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729 results for “Slug”
Figure 34. Paradoris indecora. A in A taxonomic revision of Paradoris sea slugs (Mollusca, Gastropoda, Nudibranchia, Doridina)
Figure 34. Paradoris indecora. A, granulation on the dorsal notum, with pigments, syntype #4 of granulata, scale = 1.8 mm. B, grooved oral tentacle, holotype of indecora, scale = 0.5 mm. C, granulation on the dorsal notum, holotype of indecora, scale = 1.3 mm. D, nervous system, dorsal view, syntype #5 of granulata, scale = 1.8 mm.
Figure 27. Paradoris erythraeensis, reproductive system. A in A taxonomic revision of Paradoris sea slugs (Mollusca, Gastropoda, Nudibranchia, Doridina)
Figure 27. Paradoris erythraeensis, reproductive system. A, general view, CASIZ 099390, scale = 1 mm. B, distal part with two accessory glands and two stylet sacs, CASIZ 099390, scale = 0.45 mm. C, spermatic pouches and ducts, CASIZ 099390, scale = 0.9 mm. D, distal part with two possible stylet sacs (only one sac visible on this side), CASIZ 074477 #2, scale = 0.6 mm. E, distal part with two possible stylet sacs, CASIZ 074477 #2, scale = 0.6 mm. F, general view (only one stylet sac visible), CASIZ 074477 #1, scale = 1.5 mm. G, distal part with two accessory glands and two stylet sacs, CASIZ 074477 #1, scale = 0.9 mm.
Figure 46. Paradoris liturata, dorsal notum. A, CASIZ 097595 in A taxonomic revision of Paradoris sea slugs (Mollusca, Gastropoda, Nudibranchia, Doridina)
Figure 46. Paradoris liturata, dorsal notum. A, CASIZ 097595 #1, scale = 200 µm. B, CASIZ 097595 #1, scale = 20 µm.
Figure 20. Paradoris erythraeensis. A in A taxonomic revision of Paradoris sea slugs (Mollusca, Gastropoda, Nudibranchia, Doridina)
Figure 20. Paradoris erythraeensis. A, dorsal notum, SAM A32370, scale = 100 µm. B, dorsal notum, CASIZ 074477 #1, scale = 100 µm. C, dorsal notum, CASIZ 157029, scale = 100 µm. D, dorsal notum, CASIZ 099390, scale = 100 µm. E, dorsal notum, CASIZ 099390, scale = 20 µm. F, surface of a branchial plume, CASIZ 099390, scale = 20 µm. G, copulatory organ, CASIZ 099390, scale = 20 µm.
Fig. 2 in The effect of various environmental factors on the distribution of terrestric slugs (Gastropoda: Pulmonata: Arionidae) - An exemplary study
Fig. 2: Scheme illustrating the study area with its four sub-units. The area is characterized by the alternating sequence of small forests and meadows exhibiting a predominance of different plant associations, respectively. The sketch below shows the arrangement of single sample points within each of the four areas.
Fig. 3 in The effect of various environmental factors on the distribution of terrestric slugs (Gastropoda: Pulmonata: Arionidae) - An exemplary study
Fig. 3: Distribution maps for the slug groups investigated in this study. As clearly recognizable from the graphs, at the time of the investigation slug distribution within the forest areas is more highly developed with respect to that on the meadows.
Fig. 1 in The effect of various environmental factors on the distribution of terrestric slugs (Gastropoda: Pulmonata: Arionidae) - An exemplary study
Fig. 1: Drawings illustrating the size and habit of the four snail species which were included into the present investigation: a) Arion ater, b) A. subfuscus agg., c) A. fasciatus agg., d) A. hortensis agg.
Figure 11 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 11. Genitalia of Rathouisia sinensis from Nandaheyuan, Nanjing, Jiangsu Province, China, M. Wu leg. 21.9.2021 (FGC 51209): A, general view; B, distal male genitalia. See Morphological study for explanation of abbreviations.
Figure 13 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 13. Illustrations of the genitalia of Rathouisia sinensis enlarged and re-interpreted according to our re-examination. See Morphological study for explanation of abbreviations.
Figure 9 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 9. Maximum likelihood (ML) tree of concatenated COI + 18S rDNA sequences obtained from Barkeriella museensis gen. et sp. nov. and Rathouisia sinensis compared with sequences deposited in GenBank for representatives of the families Rathouisiidae, Onchidiidae and Veronicellidae (see Supporting Information, Tables S1, S2 for sequences obtained from GenBank for analysis). Concatenated sequences are listed with species names. They were 2184 positions in length (566 COI + 1618 16S rDNA). Bootstrap support above 50% from ML (left) and NJ (middle) analysis, as well as posterior probabilities PP above 0.5 (right) from Bayesian inference analysis are indicated next to the branches. Bootstrap analysis was run with 1000 replicates (Felsenstein, 1985). The tree was rooted with stylommatophoran Deroceras reticulatum KF894313 (COI) and AY145373 (18S rDNA) sequences deposited in GenBank by Rowson et al. (2014) and Passamaneck et al. (2004), respectively.
Figure 12 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 12. Genitalia of Rathouisia sinensis from Nandaheyuan, Nanjing, Jiangsu Province, China, M. Wu leg. 21.9.2021 (FGC 51209): A, gonad, male proximal genitalia and female distal genitalia; B, another view of gonad, male proximal genitalia and female distal genitalia; C, gonad, vagina and male proximal genitalia. See Morphological study for explanation of abbreviations.
Figure 1 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 1. Live specimen of Barkeriella museensis gen. et sp. nov. from the tropical greenhouse of the Science Museum (MUSE) of Trento, Italy, Debora Barbato leg. 4.5.2019 (FGC 51191).
Figure 8 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 8. Maximum likelihood (ML) tree of concatenated COI + 16S rDNA + ITS2 (flanked with 5.8S and 28S rDNA) + H3 sequences obtained from Barkeriella museensis gen. et sp. nov. and Rathouisia sinensis compared with sequences deposited in GenBank for representatives of the other systellommatophoran families Onchidiidae and Veronicellidae (see Supporting Information, Table S8 for concatenated sequence sets used in analysis). Concatenated sequences were 2122 positions in length (614 COI + 458 16S rDNA + 54 5.8S rDNA + 662 ITS2 + 40 28S rDNA + 294 H3). Bootstrap support above 50% from ML (left) and NJ (middle) analysis, as well as posterior probabilities above 0.5 PP, from Bayesian inference analysis (right) are indicated next to the branches. Bootstrap analysis was run with 1000 replicates (Felsenstein, 1985). The tree was rooted with stylommatophoran Monacha pantanellii sequences (see Supporting Information, Table S8).
Figure 10 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 10. Illustrations of the genitalia of Rathouisia sinensis and their legend published by Rathouis (1885).
Figure 3 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 3. Genitalia of Barkeriella museensis gen. et sp. nov. from the tropical greenhouse of the Science Museum (MUSE) of Trento, Italy, Debora Barbato leg. 4.5.2019 (FGC 51191): A, general view; B, distal female and proximal male genitalia; C, distal male genitalia. See Morphological study for explanation of abbreviations.
Figure 2 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 2. Body and internal anatomy of Barkeriella museensis gen. et sp. nov. from the tropical greenhouse of the Science Museum (MUSE) of Trento, Italy, Debora Barbato leg. 4.5.2019 (FGC 51191): A, B, D, general view of internal anatomy of adult (A, D) and juvenile (B) specimens; C, head and anterior portion of body in ventral view. In A, salivary glands were partly cut away. See Morphological study for explanation of abbreviations.
Figure 7 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 7. Maximum likelihood (ML) tree of ITS2 (flanked with 5.8S and 28S rDNA) sequences obtained from Barkeriella museensis gen. et sp. nov. (ITS2 1) and Rathouisia sinensis (ITS2 2–ITS2 4) compared with sequences deposited in GenBank for representatives of the other systellommatophoran families Onchidiidae and Veronicellidae (see Supporting Information, Table S3). ITS2 (flanked with 5.8S and 28S rDNA) sequences were 774 positions (54 5.8S rDNA, 680 ITS2, 40 28SrDNA) in length. Numbers next to the branches indicate bootstrap support above 50% calculated for 1000 replicates by ML (left) and NJ (right) analysis (Felsenstein, 1985). The tree was rooted with stylommatophoran Monacha pantanellii sequence deposited in GenBank by us (see Table 3).
Figure 5 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 5. Radula of Barkeriella museensis gen. et sp. nov. from the tropical greenhouse of the Science Museum (MUSE) of Trento, Italy, Debora Barbato leg. 4.5.2019 (FGC 51191): A, general view; B, detail of central sector [c, central teeth (A, B)].
Figure 6 in A small slug from a tropical greenhouse reveals a new rathouisiid lineage with triaulic tritrematic genitalia (Gastropoda: Systellommatophora)
Figure 6. Maximum likelihood (ML) tree of concatenated COI + 16S rDNA haplotypes obtained from Barkeriella museensis gen. et sp. nov. and Rathouisia sinensis compared with sequences deposited in GenBank for representatives of the families Onchidiidae, Veronicellidae and Philomycidae (see Supporting Information, Tables S1, S4 for sequences obtained from GenBank for analysis). Concatenated sequences are listed with species names. They were 1028 positions in length (573 COI + 455 16S rDNA). Bootstrap support above 50% from ML (left) and NJ (middle) analysis, as well as posterior probabilities PP above 0.5 from Bayesian Inference analysis (right) are indicated next to the branches. Bootstrap analysis was run with 1000 replicates (Felsenstein, 1985). The tree was rooted with stylommatophoran Monacha pantanellii sequences deposited in GenBank by us and by Pieńkowska et al. (2020) according to Table 3 and Supporting Information, Table S1, respectively.
Box iron and slug - free download
Model made in Zbrush and textures added in Substance Painter. This type of iron would have been in use in the 1890s - for ironing clothes. The iron slug was heated on a fire or on a kitchen range before being placed into the cavity in the iron - the trap door slides upwards and can then be closed again afterwards. Click this link for more information on this type of iron https://www.objectlessons.org/houses-and-homes-victorians/box-iron--slug-victorian-original/s59/a962/ I decided to model this after seeing a Time Team YouTube video presented by Dani Wootton featuring an iron slug found in 2021 by a metal detectorist during a dig in Cornwall - Boden Fogou. I am a great fan of Time Team and a supporter of the current YouTube channel via Patreon. You are free to use this model in any way. Source: Objaverse 1.0 / Sketchfab
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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
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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.