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.
575
datasets available to search
ShareScore release 0.9.0
Dataset results
575 results for “embryonic development”
(05)-Strobl2018A-DS0002 – Tribolium castaneum AGOC{ARP5'#O(LA)-mEmerald} #1 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(05)-Strobl2018A-DS0002 – <em>Tribolium castaneum</em> AGOC{ARP5'#O(LA)-mEmerald} #1 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(06)-He2019A-DS0003 – Tribolium castaneum AGOC #6 subline × foxQ2-5' line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(06)-He2019A-DS0003 – <em>Tribolium castaneum</em> AGOC #6 subline × foxQ2-5' line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(06)-He2019A-DS0002 – Tribolium castaneum foxQ2-5' line × AGOC #6 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(06)-He2019A-DS0002 – <em>Tribolium castaneum</em> foxQ2-5' line × AGOC #6 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
Figure 1 in Embryonic development of the olive fruit fly, Bactrocera oleae Rossi (Diptera: Tephritidae), in vivo
Figure 1. In vivo photographic illustration of Bactrocera oleae eggs. A) Anterior and posterior ends of the egg (1 h old); B) the chorion; C), D), and E) sequence of pole cell formation in a living embryo. The arrow indicates the posterior tip of the egg.
Figure 1 in The post-embryonic development of Amphiprion perideraion reveals a decoupling between morphological and pigmentation changes
Figure 1. – Amphiprion perideraion development from hatching to 20 dph. Graph showing the quantitative measurement of individual larvae from hatching to 20 dph, therefore providing an indication on individual variation. A: Morphological characters measured. HD, head depth; HL, head length; SL, standard length; BD, body depth (Allen, 1974; Önsoy et al., 2011). B: Graph showing the significant relation- ship among TL to larvae age. C: Allometric growth equation between TL and SL (orange), BD (red), HD (turquoise), and HL (blue) in larvae. Note that the allometric growth is negative for HL and positive for BD and HD. D: Stereomicroscope images of larvae from 1 dph to 15 dph. E-I: Higher magnification of caudal (E), dorsal (F), anal (G) and pelvic (H) fins formation and pigmentation ontogenesis (I). Scale bars = 1 mm.
Fig. 3 in Studies on the embryonic development and larval infection potential of the stomach bot flies, Gasterophilus pecorum
Fig. 3. Life history of G. pecorum and prediction of egg state larvae population. Note: The survival period of egg state larvae of G. pecorum at different temperatures (a); The monthly average temperatures in Kalamaili nature reserve (KNR) in recent ten years (b); Changes in parasite population in vitro of the host (c), +: mild; ++: moderate; +++: considerable; ++++: severe; ⸭: potential.
Fig. 1 in Studies on the embryonic development and larval infection potential of the stomach bot flies, Gasterophilus pecorum
Fig. 1. The relationship between the embryonic development period and the temperature of G. pecorum.
(09)-Pereyra2021A-DS0001--DS0003 – Three Tribolium castaneum long-term live imaging datasets of embryonic development acquired with light sheet fluorescence microscopy
<p>(09)-Pereyra2021A-DS0001--DS0003 – Three <em>Tribolium castaneum</em> long-term live imaging datasets of embryonic development acquired with light sheet fluorescence microscopy</p>
(08)-Strobl2021A-DS0002 – Tribolium castaneum ACOS{ATub'H2B-mRuby} #1 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(08)-Strobl2021A-DS0002 – <em>Tribolium castaneum</em> ACOS{ATub'H2B-mRuby} #1 subline long-term live imaging data of embryonic development acquired with light sheet fluorescence microscopy</p>
(08)-Strobl2021A-DS0001 – Tribolium castaneum AGOC{Zen1'#O(LA)-mEmerald} #1 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(08)-Strobl2021A-DS0001 – <em>Tribolium castaneum</em> AGOC{Zen1'#O(LA)-mEmerald} #1 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(07)-Ratke2020A-DS0005 – Tribolium castaneum AGOC{Zen1'#O(LA)-mEmerald} #2 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(07)-Ratke2020A-DS0005 – <em>Tribolium castaneum</em> AGOC{Zen1'#O(LA)-mEmerald} #2 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(07)-Ratke2020A-DS0004 – Tribolium castaneum AGOC{Zen1'#O(LA)-mEmerald} #1 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(07)-Ratke2020A-DS0004 – <em>Tribolium castaneum</em> AGOC{Zen1'#O(LA)-mEmerald} #1 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(07)-Ratke2020A-DS0003 – Drosophila melanogaster w[*]; P{w[+mC]=His2Av-EGFP.C}2/SM6a line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(07)-Ratke2020A-DS0003 – <em>Drosophila melanogaster</em> w[*]; P{w[+mC]=His2Av-EGFP.C}2/SM6a line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(07)-Ratke2020A-DS0001 – Drosophila melanogaster y[1] w[67c23]; P{w[+mC]=Ubi-GFP.nls}ID-2; P{Ubi-GFP.nls}ID-3 line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(07)-Ratke2020A-DS0001 – <em>Drosophila melanogaster</em> y[1] w[67c23]; P{w[+mC]=Ubi-GFP.nls}ID-2; P{Ubi-GFP.nls}ID-3 line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(08)-Strobl2021A-DS0003 – Tribolium castaneum Gruul #1 hybrid line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(08)-Strobl2021A-DS0003 – <em>Tribolium castaneum</em> Gruul #1 hybrid line long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
(07)-Ratke2020A-DS0006 – Tribolium castaneum AGOC{Zen1'#O(LA)-mEmerald} #3 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy
<p>(07)-Ratke2020A-DS0006 – <em>Tribolium castaneum</em> AGOC{Zen1'#O(LA)-mEmerald} #3 subline long-term live imaging dataset of embryonic development acquired with light sheet fluorescence microscopy</p>
FIG. 5 in New data on embryonic development of Halisarca dujardini Johnston, 1842 (Demospongiae, Halisarcida)
FIG. 5. — Scheme of H. dujardini embryonic development; A, mature egg; B, early cleavage; C, beginning of blastomere polarization; D, multipolar immigration; E, stage larval polarization; F, formation of internal sphere and migration of maternal eosinophilic granular amoebocytes into larva; G, disphaerula, larva of H. dujardini. Abbreviations: bi, blastocoel; ec, embryonic capsule; efa, eosinophilic amoebocytes; ic, internal cells; isp, internal sphere; mc, migrated cells; ppc, posterior pole cells; tc, transition cells; yg, yolk granules.
FIG. 4. — A in New data on embryonic development of Halisarca dujardini Johnston, 1842 (Demospongiae, Halisarcida)
FIG. 4. — A, internal flagellate cells of disphaerula; B, flagellated cell that migrated from internal sphere. Abbreviations: f, flagellum; isc, internal sphere cavity; n, nucleus; yg, yolk granules; ba, bacteria. Scale bars: A, 4 µm; B, 1 µm.
FIG. 3. — A in New data on embryonic development of Halisarca dujardini Johnston, 1842 (Demospongiae, Halisarcida)
FIG. 3. — A, division of external flagellate cells in prelarva; B, maternal eosinophilic granular amoebocyte between internal cells of disphaerula; C, posterior pole of larva; D, external flagellate epithelium of larva. Abbreviations: ba, bacteria; ic, internal cells; ec, embryonic capsule; ppc, posterior pole cells; tc, transition cells; dc, divided cell; ecc, embryonic capsule cell; f, flagellum; n, nucleus; yg, yolk granules. Scale bars: A, 5 µm; B, 5 µm; C, 10 µm; D, 5 µm.
FIG. 2. — A in New data on embryonic development of Halisarca dujardini Johnston, 1842 (Demospongiae, Halisarcida)
FIG. 2. — A, cleaving embryos in 8-cell stage; B, blastula after immigration of external cells; C, stage of invagination of flagellate cells forming internal sphere; D, disphaerula of H. dujardini. Abbreviations: ec, embryonic capsule; ic, internal cells; n, nucleus; efc, external flagellate cells; b, blastomere; bi, blastocoel; ifc, internal flagellate cells; is, internal sphere; ppc, posterior pole cells; tc, transition cells. Scale bars: A, 20 µm; B, 15 µm; C, 20 µm; D, 10 µm.
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.