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438 results for “3D imaging”
Fig. 3.21. 3D in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 3.21. 3D model of an Omorgus gigas by using focus stacked images and the VCM method in Agisoft Photoscan. https://sketchfab.com/models/ad5fd157c5424c8fb793c1c282450d33
Fig. 3.26 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 3.26. Goniopholis skull. Scanned with the HDI. https://sketchfab.com/models/c58694337a46449f9074b72fcb3c9cf5
Fig. 4.6 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 4.6. Decorated ivory tusk suffering from humidity. Although visible under white light, the damaged parts are clearly enhanced by UV fluorescence (on the right).
Fig. 2.13 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.13. Picture of a copepod composed of several stitched tiles of stacked pictures at high magnification. The left-hand picture shows the overall view of the composite image. The zone covered by the square is the part visible on the right-hand picture, which shows the detail of the specimen.
Fig. 2.25. Plane 4 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.25. Plane 4 of the specimen page at Zoosphere.net, showing the labels of the specimen. Image copyright MfN.
Fig. 2.19 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.19. View of the photographic lab of the ZooSphere, with the automated specimen rotator in front of the camera, covered by styrofoam panels to reflect the light in all directions. Image copyright MfN.
Fig. 2.5 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.5. Detail of pinned insect image. Frontal view of a specimen of Bracon chrysophthalmus at 5× magnification. Scale = 500 µm.
Fig. 2.10 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.10. Detail of a specimen stored in ethanol. A detailed lateral view of a Drosophila sp. Specimen submerged in a 70% ethanol solution. Scale = 500 µm.
Fig. 2.2 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.2. Visual camera sensor comparison: A Hormius sp. specimen pictured at 4× magnification with a Canon EOS 5DS R (left) and a Canon EOS 700D (right).
Fig. 2.6 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.6. Translucent specimens. Pictures of a small translucent specimen of Gyraulus costulates exilis. Scale = 1 mm.
Fig. 2.9. Picturing submerged specimens. A in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.9. Picturing submerged specimens. A fly of the genus Drosophila pictured in ethanol with glass beads (top pictures) or without (bottom pictures) using a white (left pictures) or grey (right pictures) background. Scale = 1 mm.
Fig. 2.1 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.1. Focus Stacking setup used at the Royal Belgian Institute of Natural Sciences (RBINS) and the Royal Museum for Central Africa (RMCA). Left: View of the complete set-up; Right: Detailed view of the camera mounted to stackshot and to the closet using a metal corner, to mount the camera vertically.
Fig. 2.22. Plane 1 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.22. Plane 1 of the specimen page at Zoosphere.net, showing the collections responsible and the acquisition metadata. Image copyright MfN.
Fig. 2.17–2.18 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.17–2.18. Two different designs of the ZooSphere. In the first (left) figure, the stepper motor is centered on a long U-shaped axis, a swing, which is controlled by the second axis. In the second figure (right) all of this is more compressed in space and instead of a U-shaped axis to mount the first stepper motor, it is attached to the second by means of a T-shaped rod. Image copyright MfN.
Fig. 2.8 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.8. Pictures of a microscope plate. Left: a microscope plate with an overview of a specimen of Belgica antarctica using a white background (scale = 1 mm). Right: a detailed view of the left image (scale = 500 µm).
Fig. 2.7 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.7. Translucent specimen in detail. Close-up view of the outer surface of a specimen of Gyraulus costulates exilis. Scale = 500 µm.
Fig. 2.15 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.15. Caloptilia galacotra, reproductive organs. Picture composed of several stitched tiles of stacked pictures at a magnification of 20×.
Fig. 2.12 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.12. General view of the 'Information in Images' system mounted on a Leica microscope at the Royal Museum for Central Africa.
Fig. 2.4 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.4. Picturing pinned insects. The pictures represent several insects with highly reflective surfaces positioned in different ways (pinned, upper pictures; glued, bottom pictures). No shadows, no overexposed areas and hardly any reflections are present. Scale = 1 mm.
Fig. 2.3 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.3. Picturing shiny metallic specimens: Left: A manganite specimen (scale = 1 cm); Right: a detailed view of the manganite specimen (scale = 1 mm).
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.