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.
2,402
datasets available to search
ShareScore release 0.7.1
Dataset results
2,402 results for “East Asia”
Fig. 2 50 in Molecular phylogeny of the endemic fern genera Cyrtomidictyum and Cyrtogonellum (Dryopteridaceae) from East Asia
Fig. 2 50% majority rule consensus tree from four Bayesian analyses of 1,000,000 generations each of the rbcL data set, excluding burn-in trees. Posterior probability support values ≥ 0.90 from Bayesian analyses shown above branches, bootstrap support values>50% from Maximum Likelihood analyses below branches
Fig. 5 in Molecular phylogeny of the endemic fern genera Cyrtomidictyum and Cyrtogonellum (Dryopteridaceae) from East Asia
Fig. 5 Consensus tree resulting from Bayesian analysis of the combined (rbcL, atpB, rps4-trnS, and trnL-trnF) data set. Numbers on branches are Bayesian (PP)/Maximum Likelihood (BS) support values
Fig. 4 50 in Molecular phylogeny of the endemic fern genera Cyrtomidictyum and Cyrtogonellum (Dryopteridaceae) from East Asia
Fig. 4 50% majority rule consensus tree from Bayesian analyses of the three-gene (rbcL, rps4-trnS, and trnL-trnF) data set. Numbered solid circles indicate nodes receiving good support in both Bayesian (PP ≥ 0.90) and Maximum Likelihood (BS ≥ 70) analyses; open circles indicate nodes not receiving good support from either mea- sure; see also Figure 3. Single letters in dark and light grey squares on branches refer to synapomorphic indels in the rps4-trnS and trnL-trnF alignments, respectively. "P" denotes polystichoid ferns; major groups also indicated at right
Fig. 3 in Molecular phylogeny of the endemic fern genera Cyrtomidictyum and Cyrtogonellum (Dryopteridaceae) from East Asia
Fig. 3 Support values for major clades. Each row corresponds to a clade receiving either Bayesian posterior probability (PP)≥ 0.50 or Maximum Likelihood bootstrap support (BS)≥ 50% from single- or multiple-gene data sets. Clades 01–14 were resolved in the three-gene combined analysis and correspond to the numbered nodes in Figure 4. The remaining clades were supported in different single-gene data sets; their composition is indicated in terms of nodes resolved in the combined
Supplementary material 4 from: Pham NQ, Barnes I, Chen S, Pham TQ, Lombard L, Crous PW, Wingfield MJ (2018) New species of Cylindrocladiella from plantation soils in South-East Asia. MycoKeys 32: 1-24. https://doi.org/10.3897/mycokeys.32.23754
Figure S4. Phylogenetic tree based on maximum likelihood (ML) analysis of ITS sequence alignments : Explanation note: Bootstrap value ≥ 60 % for maximum parsimony (MP) and ML analyses are indicated at the nodes. Bootstrap values lower than 60 % are marked with "*" and absent are marked with "–". Isolates representing ex–type material are marked with "T" and isolates collected in this study are highlighted in bold. Calonectria brachiatica (CMW 25307) and Calonectria pauciramosa (CMW 5683) represent the outgroups.
Supplementary material 1 from: Pham NQ, Barnes I, Chen S, Pham TQ, Lombard L, Crous PW, Wingfield MJ (2018) New species of Cylindrocladiella from plantation soils in South-East Asia. MycoKeys 32: 1-24. https://doi.org/10.3897/mycokeys.32.23754
Figure S1. Phylogenetic tree based on maximum likelihood (ML) analysis of his3 sequence alignments : Explanation note: Bootstrap value ≥ 60 % for maximum parsimony (MP) and ML analyses are indicated at the nodes. Bootstrap values lower than 60 % are marked with "*" and absent are marked with "–". Isolates representing ex–type material are marked with "T" and isolates collected in this study are highlighted in bold. Calonectria brachiatica (CMW 25307) and Calonectria pauciramosa (CMW 5683) represent the outgroups.
Supplementary material 3 from: Pham NQ, Barnes I, Chen S, Pham TQ, Lombard L, Crous PW, Wingfield MJ (2018) New species of Cylindrocladiella from plantation soils in South-East Asia. MycoKeys 32: 1-24. https://doi.org/10.3897/mycokeys.32.23754
Figure S3. Phylogenetic tree based on maximum likelihood (ML) analysis of tub2 sequence alignments : Explanation note: Bootstrap value ≥ 60 % for maximum parsimony (MP) and ML analyses are indicated at the nodes. Bootstrap values lower than 60 % are marked with "*" and absent are marked with "–". Isolates representing ex–type material are marked with "T" and isolates collected in this study are highlighted in bold. Calonectria brachiatica (CMW 25307) and Calonectria pauciramosa (CMW 5683) represent the outgroups.
Supplementary material 2 from: Pham NQ, Barnes I, Chen S, Pham TQ, Lombard L, Crous PW, Wingfield MJ (2018) New species of Cylindrocladiella from plantation soils in South-East Asia. MycoKeys 32: 1-24. https://doi.org/10.3897/mycokeys.32.23754
Figure S2. Phylogenetic tree based on maximum likelihood (ML) analysis of tef1 sequence alignments : Explanation note: Phylogenetic tree based on maximum likelihood (ML) analysis of tef1 sequence alignments. Bootstrap value ≥ 60 % for maximum parsimony (MP) and ML analyses are indicated at the nodes. Bootstrap values lower than 60% are marked with "*" and absent are marked with "–". Isolates representing ex–type material are marked with "T" and isolates collected in this study are highlighted in bold. Calonectria brachiatica (CMW 25307) and Calonectria pauciramosa (CMW 5683) represent the outgroups.
FIGURES 15–17 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 15–17. Paraindopamphantus bruneiensis, holotype female: 15, spermatheca; 16,17, ovipositor. Abbreviations: ga, gonangulum; 1gpo, 2gpo, first and second gonapophysis; 1gx, 2gx, first and second gonocoxa; 1r, 2r, first and second ramus; sb, spermathecal bulb; spd, spermathecal duct.
FIGURES 1–2 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 1–2. Paraindopamphantus bruneiensis, holotype female: 1, habitus, dorsal view; 2, habitus, lateral view.
FIGURES 9–10 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 9–10. Paraindopamphantus bruneiensis, holotype female: 9, part of thorax and abdomen, ventral view; 10, abdominal dorsum. sgs, scent gland scar; sgsp, scent gland spout; II–VII, abdominal tergites.
FIGURES 20–21 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 20–21. Paraindopamphantus bruneiensis, fifth instar nymph: 20, head, dorsal view; 21, right antenna.
FIGURES 18–19 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 18–19. Paraindopamphantus bruneiensis, fifth instar nymph: 18, dorsal view; 19, lateral view; ms, mesonotal swelling; psp, pronotal spines; tas, thoracic-abdominal swelling; wp, wing pad.
FIGURES 13–14 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 13–14. Paraindopamphantus bruneiensis, holotype female, abdominal venter. tr, trichobothria; III–V, abdominal sternites.
FIGURES 11–12 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 11–12. Paraindopamphantus bruneiensis, holotype female: 11, abdominal terga; 12, abdomen, lateral view. sgs, scent gland scar; sp, spiracle; II–VII, abdominal tergites.
FIGURES 5–6 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 5–6. Paraindopamphantus bruneiensis, holotype female: 5, head, ventral view; 6, gular swelling, enlarged. gs, gular swelling.
FIGURES 7–8 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 7–8. Paraindopamphantus bruneiensis, holotype female: 7, meso- and metathoracic area, lateral view; 8, posterior part of thorax and abdomen, dorsal view. sgsp, scent gland spout; ssp, scutellar spine.
FIGURES 3–4 in ParaindOPaMPHantus bruneiensis gen. nov. et sp. nov., as the first representative of the subfamily Pamphantinae from South East Asia (Hemiptera: Heteroptera: Geocoridae: Pamphantinae: Indopamphantini)
FIGURES 3–4. Paraindopamphantus bruneiensis, holotype female: 3, head and pronotum, dorsal view; 4, head and part of pronotum, lateral view. gs, gular swelling.
FIGURES 7‒16 in A new genus and species of praying mantis (Insecta, Mantodea, Mantidae) from Indochina, with a key to Mantidae of South-East Asia
FIGURES 7‒16. Mekongomantis quinquespinosa, morphological details of males. 7. Head, anterior view. 8. Pronotum, dorsal view. 9. Forecoxa, anterior view. 10. Forefemur, posterior view. 11. Subgenital plate. 12. Supra-anal plate and cercus. 13. Left phallomere in dorsal view. 14 & 15. Phalloid apophyses of male paratypes. 16. Apical process in lateral view. Scale bars: a, 5 mm; b‒e, 1 mm.
FIGURES 4‒6 in A new genus and species of praying mantis (Insecta, Mantodea, Mantidae) from Indochina, with a key to Mantidae of South-East Asia
FIGURES 4‒6. Hieroduline male genitalia in ventral view. 4. Mekongomantis quinquespinosa, holotype. 5. Hierodula patellifera from the Philippines. 6. Camelomantis sp. from Myanmar. Not to scale.
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.