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Fig. 7 in Molecular Identification of Mid to Final Stage Slipper Lobster Phyllosoma Larvae of the Genus (Crustacea: Decapoda: Scyllaridae) Collected in the Pacific with Descriptions of Their Larval Morphology.
Fig. 7. Phyllosoma larva of Chelarctus virgosus, stage VIII. A, ventral view; B, ventral view of eye, antennule and antenna; C, 2nd maxillule, 1st and 2nd maxilliped; D, distal end of 2nd maxilliped; E ventral view of 1st maxillule; F, ventral view of 5th pereiopod and abdomen; G, dorsal view of 5th pereiopod and abdomen.
Fig. 12 in Molecular Identification of Mid to Final Stage Slipper Lobster Phyllosoma Larvae of the Genus (Crustacea: Decapoda: Scyllaridae) Collected in the Pacific with Descriptions of Their Larval Morphology.
Fig. 12. Phyllosoma larva of?Chelarctus sp-1, stage V. A, ventral view; B, ventral view of eye, antennule and antenna; C, 2nd maxillule, 1st and 2nd maxilliped; D, distal end of 2nd maxilliped; E, ventral view of 1st maxillule; F, ventral view of 5th pereiopod and abdomen; G, dorsal view of 5th pereiopod and abdomen.
Fig. 10 in Molecular Identification of Mid to Final Stage Slipper Lobster Phyllosoma Larvae of the Genus (Crustacea: Decapoda: Scyllaridae) Collected in the Pacific with Descriptions of Their Larval Morphology.
Fig. 10. Phyllosoma larva of Chelarctus aureus, stage VIII. A, ventral view; B, ventral view of eye, antennule and antenna; C, 2nd maxillule, 1st and 2nd maxilliped; D, distal end of 2nd maxilliped; E ventral view of 1st maxillule; F, ventral view of 5th pereiopod and abdomen; G, dorsal view of 5th pereiopod and abdomen.
Fig. 15 in Molecular Identification of Mid to Final Stage Slipper Lobster Phyllosoma Larvae of the Genus (Crustacea: Decapoda: Scyllaridae) Collected in the Pacific with Descriptions of Their Larval Morphology.
Fig. 15. Phyllosoma larva of?Chelarctus sp-1, stage VIII. A, ventral view; B, ventral view of eye, antennule and antenna; C, 2nd maxillule, 1st and 2nd maxilliped; D, distal end of 2nd maxilliped; E ventral view of 1st maxillule; F, ventral view of 5th pereiopod and abdomen; G, dorsal view of 5th pereiopod and abdomen.
Fig. 9 in Molecular Identification of Mid to Final Stage Slipper Lobster Phyllosoma Larvae of the Genus (Crustacea: Decapoda: Scyllaridae) Collected in the Pacific with Descriptions of Their Larval Morphology.
Fig. 9. Phyllosoma larva of Chelarctus aureus, stageVII. A, ventral view; B, ventral view of eye, antennule and antenna; C, 2nd maxillule, 1st and 2nd maxilliped; D, distal end of 2nd maxilliped; E ventral view of 1st maxillule; F, ventral view of 5th pereiopod and abdomen; G, dorsal view of 5th pereiopod and abdomen.
Fig. 6 in Molecular Identification of Mid to Final Stage Slipper Lobster Phyllosoma Larvae of the Genus (Crustacea: Decapoda: Scyllaridae) Collected in the Pacific with Descriptions of Their Larval Morphology.
Fig. 6. Phyllosoma larva of Chelarctus virgosus, stage VII. A, ventral view; B, ventral view of eye, antennule and antenna; C, 2nd maxillule, 1st and 2nd maxilliped; D, distal end of 2nd maxilliped; E, ventral view of 1st maxillule; F, ventral view of 5th pereiopod and abdomen; G, dorsal view of 5th pereiopod and abdomen.
Fig. 8 in Molecular Identification of Mid to Final Stage Slipper Lobster Phyllosoma Larvae of the Genus (Crustacea: Decapoda: Scyllaridae) Collected in the Pacific with Descriptions of Their Larval Morphology.
Fig. 8. Phyllosoma larva of Chelarctus aureus, stage VI. A, ventral view; B, ventral view of eye, antennule and antenna; C, 2nd maxillule, 1st and 2nd maxilliped; D, distal end of 2nd maxilliped; E ventral view of 1st maxillule; F, ventral view of 5th pereiopod and abdomen; G, dorsal view of 5th pereiopod and abdomen.
dataset: The Effects of Density on the Growth and Temperature Production of Tenebrio molitor Larvae
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Supplementary files to "Impact of Heat Treatment on the Microbiological Quality of Frass Originating from Black Soldier Fly Larvae (Hermetia illucens)"
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Supplementary file to "Effect of heat treatment on microbiological safety of supermarket food waste as substrate for black soldier fly larvae (Hermetia illucens)"
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Assessing amino acid solubility of black soldier fly larvae meal in Atlantic salmon (Salmo salar) in vivo and in vitro
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Fig. 3 in The subnivium, a haven for Trichinella larvae in host carcasses
Fig. 3. Fox carcasses preserved above the snow (on the left) and beneath the snow (on the right) after 112 days.
Fig. 2 in The subnivium, a haven for Trichinella larvae in host carcasses
Fig. 2. Reproductive Capacity index (RCI) of Trichinella britovi larvae, minimum and maximum temperature and relative humidity of fox and raccoon dog carcasses stored beneath and above the snow during the study period. Panel A, RCI of T. britovi larvae present in muscles of fox carcasses stored below (red line) or above (green line) the snow and of the raccoon dog carcasses stored below (violet line) or above (light blue line) the snow. Panel B, minimum (green line) and maximum (violet line) temperature below the snow and minimum (light blue line) and maximum (red line) daily temperature above the snow. Panel C, daily relative humidity (%) of carcasses above the snow. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 1 Catapotia laevissima Thomson, adult morphology. a Dorsal habitus. b in The debris-cloaking larva of Catapotia laevissima and the origin of defensive strategies in Anamorphidae and other Coccinelloidea (Coleoptera)
Fig. 1 Catapotia laevissima Thomson, adult morphology. a Dorsal habitus. b Ventral habitus of female. c Antenna. d Frontal view of head. e Ventral view of head. f Abdominal apex of male. g Mesotarsus. h Metatarsal claws
Fig. 7 in A new Loriciferan, Scaberiloricus samba gen. et sp. nov., links the Higgins larva and the aberrant Shira larva
Fig. 7 Light micrographs showing overviews and details of intermediate instar Higgins larva of Scaberiloricus samba gen. et sp. nov., containing next larval instar, NHMD-1184552. A Overview, focused on dorsal cuticle. B Overview, focused internally in larva, on subsequent larval instar. C Head, dorsal view. D Head, focused internally. E Posterior part of lorica, focused on posterodorsal seta. F Posterior part of lorica, focused on posterolateral seta. G Posterior part of
Fig. 1 in A new Loriciferan, Scaberiloricus samba gen. et sp. nov., links the Higgins larva and the aberrant Shira larva
Fig. 1 Map showing the three stations on the continental shelf and slope off Rio de Janeiro marked with flags. Inset shows South America with the sampling region marked
Fig. 5 in A new Loriciferan, Scaberiloricus samba gen. et sp. nov., links the Higgins larva and the aberrant Shira larva
Fig. 5 Scanning electron micrographs showing head morphology details of holotypic, early instar Higgins larva of Scaberiloricus samba gen. et sp. nov., NHMD-1184551. A Mouth cone, lateral view. B Head, frontal view, dorsal is left. C Detail showing clavoscalids of introvert Row 1. D–I Rotating series showing introvert morphol-
Fig. 14 Erythraeus regalis, larva. a in Towards resolving the double classification in Erythraeus (Actinotrichida: Erythraeidae): matching larvae with adults using 28S sequence data and experimental rearing
Fig. 14 Erythraeus regalis, larva. a Gnathosoma and idiosoma, dorsal view. b Dorsal opisthosomal seta. c Gnathosoma and idiosoma, ventral view
Fig. 11 Erythraeus cinereus, larva. a Leg I. b Leg II. c Leg III. d Tarsus I. e Tarsus II in Towards resolving the double classification in Erythraeus (Actinotrichida: Erythraeidae): matching larvae with adults using 28S sequence data and experimental rearing
Fig. 11 Erythraeus cinereus, larva. a Leg I. b Leg II. c Leg III. d Tarsus I. e Tarsus II (d, e, only specialized setae shown)
Fig. 9 Erythraeus cinereus, larva. a Chelicera. b in Towards resolving the double classification in Erythraeus (Actinotrichida: Erythraeidae): matching larvae with adults using 28S sequence data and experimental rearing
Fig. 9 Erythraeus cinereus, larva. a Chelicera. b Gnathosoma (and scutum), dorsal view. c Gnathosoma, ventral view. d Palp tibia. e Palp tarsus
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.