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.
242
datasets available to search
ShareScore release 0.9.0
Dataset results
242 results for “232”
Figs. 230–233. Lampona superbus, new species. 230. Left male palp, ventral view. 231. Same, retrolateral view. 232. Epigynum, ventral view. 233 in A Relimitation And Revision Of The Australasian Ground Spider Family Lamponidae (Araneae: Gnaphosoidea)
Figs. 230–233. Lampona superbus, new species. 230. Left male palp, ventral view. 231. Same, retrolateral view. 232. Epigynum, ventral view. 233. Same, dorsal view.
FIGURES 232–246 in Three new genera of soft-bodied goblin spiders (Araneae, Oonopidae) from Mexico, Belize, and Guatemala
FIGURES 232–246. Guatemoonops rhino, new species, male (232–240), and G. jaba, new species, female (241–246). 232. Habitus, dorsal view. 233. Carapace, lateral view. 234. Sternum, ventral view. 235. Palp, prolateral view. 236. Same, dorsal view. 237. Same, retrolateral view. 238. Mouthparts, ventral view. 239. Bulb, dorsal view. 240. Embolus, anterodorsal view. 241. Carapace, dorsal view. 242. Same, anterior view. 243. Abdomen, lateral view. 244. Epigastric area, ventral view. 245. Genitalia, same. 246. Same, dorsal view.
FIGURES 232–242 in The Goblin Spider Genus Costarina (Araneae, Oonopidae), Part 2: the Costa Rican fauna
FIGURES 232–242. Costarina watina (Chickering), male (232–237) and female (238–242). 232. Left palp, prolateral view. 233. Same, ventral view. 234. Same, retrolateral view. 235. Left embolus, prolateral view. 236. Same, ventral view. 237. Same, retrolateral view. 238. Sternum, ventral view. 239. Abdomen, lateral view. 240. Same, ventral view. 241. Digested female genitalia, ventral view. 242. Same, dorsal view.
FIGURES 218–232 in The Neotropical goblin spiders of the new genus Varioonops (Araneae, Oonopidae)
FIGURES 218–232. Varioonops tortuguero, new species, male (218–226) and female (227–232). 218. Habitus, dorsal view. 219. Carapace, lateral view. 220. Sternum, ventral view. 221. Abdomen, lateral view. 222. Same, ventral view. 223. Same, anterior view. 224. Palp, prolateral view. 225. Same, dorsal view. 226. Same, retrolateral view. 227. Carapace, anterior view. 228. Sternum, ventral view. 229. Abdomen, anterior view. 230. Same, dorsal view. 231. Same, ventral view. 232. Genitalia, dorsal view.
Figs. 230–240. Elytral middiscal setal tufts. 230. Aphelocerus yungas. 231. A. improcerus. 232. A. domus. 233. A. turnbowi. 234. A. nitidus. 235. A. acuticolis. 236. A. scalenus. 237. A. nitidus. 238. A. cohibilis. 239. A. sabulosus. 240. A in Classification, Natural History, And Evolution Of The Genus Aphelocerus Kirsch (Coleoptera: Cleridae: Clerinae)
Figs. 230–240. Elytral middiscal setal tufts. 230. Aphelocerus yungas. 231. A. improcerus. 232. A. domus. 233. A. turnbowi. 234. A. nitidus. 235. A. acuticolis. 236. A. scalenus. 237. A. nitidus. 238. A. cohibilis. 239. A. sabulosus. 240. A. sculptillus.
Figs. 232–260 in Slime-Mold Beetles Of The Genus Agathidium Panzer In North And Central America, Part Ii. Coleoptera: Leiodidae
Figs. 232–260. Agathidium oniscoidesgroup species, aedeagus: 232–235, A. tribulosum: 232, ventral; 233, median lobe, apex, ventral; 234, median lobe, lateral; 235, left lateral lobe, lateral. 236–239, A. tribulograndum: 236, ventral; 237, median lobe, apex, ventral; 238, median lobe, lateral; 239, left lateral lobe, lateral. 240–243, A. invisitatum: 240, ventral; 241, median lobe, apex, ventral; 242, median lobe, lateral; 243, left lateral lobe, lateral. 244–247, A. multidentatum: 244, ventral; 245, median lobe,
FIGURES 218–232 in Tarsal Organ Morphology and the Phylogeny of Goblin Spiders (Araneae, Oonopidae), With Notes on Basal Genera
FIGURES 218–232. Dalmasula lorelei, new species, female. 218. Carapace, dorsal view. 219. Same, lateral view. 220. Same, anterior view. 221. Chelicerae, anterior view. 222. Same, posterior view. 223. Labium and endites, ventral view. 224. Labrum and endites, dorsal view. 225. Serrula, ventral view. 226. Same, dorsal view. 227. Sternum, ventral view. 228. Epigastric region, ventral view. 229. Genitalia, dorsal view. 230. Spinnerets, ventral view. 231. Same, apical view. 232. Anterior lateral spinneret, apical view.
Figs. 229–236. Simlops bodanus, male. 229. Cephalothorax, dorsal view. 230. Same, anterior view. 231. Same, ventral view. 232. Same, lateral view. 233. Abdomen, ventral view. 234. Left palp, prolateral view. 235. Same, dorsal view. 236 in Simlops, A New Genus Of Goblin Spiders (Araneae: Oonopidae) From Northern South America
Figs. 229–236. Simlops bodanus, male. 229. Cephalothorax, dorsal view. 230. Same, anterior view. 231. Same, ventral view. 232. Same, lateral view. 233. Abdomen, ventral view. 234. Left palp, prolateral view. 235. Same, dorsal view. 236. Same, retrolateral view.
Figs. 231–234. Desognaphosa tyson, new species. 231. Left male palp, ventral view. 232. Same, retrolateral view. 233. Epigynum, ventral view. 234 in A Revision Of The Australasian Ground Spiders Of The Families Ammoxenidae, Cithaeronidae, Gallieniellidae, And Trochanteriidae (Araneae: Gnaphosoidea)
Figs. 231–234. Desognaphosa tyson, new species. 231. Left male palp, ventral view. 232. Same, retrolateral view. 233. Epigynum, ventral view. 234. Same, dorsal view.
Figs. 231–233. Femoracoelotes platnicki Wang and Ono. 231. Male palp, prolateral view. 232. Carapace, front view. 233 in A Generic-Level Revision Of The Spider Subfamily Coelotinae (Araneae, Amaurobiidae)
Figs. 231–233. Femoracoelotes platnicki Wang and Ono. 231. Male palp, prolateral view. 232. Carapace, front view. 233. Chelicera, ventral view.
FIGURE 232 in Systematic Revision Of The Asian Forest Scorpions (Heterometrinae Simon, 1879), Revised Suprageneric Classification Of Scorpionidae Latreille, 1802, And Revalidation Of Rugodentidae Bastawade Et Al., 2005
FIGURE 232. Srilankametrus couzijni, sp. nov., holotype ♂ (BMNH 1896.7.30.121), pedipalp chela: A. retrodorsal, B. ventral, and C. prolateral aspects. Scale bar = 5 mm.
FIGURE 232 in Taxonomic Revision Of The Jumping Goblin Spiders Of The Genus Orchestina Simon, 1882, In The Americas (Araneae: Oonopidae)
FIGURE 232. Morphospecies of Orchestina, drawings of male palps. A, B. OMI034. C–E. OMI037, asterisk on the wide first section of sperm duct. F, G. OMI035, right palp. A. Prolateral. B (detail), D, G. Dorsal. C, F. Retrolateral. Image C flopped for consistency. E. Scheme of sperm duct course. Scale bars: 0.1 mm. (PBI_OON 40476, 43375, 42162).
Figs. 232–239 in The Goblin Spider Genus Brignolia (Araneae, Oonopidae)
Figs. 232–239. Brignolia bowleri (Saaristo), male. 232, 236. Left palp, prolateral view. 233, 237. Same, retrolateral view. 234. Left palpal bulb, prolateral view. 235. Same, retrolateral view. 238. Same, dorsal view. 239. Same, ventral view.
Figures 232–237 in Southern African pholcid spiders: revision and cladistic analysis of Quamtana gen. nov. and Spermophora Hentz (Araneae: Pholcidae), with notes on male-female covariation
Figures 232–237. Spermophora gordimerae sp. nov. Left male palp in prolateral (232) and retrolateral (233) views, male chelicerae in frontal view (234), modified hair on male cheliceral apophysis (235), and cleared epigynum in ventral (236) and dorsal (237) views. ba: bulbal apophysis, e: embolus, f: Spermophora-flap, hp: hinged process. Arrowed: femur-apophysis. Scale bars = 30 Mm (235), 0.2 mm (234), 0.3 mm (236, 237), 0.4 mm (232, 233).
Figures 232–246 in Reanalysis of Teruelius and Grosphus (Scorpiones Buthidae with descriptions of two new species
Figures 232–246. The microcharmid metamerized basal piece and other anomalies in the literature. Figure 232. Original illustration of metamerized basal piece of pectines of Microcharmus cloudsleythompsoni divided into four sclerites (Lourenço, 1995: 99, fig. 10; republished in Lourenço, 1996: 63, fig. 31, and Lourenço, 1998a: 846: fig. 2). Figure 233. Illustration of metamerized basal piece of pectines of Microcharmus variegatus divided into four sclerites (Lourenço & Goodman, 2013: 56, fig. 22). Figure 234. Superimposition of Fig. 233 (red) over Fig. 232 (black). Magnified insets: details of middle lamellae. Red arrows (232–234): site of added pectine tooth. Figure 235. Superimposition of mirror image of Fig. 233 (blue) over itself (black), mirrored right comb aligned with left comb (blue arrow). Magnified insets: details of right and left middle lamellae. Figures 236–237. Sternopectinal regions of male (236) and female (237) paratypes of Microcharmus variegatus. UV fluorescence. Figure 238. Illustration of basal piece of pectines of Microcharmus fisheri divided into two sclerites (Lourenço, 1998b: 70, fig. 4). Figure 239. Illustration of sternopectinal region of Lychasioides amieti Vachon, 1973 (Lourenço, 1999c: 11, fig. 4). Figure 240. Superimposition of mirror image of Fig. 239 (blue) over itself (black), mirrored right comb aligned with left comb (blue arrow). Figures 241–243. Illustrations of right pedipalp chela and trichobothria of Birulatus haasi Vachon, 1973, from Lourenço (1999b: 109, figs. 3–4) (241); of B. astartiae Stathi & Lourenço, 2003, from Stathi & Lourenço (2003: 107, figs. 6–7) (242); and superimposition of Fig. 242 (red) over Fig.
FIGURE 232. Nematogmus membranifer Song & Li, 2008. A, B Epigyne, ventral view C in Survey of Linyphiidae (Arachnida: Araneae) spiders from Yunnan, China
FIGURE 232. Nematogmus membranifer Song & Li, 2008. A, B Epigyne, ventral view C Vulva, dorsal view.
FIGURE 232 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 232. Pseudopoda strombuliformis Zhang, Jäger & Liu, spec. nov., A–B Male habitus (A. dorsal; B. ventral). Scale bars: A–B: 2 mm.
Full-scale MBR coupled with PAC for the removal of 232 OMPs: operating conditions, conventional pollutants, concentration of OMPs, UHPLC-QTOF-MS analysis
<p>The spreadsheet contains data regarding the operation and performance of a full-scale MBR coupled with powdered activated carbon (PAC) added inside the reactor. This hybrid system is chosen to evaluate the removal of 232 organic micropollutants (OMPs) and the potential enhancement in the removal efficiencies with the addition of PAC at a concentration of 0.1 g/L and 0.2 g/L</p><ul><li>First worksheet contains minimum, maximum, and average concentrations of conventional pollutants (COD, BOD, SST, SSV, DOC, UV254, nitrogen compounds, phosphorous, <i>E. coli</i>) in the influent and effluent of the WWTP. Methodologies adopted are also reported.</li><li>Second worksheet reports the operating conditions of the full-scale MBR as well as information about the tubular UF membranes installed. Characteristics of the PAC purchased to perform the experiments regarding the removal of OMPs are also described.</li><li>Third worksheet reports minimum, maximum and average concentration of 232 OMPs in the influent and effluent during:<ol><li>The monitoring period considering only the MBR</li><li>The experimental periods where PAC is added and maintained at a concentration of 0.1g/L and 0.2g/L inside the MBR</li></ol></li><li>Fourth worksheet contains metadata regarding the UHPLC–QTOF–MS analysis performed to evaluate the occurrence of OMPs in the influent and effluent of the WWTP. Sampling, storage and sample preparation is described, followed to LC-ESI-tandem MS analysis. LOD and LOQ are reported.</li></ul>
Dussia tessmannii Harms from Colombia collected by A. Camargo, E. Álvarez, F. Toro #232
<p><strong>File Name</strong>: <span>TOLI-23874-ZAR-05-220.jpg</span></p> <p><strong>CÓDIGO FOTO</strong>: <span>TOLI-23874-ZAR-05-220-</span></p> <p><strong>Fotografía</strong>: <span>SI</span></p> <p><strong>Nº TOLI</strong>: <span>TOLI-23874</span></p> <p><strong>PARCELA</strong>: <span>ZAR-05</span></p> <p><strong>CÓDIGO</strong>: <span>220</span></p> <p><strong>Nº COLECTA</strong>: <span>232</span></p> <p><strong>NUEVOS COLECTORES</strong>: <span>Alejandro Camargo, Felipe Toro & Esteban Alvarez</span></p> <p><strong>COLECTORES</strong>: <span>A. Camargo, E. Álvarez, F. Toro</span></p> <p><strong>Nº MUESTRAS MONTADAS</strong>: <span>1</span></p> <p><strong>Homologación</strong>: <span>No homologado</span></p> <p><strong>Nueva fecha del evento </strong>: <span>30/11/2018.</span></p> <p><strong>Fecha del evento</strong>: <span>27/04/2019.</span></p> <p><strong>Proyecto </strong>: <span>Recursos Botánicos Disponibles en Línea (BRAVO) para la flora Colombiana</span></p> <p><strong>Hábitat</strong>: <span>Bosque húmedo tropical (bh-T)</span></p> <p><strong>Comentario del evento</strong>: <span>Bosque de tierra firme</span></p> <p><strong>Continente</strong>: <span>SA</span></p> <p><strong>Pais</strong>: <span>Colombia</span></p> <p><strong>Estado/Provincia</strong>: <span>Amazonas</span></p> <p><strong>Municipio</strong>: <span>Leticia</span></p> <p><strong>Localidad</strong>: <span>Resguardo Indígena Ticuna-Huitoto Km 6-11.</span></p> <p><strong>Elevación minima en metros</strong>: <span>200</span></p> <p><strong>Elevación maxima en metros</strong>: <span>300</span></p> <p><strong>Latitud</strong>: <span>-4.004</span></p> <p><strong>Longitud original</strong>: <span>-69.896</span></p> <p><strong>datum geodésico</strong>: <span>WGS 84</span></p> <p><strong>Latitud decimal</strong>: <span>-4.004</span></p> <p><strong>Longitud decimal</strong>: <span>-69.896</span></p> <p><strong>Identificado por</strong>: <span>Diego Suescún</span></p> <p><strong>Fecha de identificación</strong>: <span>15/02/2019.</span></p> <p><strong>Nombre cientifico</strong>: <span>Dussia tessmannii Harms</span></p> <p><strong>Reino</strong>: <span>Plantae</span></p> <p><strong>Filo</strong>: <span>Magnoliophyta</span></p> <p><strong>Clase</strong>: <span>Equisetopsida</span></p> <p><strong>Orden</strong>: <span>Fabales</span></p> <p><strong>Familia nueva</strong>: <span>Fabaceae</span></p> <p><strong>Género nuevo</strong>: <span>Dussia </span></p> <p><strong>especie nueva</strong>: <span>tessmannii</span></p> <p><strong>Autoría del nombre científico</strong>: <span>Harms</span></p> <p><strong></strong>: <span>Fabaceae</span></p> <p><strong>genero herbario</strong>: <span>Dussia</span></p> <p><strong>especie herbario</strong>: <span>tessmannii</span></p> <p><strong>Especie de herbario para TNRS</strong>: <span>Dussia tessmannii</span></p> <p><strong>Especie corregida herbario y desde TNRS</strong>: <span>Dussia tessmannii</span></p> <p><strong>Familia corregida desde TNRS</strong>: <span>Fabaceae</span></p> <p><strong></strong>: <span>2961</span></p>
Cedrelinga cateniformis (Ducke) Ducke from Colombia collected by F. Toro, E. Álvarez, A. Camargo #232
<p><strong>File Name</strong>: <span>TOLI-26389-ZAR-05-275.jpg</span></p> <p><strong>CÓDIGO FOTO</strong>: <span>TOLI-26389-ZAR-05-275-</span></p> <p><strong>Fotografía</strong>: <span>SI</span></p> <p><strong>Nº TOLI</strong>: <span>TOLI-26389</span></p> <p><strong>PARCELA</strong>: <span>ZAR-05</span></p> <p><strong>CÓDIGO</strong>: <span>275</span></p> <p><strong>Nº COLECTA</strong>: <span>232</span></p> <p><strong>NUEVOS COLECTORES</strong>: <span>Alejandro Camargo, Felipe Toro & Esteban Alvarez</span></p> <p><strong>COLECTORES</strong>: <span>F. Toro, E. Álvarez, A. Camargo</span></p> <p><strong>Nº MUESTRAS MONTADAS</strong>: <span>1</span></p> <p><strong>Homologación</strong>: <span>No homologado</span></p> <p><strong>Nueva fecha del evento </strong>: <span>30/11/2018.</span></p> <p><strong>Fecha del evento</strong>: <span>27/04/2019.</span></p> <p><strong>Proyecto </strong>: <span>Recursos Botánicos Disponibles en Línea (BRAVO) para la flora Colombiana</span></p> <p><strong>Continente</strong>: <span>SA</span></p> <p><strong>Pais</strong>: <span>Colombia</span></p> <p><strong>Estado/Provincia</strong>: <span>Amazonas</span></p> <p><strong>Municipio</strong>: <span>Leticia</span></p> <p><strong>Localidad</strong>: <span>Resguardo Indígena Ticuna-Huitoto Km 6-11.</span></p> <p><strong>Elevación minima en metros</strong>: <span>200</span></p> <p><strong>Elevación maxima en metros</strong>: <span>300</span></p> <p><strong>Latitud</strong>: <span>-4.004</span></p> <p><strong>Longitud original</strong>: <span>-69.896</span></p> <p><strong>datum geodésico</strong>: <span>WGS 84</span></p> <p><strong>Latitud decimal</strong>: <span>-4.004</span></p> <p><strong>Longitud decimal</strong>: <span>-69.896</span></p> <p><strong>Identificado por</strong>: <span>Diego Suescún </span></p> <p><strong>Fecha de identificación</strong>: <span>15/02/2019.</span></p> <p><strong>Nombre cientifico</strong>: <span>Cedrelinga cateniformis (Ducke) Ducke</span></p> <p><strong>Reino</strong>: <span>Plantae</span></p> <p><strong>Filo</strong>: <span>Magnoliophyta</span></p> <p><strong>Clase</strong>: <span>Equisetopsida</span></p> <p><strong>Orden</strong>: <span>Fabales</span></p> <p><strong>Familia nueva</strong>: <span>Fabaceae</span></p> <p><strong>Género nuevo</strong>: <span>Cedrelinga</span></p> <p><strong>especie nueva</strong>: <span>cateniformis</span></p> <p><strong>Autoría del nombre científico</strong>: <span>(Ducke) Ducke </span></p> <p><strong></strong>: <span>Fabaceae</span></p> <p><strong>genero herbario</strong>: <span>Cedrelinga</span></p> <p><strong>especie herbario</strong>: <span>cateniformis</span></p> <p><strong>Especie de herbario para TNRS</strong>: <span>Cedrelinga cateniformis</span></p> <p><strong>Especie corregida herbario y desde TNRS</strong>: <span>Cedrelinga cateniformis</span></p> <p><strong>Familia corregida desde TNRS</strong>: <span>Fabaceae</span></p> <p><strong></strong>: <span>5370</span></p>
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.