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Fig. 2 in Stereoscopic light-microscopy in biology - A review
Fig. 2: Main windows of the computer program PICOLAY which was developed for the generation of stereoscopic images from single photographs: (a) input window, (b) output window with generation of the object-depth map.
Fig. 7 in Stereoscopic light-microscopy in biology - A review
Fig. 7: Stereoscopic view on the multicellular green alga Volvox sp. (diameter: 250 µm, single images: Wim van Egmond).
Fig. 4 in Comparative Biology Of Cave-Dwelling Spitting Spiders (Araneae: Scytodidae): Parental Care, Cooperative Prey-Capture, Cannibalism, Natal Dispersal And Reproductive Behaviour
Fig. 4. Scytodid egg-sac. (A) Typical egg-sac of Scytodes cavernarum, S. fusca and the Philippines Scytodes sp. 2; and (B) Scytodes magna egg-sac. Note the denser silk surrounding the eggs of S. magna.
Fig. 8 in Comparative Biology Of Cave-Dwelling Spitting Spiders (Araneae: Scytodidae): Parental Care, Cooperative Prey-Capture, Cannibalism, Natal Dispersal And Reproductive Behaviour
Fig. 8. Reproductive traits of five cave species of scytodids. (A) Mean (± S.E.) total number of spiderlings per female; (B) mean (± S.E.) egg hatching time (d); (C) mean (± S.E.) interval (d) between clutches; (D) mean (± S.E.) interval (d) between hatching and the next egg-sac production; (E) mean (± S.E.) number of clutches; and (F) mean (± S.E.) number of spiderlings per clutch. Different lower cases indicate significant differences.
Fig. 3 in Comparative Biology Of Cave-Dwelling Spitting Spiders (Araneae: Scytodidae): Parental Care, Cooperative Prey-Capture, Cannibalism, Natal Dispersal And Reproductive Behaviour
Fig. 3. Maternal care of egg-sacs in spitting spiders. (A) Scytodes fusca female carrying her egg-sac in her chelicerae. (B) Guangxi Scyloxes sp. 1 female on the surface of the outer cave walls, staying close to her egg-sac. The egg-sac is suspended by two to three threads. (C) Web constructed by S. magna female. Her egg-sac is suspended by a few threads at the centre of the web.
Fig. 2 in Comparative Biology Of Cave-Dwelling Spitting Spiders (Araneae: Scytodidae): Parental Care, Cooperative Prey-Capture, Cannibalism, Natal Dispersal And Reproductive Behaviour
Fig. 2. The 'cage within a cage' set-up for studying the natal dispersal patterns of scytodid spiders. Modified from Ruttan (1990).
Fig. 1 in Comparative Biology Of Cave-Dwelling Spitting Spiders (Araneae: Scytodidae): Parental Care, Cooperative Prey-Capture, Cannibalism, Natal Dispersal And Reproductive Behaviour
Fig. 1. Four species of cave scytodid spiders. (A) female and (B) male Scytodes magna, body length = 10.5 mm; (C) female and (D) male S. fusca, body length = 5.8 mm; (E) female Philippines Scytodes sp. 2, body length = 5.6mm; and (F) female S. cavernarum, body length = 5.3 mm.
Fig. 6 in Comparative Biology Of Cave-Dwelling Spitting Spiders (Araneae: Scytodidae): Parental Care, Cooperative Prey-Capture, Cannibalism, Natal Dispersal And Reproductive Behaviour
Fig. 6. Newly emerged Guangxi Scyloxes sp. 1 spiderlings spread out on the sparse silk nest, and female feeding on house fly alone. Body length of adult female = 11.5 mm.
Fig. 7 in Comparative Biology Of Cave-Dwelling Spitting Spiders (Araneae: Scytodidae): Parental Care, Cooperative Prey-Capture, Cannibalism, Natal Dispersal And Reproductive Behaviour
Fig. 7. Relationship between the days in which spiderlings dispersed and spiderling mass in five cave scytodid species. (A) Scytodes fusca; (B) S. carvernarum; (C) Philippines Scytodes sp. 2.; (D) S. magna; and (E) Guangxi Scyloxes sp. 1.
Fig. 3 in Feeding Biology And Symbiotic Relationships Of The Corallimorpharian Paracorynactis Hoplites (Anthozoa: Hexacorallia)
Fig. 3. Diameter of fully digested crown-of-thorns sea stars (Acanthaster planci) as a function of polyp diameter of Paracorynactis hoplites.
Fig. 1 in Feeding Biology And Symbiotic Relationships Of The Corallimorpharian Paracorynactis Hoplites (Anthozoa: Hexacorallia)
Fig. 1. Extended polyp of Paracorynactis hoplites pulling a partly whitened asteroid (Linckia laevigata) toward its mouth. Note test of echinoid Echinometra mathaei beside base of polyp (A. R. Bos).
Fig. 5 in Feeding Biology And Symbiotic Relationships Of The Corallimorpharian Paracorynactis Hoplites (Anthozoa: Hexacorallia)
Fig. 5. Symbiotic shrimp Thor amboinensis among tentacles of a polyp of Paracorynactis hoplites. Mouth of polyp is visible at lower right (A. R. Bos).
Fig. 4 in Feeding Biology And Symbiotic Relationships Of The Corallimorpharian Paracorynactis Hoplites (Anthozoa: Hexacorallia)
Fig. 4. Entirely closed polyp of Paracorynactis hoplites where tentacles are not visible (A. R. Bos).
Quantifying local stiffness and forces in soft biological tissues using droplet optical microcavities
<p>Dataset for publication Quantifying local stiffness and forces in soft biological tissues using droplet optical microcavities</p>
CONSERVATION BIOLOGY AND BEHAVIORAL ECOLOGY OF NOCTURNAL MAMMALS OF TAITA HILLS, KENYA
<p>Sound samples from PhD dissertation by Hanna Rosti</p><p>These sound samples include calls of following species</p><p>S1 Paragalago rondoensis, Saadani National Park, Tanzania, recorded by C. Hemp</p><p>S2 Paragalago orinus, Pugu Tanzania, recorded by A. Perkin</p><p>S3 Paragalago cocos, Shimba Hills National Reserve, Kenya, recorded by H. Rosti</p><p>S4 Paragalago zanzibaricus zanzibaricus, Zanzibar, Jozani, Tanzania, recorded by H. Rosti</p><p>S5 Paragalago zanzibaricus udzunwensis, Matundu, recorded by P. Honess</p><p>S6 Paragalago granti, Mdimba, Tanzania, recorded by S. Bearder</p><p>S7 Taita dwarf galago from Mbololo forest, Taita Hills, Kenya, recorded by H. Rosti</p><p>S8 Taita dwarf galago from Ngangao forest, Taita Hills, Kenya, recorded by H. Rosti</p><p>S9 Paragalago cocos, Diani Beach Kenya, recorded by H. Rosti</p><p>S10 Taita tree hyrax singing, Mbololo forest, Taita Hills, Kenya, recorded by H. Rosti</p><p>S11 Long 22 min recording of Taita tree hyrax singing, Mbololo forest, Taita Hills, Kenya, recorded by H. Rosti</p><p>S12 Rock hyrax song, Israel. Recorded by A. Ilany</p><p>S13 Strangled thwack from Taita Hills, Kenya, recorded by H. Rosti</p><p>S14 Dendrohyrax arboreus calls from Nanuyki, Kenia, recorded by H. Rosti</p><p>S15 Dendrohyrax dorsalis calls from Ostrava Zoo, Czechia, recorded by H. Rosti</p>
Figs 61–63 in Two new species of the genus Oryctopterus (Orthoptera: Stenopelmatidae: Oryctopinae) from India, with some notes on biology
Figs 61–63. Oryctopterus yeshwanthi sp. nov. Female genitalia. Holotype (UASB). 61. Supragenital plate, dorsal view (macerated specimen). 62. Supragenital plate, ventral view (macerated specimen). 63. Subgenital plate, dorsal view (macerated specimen). Scale bars = 1 mm.
Figs 57–60 in Two new species of the genus Oryctopterus (Orthoptera: Stenopelmatidae: Oryctopinae) from India, with some notes on biology
Figs 57–60. Oryctopterus yeshwanthi sp. nov. Holotype, ♀ (UASB). 57. Abdomen, dorsal view. 58. Abdomen, lateral view. 59. Supragenital plate. 60. Subgenital plate. Scale bars = 1 mm.
Figs 48–52. Oryctopterus species. 48 in Two new species of the genus Oryctopterus (Orthoptera: Stenopelmatidae: Oryctopinae) from India, with some notes on biology
Figs 48–52. Oryctopterus species. 48. Oryctopterus lagenipes (Karny, 1935), allotype, ♂, from Colombo, Sri Lanka (Karny 1937: pl. 7 fig. 2; available from Orthoptera species file). 49–52. Oryctopterus varuna sp. nov. 49. Walking posture. 50. Defending a frontal attack. 51. Abdomen and fore-legs raised when poked on thorax. 52. Initiation of digging. Images not to scale.
Figs 64–69 in Two new species of the genus Oryctopterus (Orthoptera: Stenopelmatidae: Oryctopinae) from India, with some notes on biology
Figs 64–69. Oryctopterus yeshwanthi sp. nov., female genitalia. Holotype (UASB). 64. Dorsal view. 65. Ventral view with VIII sternite intact. 66. Ventral view without VIII sternite. 67. Spermatheca. 68. VIII Sternite, dorsal view. 69. VIII Sternite, ventral view. Scale bars = 1 mm.
Figs 37–39 in Two new species of the genus Oryctopterus (Orthoptera: Stenopelmatidae: Oryctopinae) from India, with some notes on biology
Figs 37–39. Ovary, ovarioles and egg of Oryctopterus varuna sp. nov. Paratype, ♀ (NBAIR). 37. Ovary. 38. Ovariole. 39. Egg. Scale bars: 37–38 = 1 mm; 39 = 0.1 mm.
ScienceDex guides
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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.