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Fig. 3.35 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 3.35. Screen capture of the Mephisto scanning software while recombining scans of a stuffed African elephant produced with the Gotcha infrared sensor.
Fig. 3.32 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 3.32. Ishango rod digitised with NextEngine. https://sketchfab.com/models/555f0a85ca224ab88f3712272d877ce7
Fig. 3.31 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 3.31. Skull of Pan paniscus (RMCA) scanned with NextEngine. Left: the mesh with texture; right: the mesh without texture. https://sketchfab.com/models/38295c2ee9dd428f93134d0e97ffe851
Fig. 3.36. 3D in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 3.36. 3D model of the mammoth on display at the RBINS permanent exhibition. The bones were scanned one by one at the moment the skeleton was disassembled to move it to another exhibition spot. The Gotcha infrared depth sensor was used and the different 3D models were virtually reassembled in lhpFusionBox (ULB, Brussels). https://sketchfab.com/models/2d25256368a44a0fb98d0418ac500d47
Fig. 3.34 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 3.34. The Primesense infrared depth sensor of the Gotcha with a tripod, allowing it to stand or be used handheld while scanning.
Fig. 2.26. Plane 5 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.26. Plane 5 of the specimen page at Zoosphere.net, showing the distribution of the specimen's species, as retrieved from GBIF. Image copyright MfN.
Fig. 2.24. Plane 3 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.24. Plane 3 of the specimen page at Zoosphere.net, showing the taxonomy of the specimen. Image copyright MfN.
Fig. 2.23. Plane 2 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.23. Plane 2 of the specimen page at Zoosphere.net, showing the specimen pictures. Image copyright MfN.
Fig. 2.11 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.11. Specimen stored within glycerin. Cleared and stained specimen of Haplochromis sp. pictured in glycerin. The right part of the picture is photographed with a magnification of 5×. Scale = 500 µm.
Fig. 2.20 in Handbook of best practice and standards for 2D+ and 3D imaging of natural history collections
Fig. 2.20. Overview of the digitised specimen with the ZooSphere setup, visible at Zoosphere.net. Image copyright MfN.
Figs 97-102 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 97-102: Male genitalia. (97) Amphelissus meieri. (98) Inconnexus lunarus. (99) Labasiella boyaca. (100) L. mcclarini. (101) L. transversalis. (102) L. machupicchu.
Figs 103-107 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 103-107: Male genitalia. (103) Labasiella eugeniae. (104) L. tucumanensis. (105) L. varipennis. (106) L. stangei. (107) Macilentus micidus.
Figs 90-96 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 90-96: Habitus. (90) Macilentus micidus. (91) Oncochelyna barrigai. (92) O. tuberculate. (93) Pelmatus barri. (94) P. bicolor. (95) Silvanoclerus beechi. (96) S. dilatus.
Figs 81-89 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 81-89: Habitus. (81) L. solervicensi. (82) L. transversalis. (83) L. lata. (84) L. labaticollis; (85) L. machupicchu. (86) L. santa. (87) L. stangei. (88) L. tucumanensis. (89) L. varipennis.
Figure 69a in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figure 69a illustrates my hypothesis of the phylogenetic relationships of the taxa included in this work. The WINCLADA and NONA computer analysis produced a tree with the following indices: L 21, Ci 85, Ri 87. The presence of an acute pronotal tubercle and
Figs 67-68 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 67-68: Elytral surface and elytral asetiferous puncture. (67) Elytral surface. (68) Elytral asetiferous puncture.
Figs 44-56 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 44-56: Various organs. 44-52 Pronota. (44) Silvanoclerus beechi. (45) Labasiella bimaculate. (46) L. boyaca. (47) L. Cochabamba. (48) L. mcclarini. (49) L. eugeniae. (50) L. robles. (51) L. solervicensi. (52) L. transversalis. 53-54 Heads. (53) Inconnexus lunarus. (54) Silvanoclerus dilatus. 54A-54B Generalized shape of the last maxillary palpomeres. (54A) Securiform. (54B) subsecuriform. 55-56 Mesodermal reproductive organs of Amphelissus meieri. (55) Female. (56) Male.
Figs 28-43 in ClassiIication, Natural History, and Evolution oI the SubIamily Peloniinae OPITZ (Coleoptera, Cleroidea, Cleridae). Part XIII. The New World genera oI checkered beetles of the Labasiella complex
Figs 28-43: Pronota. (28) Amphelissus goniodus. (29) A. meieri. (30) Inconnexus lunarus. (31) Labasiella lata. (32) L. labaticollis. (33) L. machupicchu. (34) L. santa. (35) L. stangei. (36) L. tucumanensis. (37) L. varipennis. (38) Pelmatus barri. (39) P. bicolor. (40) Macilentus micidus. (41) Oncochelyna barrigai. (42) O. tuberculate. (43) Silvanoclerus dilatus.
Figure 8 in Systematics, host plants, and life histories of three new Phyllocnistis species from the central highlands of Costa Rica (Lepidoptera, Gracillariidae, Phyllocnistinae)
Figure 8. Phyllocnistis maxberryi sp. n., pupa. A Ventral view of head B ventral view of cocoon-cutter C frons D lateral view of head E lateral view of cocoon-cutter F dorsal of sixth abdominal tergum G spines on sixth abdominal tergum H lateral view of spines on seventh abdominal tergum I view of abdominal tip Į dorsal view of A9–10 K lateral seta on sixth abdominal tergum L ventral view of A9–10. Scale bars 100 µm.
Figure 6 in Systematics, host plants, and life histories of three new Phyllocnistis species from the central highlands of Costa Rica (Lepidoptera, Gracillariidae, Phyllocnistinae)
Figure 6. Phyllocnistis tropaeolicola sp. n., genitalia. A Male, ventral view B right valva, mesal view C aedeagus D female, lateral view E ventral view of terminal segments. (Scale bar 0.5 mm except for figure B, 0.25 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.