results
553 results for “PA”
Figures 22-26 from: Ali PA, Maddison WP, Zahid M, Butt A (2018) New chrysilline and aelurilline jumping spiders from Pakistan (Araneae, Salticidae). ZooKeys 783: 1-15. https://doi.org/10.3897/zookeys.783.21985
Figures 22-26 Stenaelurillusmardanicus sp. n., Female paratypes (22 and 23 of specimen PAA#2016-08-120 24–26 of specimen PAA#2015-07-114), 22 body, dorsal view 23 face 24 epigynum, dorsal view 25 cleared epigynum, ventral view 26 cleared epigynum, dorsal view. Scale bars: 0.1 mm. Abbreviations: CO = copulatory opening, CD = copulatory duct, FD = fertilization duct, Sp = spermatheca. Figures 22–26 are copyright ©2017 Pir Asmat Ali and Wayne Maddison, released under a Creative Commons Attribution (CC-BY) 3.0 license.
Figures 5-13 from: Ali PA, Maddison WP, Zahid M, Butt A (2018) New chrysilline and aelurilline jumping spiders from Pakistan (Araneae, Salticidae). ZooKeys 783: 1-15. https://doi.org/10.3897/zookeys.783.21985
Figures 5-13 Menemerusnigli. 5–8 male (PAA#2015-07-081). 5 face 6 dorsal view 7 left palp, ventral view 8 left palp, retrolateral view. 9–13 female (PAA#2015-07-086): 9 face 10 dorsal view 11 epigynum, ventral view 12 epigynum cleared, ventral view 13 copulatory ducts and spermathecae, dorsal view. Scale bars: 0.1 mm (7, 8, 10, 11). At = Atrium, F = fold in wall, CD = copulatory duct, FD = fertilization duct, Sp = spermatheca. Figures 5–13 are copyright ©2017 Pir Asmat Ali and Wayne Maddison, released under a Creative Commons Attribution (CC-BY) 3.0 license.
Figure 1 from: Kistenich S, Rikkinen JK, Thüs H, Vairappan CS, Wolseley PA, Timdal E (2018) Three new species of Krogia (Ramalinaceae, lichenised Ascomycota) from the Paleotropics. MycoKeys 40: 69-88. https://doi.org/10.3897/mycokeys.40.26025
Figure 1 Hypothesis of the phylogenetic relationships and placement of the 15 Krogia accessions. It shows the extended majority-rule consensus tree resulting from the Bayesian MCMC analysis with Bayesian PP ≥ 0.7 (above branch) and/or Garli maximum likelihood BS ≥ 50 (below branch) and branch lengths. Strongly supported branches (PP ≥ 0.95 and BS ≥ 95) are marked in bold; branches with PP ≥ 0.95 and BS ≥ 70 are marked in bold grey; branches only supported by PP ≥ 0.7 are marked with an asterisk above the branch. Bacidiarosella, B.rubella and B.sipmanii were used as outgroup. Scale bar indicates 0.05 changes per site.
Figure 4 from: Kistenich S, Rikkinen JK, Thüs H, Vairappan CS, Wolseley PA, Timdal E (2018) Three new species of Krogia (Ramalinaceae, lichenised Ascomycota) from the Paleotropics. MycoKeys 40: 69-88. https://doi.org/10.3897/mycokeys.40.26025
Figure 4 KrogiamacrophyllaA field photograph of JR36047B field photograph of holotype C herbarium photograph of holotype. Scale bar: 1 mm. Photo: J. Rikkinen (A, B), E. Timdal (C).
Figure 3 from: Kistenich S, Rikkinen JK, Thüs H, Vairappan CS, Wolseley PA, Timdal E (2018) Three new species of Krogia (Ramalinaceae, lichenised Ascomycota) from the Paleotropics. MycoKeys 40: 69-88. https://doi.org/10.3897/mycokeys.40.26025
Figure 3 Krogiaisidiata.A field photograph of JR35688B field photograph of JR35034C herbarium photograph of holotype. Scale bar: 1 mm. Photo: J. Rikkinen (A, B), E. Timdal (C).
Figure 5 from: Kistenich S, Rikkinen JK, Thüs H, Vairappan CS, Wolseley PA, Timdal E (2018) Three new species of Krogia (Ramalinaceae, lichenised Ascomycota) from the Paleotropics. MycoKeys 40: 69-88. https://doi.org/10.3897/mycokeys.40.26025
Figure 5 Habitat images from New Caledonia A Mont Humboldt Nature Reserve, site of K.macrophylla, with AraucariahumboldtensisB Blue River Provincial Park, site of K.isidiata and K.macrophyllaC Mont Mou Nature Reserve, holotype locality of K.macrophylla. Photo: J. Rikkinen.
Figure 2 from: Kistenich S, Rikkinen JK, Thüs H, Vairappan CS, Wolseley PA, Timdal E (2018) Three new species of Krogia (Ramalinaceae, lichenised Ascomycota) from the Paleotropics. MycoKeys 40: 69-88. https://doi.org/10.3897/mycokeys.40.26025
Figure 2 Krogiaborneensis. A Field photograph of the holotype B habitat at type locality C herbarium photograph of holotype. Scale bar: 1 mm. Photo: H. Thüs (A, B), E. Timdal (C).
Figure 2 from: Meerow AW, Silverstone-Sopkin PA, Zuluaga-Tróchez A, Sánchez-Taborda JA (2019) A remarkable new species of Pamianthe (Amaryllidaceae) from the Department of Cauca, Colombia. PhytoKeys 115: 73-82. https://doi.org/10.3897/phytokeys.115.30755
Figure 2 Pamiantheecollis. A Androecium, with staminal cup B Tip of outer tepal, showing apex and adaxial protuberance C Adaxial protuberance, showing glandular papillae D Opened ovary with ovules (ovules in two locules are visible) E Infructescence of living plant F Seeds, showing variation in shape A–D, F photographs by Juan Felipe Ortega-Giraldo, Laboratorio de Imágenes del Postgrado en Ciencias-Biología, Universidad del Valle, Cali, Colombia E photo by Laura Clavijo.
Figure 1 from: Meerow AW, Silverstone-Sopkin PA, Zuluaga-Tróchez A, Sánchez-Taborda JA (2019) A remarkable new species of Pamianthe (Amaryllidaceae) from the Department of Cauca, Colombia. PhytoKeys 115: 73-82. https://doi.org/10.3897/phytokeys.115.30755
Figure 1 Pamiantheecollis. APamiantheecollis growing in its native habitat, on a steep, rocky bank B Base of plant C Habit D Inflorescence E Flower, lateral view F Flower, front view A photo by Fredy Gómez-Ortiz B photo by Laura Clavijo C–F type collection, photographs taken in the field by Jhon A. Sánchez-Taborda.
Figure 4 from: Meerow AW, Silverstone-Sopkin PA, Zuluaga-Tróchez A, Sánchez-Taborda JA (2019) A remarkable new species of Pamianthe (Amaryllidaceae) from the Department of Cauca, Colombia. PhytoKeys 115: 73-82. https://doi.org/10.3897/phytokeys.115.30755
Figure 4 Strict branch and bound parsimony consensus tree of the Clinantheae, based on ITS sequences, with jackknife support values.
Supplementary material 1 from: González-Moreno P, Lazzaro L, Vilà M, Preda C, Adriaens T, Bacher S, Brundu G, Copp GH, Essl F, García-Berthou E, Katsanevakis S, Moen TL, Lucy FE, Nentwig W, Roy HE, Srėbalienė G, Talgø V, Vanderhoeven S, Andjelković A, Arbačiauskas K, Auger-Rozenberg M-A, Bae M-J, Bariche M, Boets P, Boieiro M, Borges PA, Canning-Clode J, Cardigos F, Chartosia N, Cottier-Cook EJ, Crocetta F, D'hondt B, Foggi B, Follak S, Gallardo B, Gammelmo Ø, Giakoumi S, Giuliani C, Fried G, Jelaska LS, Jeschke JM, Jover M, Juárez-Escario A, Kalogirou S, Kočić A, Kytinou E, Laverty C, Lozano V, Maceda-Veiga A, Marchante E, Marchante H, Martinou AF, Meyer S, Michin D, Montero-Castaño A, Morais MC, Morales-Rodriguez C, Muhthassim N, Nagy ZA, Ogris N, Onen H, Pergl J, Puntila R, Rabitsch W, Ramburn TT, Rego C, Reichenbach F, Romeralo C, Saul W-C, Schrader G, Sheehan R, Simonović P, Skolka M, Soares AO, Sundheim L, Tarkan AS, Tomov R, Tricarico E, Tsiamis K, Uludağ A, van Valkenburg J, Verreycken H, Vettraino AM, Vilar L, Wiig Ø, Witzell J, Zanetta A, Kenis M (2019) Consistency of impact assessment protocols for non-native species. NeoBiota 44: 1-25. https://doi.org/10.3897/neobiota.44.31650
: Data type: statistical data
Supplementary material 2 from: González-Moreno P, Lazzaro L, Vilà M, Preda C, Adriaens T, Bacher S, Brundu G, Copp GH, Essl F, García-Berthou E, Katsanevakis S, Moen TL, Lucy FE, Nentwig W, Roy HE, Srėbalienė G, Talgø V, Vanderhoeven S, Andjelković A, Arbačiauskas K, Auger-Rozenberg M-A, Bae M-J, Bariche M, Boets P, Boieiro M, Borges PA, Canning-Clode J, Cardigos F, Chartosia N, Cottier-Cook EJ, Crocetta F, D'hondt B, Foggi B, Follak S, Gallardo B, Gammelmo Ø, Giakoumi S, Giuliani C, Fried G, Jelaska LS, Jeschke JM, Jover M, Juárez-Escario A, Kalogirou S, Kočić A, Kytinou E, Laverty C, Lozano V, Maceda-Veiga A, Marchante E, Marchante H, Martinou AF, Meyer S, Michin D, Montero-Castaño A, Morais MC, Morales-Rodriguez C, Muhthassim N, Nagy ZA, Ogris N, Onen H, Pergl J, Puntila R, Rabitsch W, Ramburn TT, Rego C, Reichenbach F, Romeralo C, Saul W-C, Schrader G, Sheehan R, Simonović P, Skolka M, Soares AO, Sundheim L, Tarkan AS, Tomov R, Tricarico E, Tsiamis K, Uludağ A, van Valkenburg J, Verreycken H, Vettraino AM, Vilar L, Wiig Ø, Witzell J, Zanetta A, Kenis M (2019) Consistency of impact assessment protocols for non-native species. NeoBiota 44: 1-25. https://doi.org/10.3897/neobiota.44.31650
: Data type: Spreadsheet template
Supplementary material 2 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
: Data type: specimens data
Supplementary material 1 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
: Data type: phylogenetic data
Figure 3 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
Figure 3 Species of Phyllopsora occurring in Asia and Melanesia. A Phyllopsoracastaneocincta (Kirika, Mugambi, & Lumbsch 3011) B P.chodatinica (Paukov 2232) C P.cinchonarum (Thor 21521). Scale bars: 2 mm.
Figure 7 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
Figure 7 Species of Phyllopsora occurring in Asia and Melanesia. APhyllopsoraloekoesii (Sharma, Olley & Cross AC5) BP.longiuscula (Weerakoon Kn136) CP.mediocris (holotype, Moberg 1481a-1, Tanzania). Scale bars: 2 mm.
Figure 1 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
Figure 1 Extended majority-rule consensus tree resulting from the MrBayes analysis of the mtSSU and ITS alignment with Bayesian PP ≥ 0.7 and/or IQ-TREE maximum likelihood BS ≥ 50 and branch lengths. Strongly supported branches (PP ≥ 0.95 and BS ≥ 75) are marked in bold; branches only supported with PP ≥ 0.7 or BS ≥ 50 are marked with a dot above the branch. Two species of Biatora were used for rooting. Accessions belonging to the same species are collapsed for convenience. Three clades are distinguished to facilitate the discussion of new species (A, B, C). ch = chemotype.
Figure 9 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
Figure 9 Species of Phyllopsora occurring in Asia and Melanesia. APhyllopsoraporphyromelaena (Kistenich & Weerakoon SK1-572) BP.pseudocorallina sp. nov. (holotype, Kashiwadani 47806) CP.sabahana sp. nov. (holotype, Wolseley, Thüs & Vairappan S.B.oQ.3). Scale bars: 2 mm.
Figure 6 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
Figure 6 Species of Phyllopsora occurring in Asia and Melanesia. APhyllopsorahalei (Weerakoon 1008) BP.isidiosa (Diederich 13210) CP.kalbii (Aguirre, James & Wolseley 2695). Scale bars: 2 mm.
Figure 2 from: Kistenich S, Bendiksby M, Vairappan CS, Weerakoon G, Wijesundara S, Wolseley PA, Timdal E (2019) A regional study of the genus Phyllopsora (Ramalinaceae) in Asia and Melanesia. MycoKeys 53: 23-72. https://doi.org/10.3897/mycokeys.53.33425
Figure 2 Species of Phyllopsora occurring in Asia and Melanesia. APhyllopsoraafricana (Kistenich & Weerakoon SK1-517) BP.breviuscula (Kistenich & Weerakoon SK1-601) CP.buettneri (Thor 13183). Scale bars: 2 mm.
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.