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.
2,399
datasets available to search
ShareScore release 0.7.1
Dataset results
2,399 results for “fragmentation”
Figure 3 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 3. Mean abundance of mosquitoes collected in oviposition traps in three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil Means followed by the same letter do not differ by the Tukey test at <0.05. Vertical bars denote 1±SD. / Abundancia media de mosquitos recolectados en trampas de oviposición en tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil. Las medias seguidas por la misma letra no difieren por la prueba de Tukey en <0,05. Las barras verticales denotan 1 ± SD.
Figure 1 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 1. Location of three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil. URB: forest fragment located in the urban area of the city of Panambi-RS. RUR: forest fragment located in the rural area close to the urban area of Panambi-RS. NAT: forest fragment located in the rural area far from urban area of the city of Pejuçara-RS. / Ubicación de tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil. URB: fragmento de bosque ubicado en el casco urbano de la ciudad de Panambi-RS. RUR: fragmento de bosque ubicado en el área rural cercana al área urbana de Panambi-RS. NAT: fragmento de bosque ubicado en el área rural alejada del área urbana de la ciudad de Pejuçara-RS.
Figure 2 in Mosquitoes (Diptera: Culicidae) in oviposition traps set in forest fragments of a semideciduous seasonal forest, Atlantic Forest domain, in the state of Rio Grande do Sul, Brazil
Figure 2. Cluster analysis (Morisita–Horn index) of the mosquitoes collected in oviposition traps in three fragments of a semideciduous seasonal forest in the northwestern region of the state of Rio Grande do Sul, Brazil. / Análisis de conglomerados (Índice Morisita-Horn) de los mosquitos recolectados en trampas de oviposición en tres fragmentos de un bosque estacional semideciduo en la región noroeste del estado de Rio Grande do Sul, Brasil.
Figure 1 in Notes on the nest architecture of Centris (Centris) caxiensis Ducke (Hymenoptera: Apidae) in an urban dry forest fragment in northeastern Brazil
Figure 1. Main characteristics of the nesting habits of Centris caxiensis. (a) General view of nest site; (b) Excavated nest; (c) Females cleaning nest entrance; (d) Females digging the nest (arrow 1: brood cell; arrow 2: nest entrance).
Figure 2 in Notes on the nest architecture of Centris (Centris) caxiensis Ducke (Hymenoptera: Apidae) in an urban dry forest fragment in northeastern Brazil
Figure 2. Nest features of Centris caxiensis. (a) Nest with a single brood cell; (b), Unfinished nest; (c) Nest with two brood cells; (d) Brood cell: 1-sand filling tunnel; 2- nest entrance; 3-curvature in the tunnel; 4-unfinished cell; 5- central process.
Figure 1 in Faunistic analysis of fruit flies (Diptera: Tephritidae) in a guava orchard and semideciduous forest fragment in Central-West Region of Brazil
Figure 1. Number of female specimens of the six more abundant species (top) and seven less abundant species (bottom) of fruit flies caught with McPhail traps, in a fragment of semideciduous forest, and in a commercial orchard of guava in Itaporã, MS, Brazil, from 2008 to 2009.
Figure 6. A-B in Two new species of Anaulacodesmus Attems, 1898 (Polydesmida: Dalodesmidae) from temperate forest fragments in southern Chile
Figure 6. A-B. Gonopods of Anaulacodesmus picassovallebuonai sp. nov. (not to scale). A. posterior view. B. Anterior view. / A-B. Gonópodos de Anaulacodesmus picassovallebuonai sp. nov. (no tomado a escala). A. vista posterior. B. Vista anterior.
Figure 3. A-C in Two new species of Anaulacodesmus Attems, 1898 (Polydesmida: Dalodesmidae) from temperate forest fragments in southern Chile
Figure 3. A-C. Gonopods of Anaulacodesmus panterae sp. nov. (not to scale). A. Posterior view. B. Lateral view. C. Anterior view. Base of right gonopod slightly damage with a transversal cut. / A-C. Gonópodos de Anaulacodesmus panterae sp. nov. (no tomado a escala). A. Vista posterior. B. Vista lateral. C. Vista anterior. Base del gonópodo derecho levemente dañada con un corte transversal.
Figure 1 in Two new species of Anaulacodesmus Attems, 1898 (Polydesmida: Dalodesmidae) from temperate forest fragments in southern Chile
Figure 1. Anaulacodesmus panterae sp. nov., paratypes, lateral view, top: female, bottom: male. Scale: 4.0 mm. / Anaulacodesmus panterae sp. nov., paratipos, vista lateral, arriba: hembra, abajo: macho. Escala: 4,0 mm.
Figure 2 in Two new species of Anaulacodesmus Attems, 1898 (Polydesmida: Dalodesmidae) from temperate forest fragments in southern Chile
Figure 2. Anaulacodesmus panterae sp. nov. A. Habitat. B-C. Habitus. / Anaulacodesmus panterae sp. nov. A. Hábitat. B-C. Hábito.
Figure 1 in Microhabitats and fragmentation effects on a ground beetle community (Coleoptera: Carabidae) in a mountainous beech forest landscape
Figure 1. Jamiško Osoe study area with 3 localities (A, B, and C) and transects T1–T7 (gray color represents beech forests, black – potato fields, and white – mountain pastures and forest clearings).
Figure 2 in Microhabitats and fragmentation effects on a ground beetle community (Coleoptera: Carabidae) in a mountainous beech forest landscape
Figure 2. Variation of the average beetle abundance (ind. trap–1) between a) microhabitats, b) months, and c) fragments.
Figure 1Sampling site and stations.1A in Living in the sunlight: micro-environments with higher exposure of sunlight have more abundance and diversity of Hymenoptera in a Brazilian Atlantic Forest fragment
Figure 1Sampling site and stations.1A) Study area including the RAPELD modules.Each black point represents a permanent plot.1B) Trap-nest stations and selected micro-environments: treefall gap (A), placed in wooden post at 1.5m height; understory (B), placed in a tree branch at approximately 1.5 meters height; canopy (C), suspended with thread in a tree (height between 19.0 and 9.1 meters).
Figure 2 in Living in the sunlight: micro-environments with higher exposure of sunlight have more abundance and diversity of Hymenoptera in a Brazilian Atlantic Forest fragment
Figure 2 Interpolation curves of the richness and diversity of trap-nesting Hymenoptera (Atlantic forest, Brazil) in relation to the lowest observed abundance brood cells sampled and assessed for three Hill numbers (0, 1 e 2). CAN= canopy; GAP= treefall gap; UND= Understory.
Fig. 2 in Sharing of termites (Blattodea: Isoptera) between sugarcane matrices and Atlantic Forest fragments in Northeast Brazil
Fig. 2. Species richness (A) and number of termite encounters (B) per food group of two Atlantic Forest fragments and adjacent sugarcane fields of two plantations in Northeast Brazil.Us., Usina; AF, Atlantic Forest; S, sugarcane field; I, feeding group I; II, feeding group II; III, feeding group III; IV, feeding group IV (Donovan et al., 2001).
Fig. 1 in Sharing of termites (Blattodea: Isoptera) between sugarcane matrices and Atlantic Forest fragments in Northeast Brazil
Fig. 1. Non-metric multidimensional scaling for termite assemblages of two Atlantic Forest fragments and adjacent sugarcane plantations. Usina são João (A) and Usina São José (B). •, Atlantic Forest. Δ, sugarcane field.
Fig. 91. A mandible fragment with a partial m2 and complete m3 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 91. A mandible fragment with a partial m2 and complete m3 referred to Pygmaetitan panxianensis (IVPP V6524). (A) Dorsal view, (B), left (labial) view, (C) medial (lingual) view.
Fig. 4 in Herpetofauna of Marechal Newton Cavalcanti Instruction Center, a hotspot Atlantic Forest fragment in Pernambuco, north-eastern Brazil
Fig. 4. Testudines, amphisbaenians, and crocodilians found in the Marechal Newton Cavalcanti Instruction Center Atlantic Forest fragment. (A) Phrynops geoffroanus (Schweigger, 1812); (B) Kinosternon scorpioides (Linneaus, 1766); (C) Mesoclemmys tuberculata (Lüederwalt, 1926); (D) Amphisbaena vermiculares (Wagler, 1824); (E) Amphisbaena alba (Liennaeus, 1758); (F) Caiman latirostris (Daudin, 1802); (G) Paleosuchus palpebrosus (Cuvier, 1807). Photos: M.A. Freitas.
Fig. 7 in Herpetofauna of Marechal Newton Cavalcanti Instruction Center, a hotspot Atlantic Forest fragment in Pernambuco, north-eastern Brazil
Fig. 7. Comparative evaluation of the sampling methods for anurans and reptiles recorded at Marechal Newton Cavalcanti Instruction Center (CMNIC) Atlantic Forest fragment, from August 2008 through December 2009.
Fig. 3 in Herpetofauna of Marechal Newton Cavalcanti Instruction Center, a hotspot Atlantic Forest fragment in Pernambuco, north-eastern Brazil
Fig. 3. Additional anuran species found in the Marechal Newton Cavalcanti Instruction Center Atlantic Forest fragment. (A) Boana crepitans (Wied-Neuwied, 1824); (B) Leptodactylus troglodytes (A. Lutz, 1926); (C) Leptodactylus natalensis (A. Lutz, 1930); (D) Dendropsophus branneri (Cochran, 1948); (E) Boana faber (Wied-Neuwied, 1821); (F) Boana raniceps (Cope, 1862); (G) Boana semilineatus (Spix, 1824); (H) Boana albomarginatus (Spix, 1824); (I) Leptodactylus latrans (Linneaus, 1758); (J) Leptodactylus marmoratus (Steindachner, 1867); (K) Leptodactylus mystacinus (Burmeister, 1861); (L) Leptodactylus fuscus (Schneider, 1799); (M) Leptodactylus vastus (A. Lutz, 1930); (N) Physalaemus cuvieri (Cruz and Pimenta, 2004); (O) Dendropsophus haddadi (Bastos and Pombal, 1996); (P) Dendropsophus minutus (Peters, 1872). Photos: M.A. Freitas.
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.