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Fig. 3 in Five new species of Candoninae (Crustacea, Ostracoda) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 3. Limbs of Pseudocandona agostinhoi sp. nov. (♂). A. A2 (MZUSP 32656). B. A2, detail of the last segment (MZUSP 32656). C. A1 (OC. 3302). D. Mx1, respiratory plate (OC. 3302). E. T3 (MZUSP 32655). F. Md, coxal plate (MZUSP 32653). G. T2 (MZUSP 32653). H. T1 (MZUSP 32653). Scale bars: A–H = 50 µm.
Fig. 11 in Five new species of Candoninae (Crustacea, Ostracoda) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 11. Limbs of Candobrasilopsis elongata sp. nov. (♂). A. Left prehensile palp (MZUSP 32685). B. Right prehensile palp (MZUSP 32685). C. Md palp (MZUSP 32685). D. Attachment of the caudal ramus (MZUSP 32685). E. Caudal ramus (MZUSP 32685). F. Hemipenis (MZUSP 32685). Scale bars: A–E = 50 µm; F = 100 µm.
Fig. 10 in Five new species of Candoninae (Crustacea, Ostracoda) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 10. Valves of Candobrasilopsis elongata sp. nov. A–F ♂ and G–L ♀. A, G. LV, internal view (A = MZUSP 32687, G = MZUSP 32686). B, H. RV, internal view (B = MZUSP 32687, H = MZUSP 32686). C, I. Cp, right lateral view (C = MZUSP 32690, I = MZUSP 32699). D, J. Cp, right lateral view detail (D = MZUSP 32690, J = MZUSP 32699). E, K. Cp, dorsal view (E = MZUSP 32692, K = MZUSP 32696). F, L. Cp, ventral view (F = MZUSP 32691, L = MZUSP 32697). Scale bars: A–C, E–I, K–L = 500 µm; D, J = 20 µm.
Fig. 2 in Five new species of Candoninae (Crustacea, Ostracoda) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 2. Valves of Pseudocandona agostinhoi sp. nov. A–E ♂ and F–J ♀. A, F. LV, internal view (A = MZUSP 32655, F = OC. 3303). B, G. RV, internal view (B = MZUSP 32655, G = OC. 3303). C, H. Cp, right lateral view (C = MZUSP 32660, H = MZUSP 32667). D, I. Cp, dorsal view (D =MZUSP 32661, I = MZUSP 32668). E, J. Cp, ventral view (E = OC. 3304, J = OC. 3305). Scale bars: A–J = 500 µm.
Fig. 13 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 13. Candobrasilopsis brasiliensis (Sars, 1901) comb. nov., hemipenis. A. MZUSP.28117. B. OC.3295. C. OC.3296. D. MZUSP.28120. E. MZUSP.28121. F. MZUSP.28122. G. MZUSP.28123. H. MZUSP.28124. Scale bars: A-F = 50 µm.
Fig. 12 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 12. Candobrasilopsis brasiliensis (Sars, 1901) comb. nov., limbs (♀). A. Caudal ramus (MZUSP.28125). B. Attachment of the caudal ramus (MZUSP.28125). C. T1 (OC.3300). D. T3 (OC.3300). E. T2 (MZUSP.28125). F. Mx1, respiratory plate (OC.3299). Scale bars: A-F = 50 µm.
Fig. 9 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 9. Candobrasilopsis brasiliensis (Sars, 1901) comb. nov., limbs (³). A. A2 (MZUSP.28117). B. A2, detail of the last segment (MZUSP.28117). C. A1 (MZUSP.28117). D. Md palp (MZUSP.28117). E. Mx1 (Chaetotaxy incomplete) (OC.3296). F. Md, coxal plate (MZUSP.28117). Scale bars: A-F = 50 µm.
Fig. 6 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 6. Candobrasilopsis rochai gen. nov. sp. nov., limbs (♀). A. T3 (OC.3292). B. Attachment of the caudal ramus (MZUSP.28110). C. T2 (MZUSP.28109). D. Caudal ramus (OC.3292). E. Mx1 (Chaetotaxy incomplete) (OC.3292). F. T1 (MZUSP.28111). Scale bars: A-F = 50 µm.
Fig. 5 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 5. Candobrasilopsis rochai gen. nov. sp. nov., limbs (♀). A. A2 (MZUSP.28110). B. Md palp (OC.3292). C. A1 (OC.3292). D. Md, coxal plate (MZUSP.28109). E. Mx1, respiratory plate (MZUSP.28116). Scale bars: A-E = 50 µm.
Fig. 3 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 3. Candobrasilopsis rochai gen. nov. sp. nov., limbs (³). A. A1 (MZUSP.28102). B. A2 (MZUSP. 28114). C. Md palp (MZUSP.28114). D. Md, coxal plate (MZUSP.28114). E. Mx1 (Chaetotaxy incomplete) (MZUSP.28105). F. Mx1, respiratory plate (MZUSP.28114). G. Attachment of the caudal ramus (MZUSP.28104). Scale bars: A-G = 50 µm.
Fig. 2 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 2. Candobrasilopsis rochai gen. nov. sp. nov., valves (A-F ³ and G-K ♀). A, G. LV, internal view (A: MZUSP.28113, G: MZUSP.28103). B, H. RV, internal view (B: MZUSP.28113, H: MZUSP.28103). C, I. Cp, right lateral view (C: OC.3291, I: OC.3293). D, J. Cp, dorsal view (D: MZUSP.28106, J: MZUSP.28112). E, F, K. Cp, ventral view (E: MZUSP.28108, F: MZUSP.28107, K: OC.3294). Scale bars: A-D = 200 µm; E, F = 250 µm; G, H = 400 µm, I-K = 300 µm.
Fig. 1 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 1. Map of the area, indicating localities of Candobrasilopsis rochai gen. nov. sp. nov. and C. brasiliensis (Sars, 1901) comb. nov. were collected. Detailed occurrences are indicated in Table 1. Locality 13 (samples PAR193 and PAR195) is the type locality of C. rochai gen. nov. sp. nov.
Figure 6 in Biodiversity of the scentless plant bugs (Hemiptera: Rhopalidae) in southern South America
Figure 6. Distribution of Jadera Stål species in Argentina. Pale colour: known distributions. The number of known species for each province is provided, with an asterisk indicating the number of newly recorded species.
Figure 1 in Biodiversity of the scentless plant bugs (Hemiptera: Rhopalidae) in southern South America
Figure 1. Distribution of Liorhyssus Stål species in Argentina. Pale colour: known distributions; dark colour: new distributions. The number of known species for each province is provided, with an asterisk indicating the number of newly recorded species.
Figure 7 in Biodiversity of the scentless plant bugs (Hemiptera: Rhopalidae) in southern South America
Figure 7. Known records for the species of Rhopalidae from Argentina over the years (cumulative relative frequencies 0–100%).
Figure 5 in New species of Orasema (Hymenoptera: Eucharitidae) from Central and South America
Figure 5. (a–c) Orasema longinoi sp. nov. ♀ holotype: (a) habitus; (b) head and mesosoma; (c) face. (d) O. longinoi ♂: habitus.
Figure 4 in New species of Orasema (Hymenoptera: Eucharitidae) from Central and South America
Figure 4. (a–b) Orasema peckorum sp. nov. ♀ holotype: (a) habitus; (b) head and mesosoma. (c) O. peckorum ♂: habitus. (d–e) Orasema vasquezi, sp. nov., ♀ holotype: (d) habitus; (e) face. (f–g) O. masneri sp. nov., ♀ holotype: (f) habitus; (g) ovipositor, lateral view.
Figure 3 in New species of Orasema (Hymenoptera: Eucharitidae) from Central and South America
Figure 3. (a–c) Orasema lasallei sp. nov. ♀ holotype: (a) head; (b) mouthparts (c) head and mesosoma. (d) O. lasallei ♂, head and mesosoma. (e–f) Orasema janzeni sp. nov. ♀ holotype: (e) head and mesosoma; (f) lower face. (g) O. janzeni ♂: habitus.
Conversion of measurements of tree ring gains: Canada, Africa, Mexico, South America from RWL- files to JSON format.
<p>The International Tree Rings Data Bank (ITRDB) is the most comprehensive tree growth database (https://www1.ncdc.noaa.gov/pub/data/paleo/treering).</p> <p>Shoudong Zhao, et al. (2019, 2018) analyzes the representativity of dendrochronological data (ITRDB) and proposes a corrected database with error indications. One of the bottlenecks of data use (ITRDB) is that the data is loaded as a collection of separate files in the Tucson positional format.</p> <p>The purpose of our data presentation is to change the Tucson data format to JSON format and combine the separate files into one.</p> <p>We convert the initial data for the <strong>Canada</strong>, <strong>Africa</strong>, <strong>Mexico</strong> and <strong>Southamerica</strong> rwl-files into Json format of data on tree growth in four files: <strong>canada.json</strong>, <strong>africa.json</strong>, <strong>mexico.json</strong> and <strong>southamerica.json</strong>. The data was converted using the R programming language and the dplR program library Bunn, A. (2008)</p> <p>The experience of developing the structure of dendroclimatic data in JSON format is described in the works of Kachaev A. (2016, 2017, 2020).</p> <p>Description of the structure of JSON data format is attached in the files ReadMe.pdf</p> <p> </p> <p>References</p> <p>Bunn, A. G. (2008). A dendrochronology program library in R (dplR). Dendrochronologia, 26, 115-124. https://doi.org/10.1016/j.dendro.2008.01.002</p> <p>Kachaev, Alexander (2020), "Compact dataset of dendrochronological data of pri-mary metric characteristics of tree rings of Asia.", Mendeley Data, V1, doi: 10.17632 / p9zhpmzgtk.1</p> <p>Kachaev A. V. (2017) Model for describing the structure of dendroclimatic data In the collection: Regional problems of remote sensing of the Earth Materials of the IV international scientific conference. Siberian Federal University, Institute of Space and Information Technologies. p. 120-122. (Russia)</p> <p>Kachaev A. V. (2016) NOSQL Approach for Development of Dendroclimatic Data Bank. In the collection: Regional problems of remote sensing of the Earth. Materials of the III International Scientific Conference. p. 89-91. (Russia)</p> <p>Shoudong Zhao, et al. (2019). The International Tree-Ring Data Bank (ITRDB) revisited: Data availability and global ecological representativity. Journal of Biogeography, 46 (2), 355-368. doi: 10.1111 / jbi.13488</p> <p>Zhao, Shoudong et al. (2018), Data from: The International Tree-Ring Data Bank (ITRDB) revisited: data availability and global ecological representativity, Dryad, Dataset, https://doi.org/10.5061/dryad.kh0qh06</p>
Figure 2 in New records of the water mite genus Arrenurus Dugès, 1834 from South America (Acari: Hydrachnidia: Arrenuridae), with the description of five new species and one new subspecies
Figure 2 Arrenurus rotundus (Daday), male. A – dorsum; B – venter; C – palp; D – palp. Arrenurus minimus (Daday), female, Rio Cuminá, Brazil, slide 7343 Viets coll. (slide 43137 SMF). E – palp. Scale bars: A, B = 100 µm, C-E = 50 µm.
ScienceDex guides
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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.