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Figure 2 in Protozoan ciliate epibionts on the freshwater shrimp Caridina (Crustacea, Decapoda, Atyidae) from the Malili lake system on Sulawesi (Indonesia)
Figure 2. (a) Acineta; (b) Thuricola; (c) Cothurnia; (d) Vorticella; (e) Opercularia; (f) Zoothamnium. l, lorica; ma, macronucleus; mi, micronucleus; my, myoneme; o, operculum; s, stalk; sa, suprastylar area; t, tentacles.
Figure 1 in Protozoan ciliate epibionts on the freshwater shrimp Caridina (Crustacea, Decapoda, Atyidae) from the Malili lake system on Sulawesi (Indonesia)
Figure 1. The Malili lake system on the Indonesian island of Sulawesi with its three main lakes: Lake Towuti, Lake Mahalona, and Lake Matano.
Figure 24 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 24. Distribution of each epibiont species (mean densities) along the anterioposterior axis of Caridina ensifera. Anatomical units are considered individually. per, pereiopod; ple, pleopod; uro, uropod.
Figure 21 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 21. Dendrogram of the Hierarchical Cluster Analysis (anatomical units) performed using the mean densities of epibionts on the different anatomical units of the shrimps analysed (metric distance: City Block (Manhattan); method: Ward).
Figure 2 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 2. The epibiont species. (a) Acineta sulawesiensis; (b) Podophrya maupasi; (c) Spelaeophrya polypoides; (d) Zoothamnium intermedium; (e) Vorticella globosa; (f) Cothurnia compressa; (g) Amphileptus fusidens; (h) Embata laticeps; (i) Embata laticeps, the trophi. bd, basal disc; bl, basal lorica; c, cloaca; cv, contractile vacuole; l, lorica; ma, macronucleus; mi, micronucleus; my, myoneme; r, rostrum; s, stalk; st, stomach; t, tentacles; td, trochal discs; to, toes; v, vitellarium.
Figures 11–19 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figures 11–19. (11) Zoothamnium intermedium, area of stalk confluence for attachment to the shrimp surface (silver carbonate, ×400). (12) Vorticella globosa, a specimen with the contracted stalk (silver carbonate, ×710). (13) Cothurnia compressa, individual showing the lorica (silver carbonate, ×820). (14) Amphileptus fusidens, the body shape and the arrangement of the kineties (silver carbonate, ×770). (15–19) Embata laticeps: (15) the entire individual showing the trochal discs, rostrum, and toes (methyl green, ×200); (16) the anterior area of the body with the trochal discs and the rostrum (methyl green, ×410); (17) detail of the rostrum (methyl green, ×410); (18, 19) the trophi of the mastax, showing the unci and the teeth (×520).
Figure 20 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 20. Two first principal components of the Principal Component Analysis performed using the mean density of epibionts on each anatomical unit of the different shrimps analysed.
Figure 23 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 23. Distribution of each epibiont species (mean densities) and total mean density of epibionts, along the anterioposterior axis of Caridina ensifera. Anatomical units are considered in five groups.
Figures 3–10 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figures 3–10. (3, 4) Acineta sulawesiensis (silver carbonate, ×1070): (3) the macronucleus and the anterior prolongation of the lorica; (4) the actinophores with the tentacles. (5) Podophrya maupasi (methyl green, ×792). (6–9) Spelaeophrya polypoides: (6) individual showing the basal disc, the tentacles and the pore of the contractile vacuole (arrow) (SEM, ×280); (7) several specimens in their location on the basibiont surface (SEM, ×230); (8) a specimen showing the elongate macronucleus (silver carbonate, ×450); (9) the macronucleus irregular and the inferior part articulate of the body (silver carbonate, ×360). (10) Zoothamnium intermedium, a colony showing the stalk and the shape of the zooids (silver carbonate, ×420).
Figure 22 in Epibiontic communities on the freshwater shrimp Caridina ensifera (Crustacea, Decapoda, Atyidae) from Lake Poso (Sulawesi, Indonesia)
Figure 22. Dendrogram of the Hierarchical Cluster Analysis (epibiont species) performed using the mean densities of epibionts on the different anatomical units of the shrimps analysed (metric distance: City Block (Manhattan); method: Ward).
Fig. 4 in A New Species Of The Y-Larva Genus Hansenocaris Itô, 1985 (Crustacea: Thecostraca: Facetotecta) From Indonesia, With A Review Of Y-Cyprids And A Key To All Their Described Species
Fig. 4. Hansenocaris papillata, new species, holotype y-cypris, morphology of thorax and abdomen, SEM: A – trunk, lateral view, with thoracic and abdominal segments numbered in Roman and Arabic numerals, respectively; B – close-up of rectangle in Fig. 4A showing cuticle of fifth and sixth thoracic segments, with borders of segments indicated by arrowheads; C – posterior part of trunk, with thoracic and abdominal segments numbered in Roman and Arabic numerals respectively, borders of segments indicated by arrowheads; D – posterior part of telson, dorsolateral view, with furcal setae designated as "a", "b" and "c"; E – posterior part of telson, ventrolateral view. Scale bars in µm.
Fig. 3 in A New Species Of The Y-Larva Genus Hansenocaris Itô, 1985 (Crustacea: Thecostraca: Facetotecta) From Indonesia, With A Review Of Y-Cyprids And A Key To All Their Described Species
Fig. 3. Hansenocaris papillata, new species, holotype y-cypris, morphological details, SEM: A – anterior end, ventrolateral view, with papilliform protrusions indicated by asterisk; B – ventral papilliform protrusion at anterior end, with cuticular pore of head shield indicated by arrowhead; C – labrum, lateral view; D – antennule, distal part; E – thoracopods, anteriolateral view; F – thoracopods, lateral view, with thoracic segments numbered; G – thoracopods, rear view, with seta on inner margin of second segment of endopod indicated by asterisk. Scale bars in µm.
Fig. 1 in Association Between The Scallop, Pedum Spondyloideum, (Bivalvia: Pteriomorphia: Pectinidae) And Scleractinian Corals From The Wakatobi Marine National Park (Southeastern Sulawesi, Indonesia)
Fig. 1. Location map of the study area. The white arrow points to Hoga and Kaledupa Islands. The entire Tukang Besi Archipelago lies within the Wakatobi Marine National Park.
Fig. 2 in A New Species Of The Y-Larva Genus Hansenocaris Itô, 1985 (Crustacea: Thecostraca: Facetotecta) From Indonesia, With A Review Of Y-Cyprids And A Key To All Their Described Species
Fig. 2. Hansenocaris papillata, new species, general appearance and ultrastructure of head shield of holotype y-cypris, SEM: A – general appearance, lateral view, with anterior papilliform protrusions indicated by asterisk; B – head shield, dorsolateral view, with locations of anterior and posterior pairs of lattice organs indicated by rectangles, medial groove indicated by asterisk; C – anterior part of head shield, with anterior lattice organs surrounded by dotted ellipses; D – anterior pairs of lattice organs; E – posterior part of head shield; F – posterior pairs of lattice organs. Scale bars in µm.
Fig. 1 in A New Species Of The Y-Larva Genus Hansenocaris Itô, 1985 (Crustacea: Thecostraca: Facetotecta) From Indonesia, With A Review Of Y-Cyprids And A Key To All Their Described Species
Fig. 1. Hansenocaris papillata, new species, habitus of holotype y-cypris, lateral view, with anterior papilliform protrusions indicated by asterisk, thoracic and abdominal segments numbered in Roman and Arabic numerals respectively. Scale bar = 15 µm.
Fig. 3 in Association Between The Scallop, Pedum Spondyloideum, (Bivalvia: Pteriomorphia: Pectinidae) And Scleractinian Corals From The Wakatobi Marine National Park (Southeastern Sulawesi, Indonesia)
Fig. 3. Associations with Pedum spondyloideum: A, Montipora informis inhabited by Pedum; B, Pedum imbedded in M. danae; C, Pavona clavus with Pedum; D, Pedum in Pav. duerdeni; E, Porites rus inhabited by Pedum; F, Pedum aggregation in Cyphastrea microphthalma; G, Favia stelligera with Pedum. A–D are new associations; E, G are new records for Indonesia; Scale bars = 1 cm.
Fig. 2 in Association Between The Scallop, Pedum Spondyloideum, (Bivalvia: Pteriomorphia: Pectinidae) And Scleractinian Corals From The Wakatobi Marine National Park (Southeastern Sulawesi, Indonesia)
Fig. 2. Location of the study sites around Hoga and Kaledupa Islands. Thin black border represents the reef wall and the symbol (■) represents Sampela village.
Fig. 2 in Atyid Shrimps From Lake Poso, Central Sulawesi, Indonesia With Description Of A New Species (Crustacea: Decapoda: Caridea)
Fig. 2. Caridina ensifera: A, telson; B, distal portion of telson; C, third pereiopod; D, dactylus of third pereiopod; E, fifth pereiopod; F, dactylus of fifth pereiopod; G, endopod of male first pleopod; H, appendix masculina and appendix interna of male second pleopod; I, preanal carina; J, diaeresis. Scale bars: A, C, E, I = 0.5 mm; B, G, H, J = 0.2 mm; D, F = 0.1 mm. (ZRC).
Fig. 1 in Atyid Shrimps From Lake Poso, Central Sulawesi, Indonesia With Description Of A New Species (Crustacea: Decapoda: Caridea)
Fig. 1. Caridina ensifera: A, cephalothorax and cephalic appendages; B, scaphocerite; C, mandible; D, maxillula; E, maxilla; F, first maxilliped; G, second maxilliped; H, third maxilliped; I, first pereiopod; J, second pereiopod. Scale bars: A, B = 1 mm; C–J = 0.5 mm. (ZRC).
Fig. 4 in Atyid Shrimps From Lake Poso, Central Sulawesi, Indonesia With Description Of A New Species (Crustacea: Decapoda: Caridea)
Fig. 4. Caridina longidigita, new species: A, cephalothorax and cephalic appendages; B, telson; C, distal portion of telson; D, scaphocerite; E, mandible; F, maxillula; G, maxilla; H, first maxilliped; I, second maxilliped; J, third maxilliped; K preanal carina; L, diaeresis. Scale bars: A, D = 1 mm; B, E–K = 0.5 mm; C, L = 0.2 mm. (paratype, ZRC 2007.0748).
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.