Skip to main content
Powered by ShareScore

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.

13,618

datasets available to search

ShareScore release 0.7.1

Reset

Dataset results

13,618 results for “biology”

Learn how ShareScore rates datasets ↗
zenodo40/100

FIGURE 16. Louteridium parayi. A in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation

FIGURE 16. Louteridium parayi. A. Habit (Breedlove 67024). B. Bracteoles and flower (Breedlove & Thorne 30789). C. Calyx (Breedlove 28970). D. Corolla bud opened to show stamens (Breedlove 67024). E. Stigma (Breedlove 67024). F. Dehisced capsule (Breedlove 28970). G. Seed (Breedlove 28970). Drawn by Ellen del Valle.

opencc-by-4.0Sep 2018View details →
zenodo40/100

FIGURE 9 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation

FIGURE 9. Map of Costa Rica (with provinces) and Panama (with provinces and comarcas) with distribution of Louteridium costaricense. Dots may pertain to multiple collections.

opencc-by-4.0Sep 2018View details →
zenodo40/100

FIGURE 5 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation

FIGURE 5. Pollen of Louteridium (except for L. koelzii, which was unavailable). A. L. brevicalyx (Daniel & Steinmann 11913). B. L. chartaceum (Daniel & Butterwick 5905). C. L. costaricense (van der Werff 7019). D. L. dendropilosum (Daniel et al. 11784). E. L. donnell-smithii (Daniel & Véliz 11337). F. L. mexicanum (Breedlove & Thorne 30786). G. L. parayi (Daniel & Wendt 5805). H. L. parayi (Breedlove & Daniel 70889) with intine protruding from apertures (revealing their number). I. L. purpusii (Breedlove & Smith 31613). J. L. purpusii (Breedlove & Smith 31613), with intine protruding from apertures (revealing their number). K. L. rzedowskianum (Kruse 1380). L. L. tamaulipense (Hutchinson s.n.). All scales = 10 μm.

opencc-by-4.0Sep 2018View details →
zenodo40/100

FIGURE 3 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation

FIGURE 3. Trichomes (SEM) of Louteridium spp. A, B. L. dendropilosum (Daniel et al. 11784), with dendritic trichomes bearing scattered micropapillae. C, D. L. donnell-smithii (Breedlove & Daniel 71197), with unbranched trichomes bearing micropapillae mostly arranged in lines.

opencc-by-4.0Sep 2018View details →
zenodo40/100

FIGURE 14. Louteridium koelzii. A in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation

FIGURE 14. Louteridium koelzii. A. Apex of shoot with flush of new leaves (McVaugh & Koelz 1797). B. Branch with inflorescence in flower (McVaugh & Koelz 1507). C. Leaf (McVaugh & Koelz 1797). D. Corolla bud opened (McVaugh & Koelz 1797). E. Dehisced corolla with epipetalous stamens (McVaugh 26180). F. Distal portion of style and stigma (McVaugh 26180). G. Partially dehisced capsule with calyx and pedicel (McVaugh 26180). H. Seed (McVaugh 26180). Drawn by Karin Douthit, copyright reserved to University of Michigan Herbarium, used with permission.

opencc-by-4.0Sep 2018View details →
zenodo40/100

FIGURE 7 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation

FIGURE 7. Seeds of Louteridium. A. L. donnell-smithii (Breedlove & Bourell 68070). B. L. brevicalyx (Daniel & Steinmann 11913). C. L. brevicalyx in water (Daniel & Steinmann 11913). D. L. dendropilosum (Daniel et al. 11784). E. L. chartaceum (Daniel & Butterwick 5905). F. L. chartaceum (Daniel & Butterwick 5905) in water. G. L. mexicanum (Wendt et al. 3614). H. L. parayi (Breedlove 28970). I. L. purpusii (Breedlove & Smith 31613). J. L. chartaceum (Daniel & Butterwick 5905), detail of dry seed. K. L. chartaceum (Daniel & Butterwick 5905), detail of seed in water. All scales = 1 mm.

opencc-by-4.0Sep 2018View details →
zenodo40/100

Figures 1–7 in Taxonomic and biological notes on Andinopanurgus (Hymenoptera: Andrenidae)

Figures 1–7. Male of Protandrena (Andinopanurgus) maximina Gonzalez & Ruz. 1. Lateral habitus. 2. Facial view. 3. Sternum VII. 4. Sternum VIII. 5–7. Genital capsule in dorsal, profile, and ventral views.

opencc-by-4.0Jan 2013View details →
zenodo40/100

Fig. 7 in The biology of an isolated Mashona mole-rat population from southern Malawi, with implications for the diversity and biogeography of the genus Fukomys

Fig. 7 Violin plots showing the distribution of growth parameters (A, K, I, and maximum growth rate) calculated separately for 73 individuals of Fukomys darlingi from the Nsanje population

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 6 in The biology of an isolated Mashona mole-rat population from southern Malawi, with implications for the diversity and biogeography of the genus Fukomys

Fig. 6 Growth in captive Fukomys darlingi from the Nsanje population. Mean body mass (g) calculated weekly for individuals belonging to one of four groups based on sex and breeding status (non-breeding female NB, n = 27; breeding female B, n = 13; non-breeding male NB, n = 19; breeding male B, n = 13) over a period of 10 years. Gompertz growth parameters have been estimated for each individual separately, and thereafter, mean values have been calculated for each group. These parameters have been used for modelling the solid lines

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 8 in The biology of an isolated Mashona mole-rat population from southern Malawi, with implications for the diversity and biogeography of the genus Fukomys

Fig. 8 Adult body mass distribution of Fukomys darlingi from Zimbabwe (nominate form, n =18) and southern Malawi (Nsanje form, n =96). Note the larger body mass and greater sexual dimorphism in animals from Nsanje. Data on F. darlingi individuals from Goromonzi were compiled from Bennett et al. (1994), Gabathuler et al. (1996), and Herbst and Bennett (2001); animals were deemed adult when identified as breeders or when being heavier as the same-sex breeder in the respective family. Nsanje mole-rats were classified as adults at an age of 18 months

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 5 in The biology of an isolated Mashona mole-rat population from southern Malawi, with implications for the diversity and biogeography of the genus Fukomys

Fig. 5 Nuclear phylogeny of Fukomys mole-rats. MCC tree estimated from nuclear datasets of five genes. Tip labels are colour-matched with those shown in the range map and the mitochondrial tree (Figs. 1 and 4). Each tip name contains the sample ID, the name of the respective CYTB lineage, and in the case of samples from F. darlingi clade also the name of the collection locality

opencc-by-4.0Mar 2023View details →
zenodo40/100

Fig. 18 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 18 Ultrastructure of the anterior hemisphere of a bilayered embryo and embryo sac shortly before bud formation in Plumatella casmiana (TEM). a Overview of embryonic epithelia and embryo sac. The embryo shows high prismatic ectoderm and flattened mesodermal cells. Ectodermal cells possess filiform extensions on their lateral sides. b Detail of an embryonic ectodermal cell showing filiform processes, mitochondria, numerous free ribosomes and a multivesicular body in the apical part of the cell. c Detail of a mesodermal cell of the embryo sac. In contrast to the embryonic cells, it shows a lower density of ribosomes, but much more vacuoles and endoplasmatic reticulum. Presumed site of exocytosis towards the lumen of the embryo sac is marked by an arrow. d Detail of the mesoderm of the embryo including large vacuoles with unknown content (asterisks). Arrow shows an extension of the cell membrane towards the basal lamina. Abbreviations: bl basal lamina, eme embryonic ectoderm, emm embryonic mesoderm, er endoplasmatic reticulum, esm mesoderm of the embryo sac, mi mitochondria, mvb multivesicular body, nu nucleus, nuc nucleolus, ri ribosomes

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 15 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 15 Longitudinal sections of brooded larvae of Plumatella casmiana. a. The embryo sac is conspicuous. The larval mantle is ciliated (arrowhead) and in earlier stages restricted to the anterior pole of the larva. Halfway along the longitudinal axis the mantle forms a deep groove (arrows). Two almost differentiated buds are present in the larva. b

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 16 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 16 Semithin sections of late embryonic stages of Plumatella casmiana. a, b Longitudinal sections of an early larva. The mantle is not yet ciliated and a mantle fold is present in the equatorial region. Posterior of the mantle fold, the ring-shaped contact zone ('placenta') of elongated cells of the larval ectoderm is in contact with the mesoderm of the embryo sac (partly seen in a). The embryo sac is rather thin but still includes voluminous cells (arrowheads), some with cytoplasmatic inclusions (arrows). c, d Oblique cross section of an advanced larva showing contact areas of the larva to the cells of the embryo sac. The ringshaped 'placenta' is disrupted where the mantle fold overgrows the larva in posterior direction. e–i Contact cells (asterisks) in early larvae. These cells are either formed by cytoplasmatic extensions of embryonic/larval cells (e, f), or their origin is unclear (g, h). In some cases they appear to belong to the embryo sac (i). Abbreviations: b bud, e embryo/ larva, ecd ectoderm of the larva, ebs embryo sac, ma larval mantle, msd mesoderm of the larva, mf mantle fold, pac placenta cells

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 13 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 13 Bud formation in an advanced embryo of Plumatella casmiana. Semithin sections. The border between the ectodermal and mesodermal layer of the embryo sac wall are shown by a dashed line in a and d. a, b Different section levels of same embryo showing proliferating cells (arrows in b) of the anlage of the bud, close to the posterior pole of the larva. Buds are two-layered and protrude into the lumen of the embryo. c, d. Two-layered polypide anlage (asterisk) consisting of an inner (epidermal/ectodermal) and outer (peritoneal/mesodermal) budding layer. Abbreviations: ebs embryo sac, eme embryonic ectoderm, emm embryonic mesoderm

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 12 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 12 Semithin sections of a bilayered embryo of Plumatella casmiana. The border between the ectodermal and mesodermal layer of the embryo sac wall are highlighted by a dashed line in a, b. a Distal part of the embryo sac and the posterior pole of the embryo. The ectodermal lining of the embryo sac is thin except at its attachment area to the body wall (upper part of image). b Dark cytoplasmic inclusion (arrow) in the mesodermal embryo sac layer. Multiple lipids are visible as light brown inclusions. The embryonic mesoderm consists of flattened cells, and the ectodermal cubic or prismatic cells occasionally show vacuoles (asterisks). In some areas it has tight contact to the dissolving embryo sac ectoderm (arrowhead). c Embryo sac showing voluminous cells of the embryo sac mesoderm (asterisks) and an almost completely reduced ectodermal layer. The ovary is in tight association with the embryo sac with apparent contacts (arrows). d Ectodermal cell of the embryo showing extension towards the mesoderm of the embryo sac (arrow). Abbreviations: b polypide bud, eme embryonic ectoderm, emm embryonic mesoderm, ese ectoderm of embryo sac, esm mesoderm of embryo sac, mec maternal ectoderm cells, ov ovary

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 11 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 11 Bilayered embryo of Plumatella casmiana at the beginning of bud formation. Semithin sections. The border between the ectodermal and mesodermal layer of the embryo sac are shown by the dashed line in b & c. a Double-layered embryo with fully formed mesoderm. Towards the proximal, suspended end of the sac, the mesodermal cells of the embryo are thinner. At one point the embryo sac shows a perforation through which the embryo protrudes (arrow). b Same embryo as in a but a more median section of the embryo and the embryo sac showing mesoderm thickness. Note also the much smaller plug of maternal ectodermal cells towards the body wall. c Detail of the distal end of the embryo sac showing less staining of ectodermal embryo sac cells compared to the remaining cells. d–f Details of contact areas between embryo and embryo sac. Individual cells of the embryonic ectoderm show cytoplasmic extensions (arrows) towards the embryo sac. The mesoderm of the embryo sac projects toward the embryonic ectoderm (d, left arrow). Abbreviations: b polypide bud, clc coelomocyte, eme embryonic ectoderm, emm embryonic mesoderm, ebs embryo sac, mec maternal ectoderm cells, ov ovary

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 8 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 8 Schematic drawings of the embryonic development of Plumatella casmiana. a Blastula stage situated at the suspended end of the embryo sac which consists of an external mesodermal layer and an ectodermal part inside that entirely surrounds the embryo at this stage. b Early mesoderm formation from ectodermal cells (red) of the prospective aboral pole of the embryo. Maternal ectoderm in the proximal, suspended end has started to diminish in this stage. c Progressed mesoderm formation showing its progression from the upper attached site towards the suspended, lower area of the embryo sac. The mesoderm of the embryo sac is connected to the embryonic ectoderm via contact cells where the ectodermal lining is reduced. d Late embryo with commencing bud formation at the aboral pole. The maternal ectoderm is in contact with some embryonic ectodermal cells (arrows). The mesoderm of the embryo sac is connected to the embryonic ectoderm via contact cells. e Late embryo with mantle fold formation. A distinct ring-shaped contact zone has formed at this stage. Abbreviations: b polypide bud, bwm body wall musculature of the maternal cystid, coc coelomic cavity, e embryo, eme embryonic ectoderm, emm embryonic mesoderm, ebs embryo sac, ese ectoderm of embryo sac, esm mesoderm of embryo sac, ed epidermis (ectodermal origin), mec maternal ectoderm cells, mf mantle fold of larval mantle, pac placenta cells, pt peritoneum (mesodermal origin). Colors: peritoneum and mesodermal layer of embryo sac, yellow; epidermis and ectodermal layer layer of embryo sac, green; ectoderm of embryo, red; mesoderm of embryo, blue; contact cells, violet

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 9 3D in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 9 3D reconstruction of early embryos of Plumatella casmiana based on serial semithin sections. a Embryo consisting of several blastomeres at the suspended end of the bilayered embryo sac. The inner, ectodermal lining of the embryo sac begins to disappear at the suspended end (asterisk). Embryonic contact cells are in connection to the embryo sac. b Blastula with central cavity. The maternal ectoderm cells are now restricted to the contact area towards the body wall. c Early mesoderm formation. d Advanced stage with mesoderm formation completed. Abbreviations: cnc contact cells, e embryo, eme embryonic ectoderm, emm embryonic mesoderm, esm mesoderm of the embryo sac, mec maternal ectoderm cells. Colors: Mesodermal part of embryo sac, yellow; ectodermal part of embryo sac, green; embryonic ectoderm, red; embryonic mesoderm, blue; contact cells, violet

opencc-by-4.0Jun 2021View details →
zenodo40/100

Fig. 7 in Reproductive biology, embryonic development and matrotrophy in the phylactolaemate bryozoan Plumatella casmiana

Fig. 7 Contact areas of embryos of Plumatella casmiana and the maternal ectoderm. Semithin sections. The border between the ectodermal and mesodermal layer of the embryo sac are shown by the dashed line in a–c. a Blastula stage in a bilayered embryo sac. The latter consists of a thick (outer) mesoderm and a thin inner lining of maternal ectoderm. One blastomere of the embryo is in contact (arrow) with the adjacent ectodermal cell of the embryo sac. The cytoplasm of the connected maternal ectoderm cell stains less intense than adjoining cells. b Detail of the embryo sac with a maternal ectodermal cell (arrow) in contact with the blastomere. c Detail of a blastula showing contact of a blastomere with the maternal ectoderm in the proximal area of the embryo sac. d Late embryo showing several ectodermal cells at the posterior pole of the embryo forming contact with the remaining maternal ectodermal cells (arrow). Abbreviations: e embryo, ebs embryo sac, eme embryonic ectoderm, emm embryonic mesoderm, mec maternal ectoderm cells, ov ovary

opencc-by-4.0Jun 2021View details →

ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

Compare curated 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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record