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Fig. 8 in Taxonomy of 16 indigenous ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 8. Photomicrograph of Strombidium apolatum in vivo (A, B) and after protargol impregnation (C, D). A. Body shape in vivo with food vacuoles filled with green algae. Note that the body is covered with hemitheca (arrows). B. Extrusomes. C, D. Nuclear apparatus, the discontinuous girdle kinety, and the ventral kinety. E, extrusomes; GK, girdle kinety. Scale bars = 20 μm.
Fig. 16 in Taxonomy of 16 indigenous ciliate species (Protozoa, Ciliophora) from South Korea
Fig. 16. Photomicrograph of Uronemita binucleata, details of somatic and oral ciliature after protargol impregnation(A, B). K1-n, somatic kineties; M1-3, oral membranelles; PM, paroral membrane; SC, scutica. Scale bars = 10 μm.
Fig. 1. Eurystomatella sinica after protargol impregnation. A, C. Ventral views showing infraciliature and macronucleus. B in Taxonomy of four scuticociliates (Protozoa: Ciliophora) from coastal waters of South Korea
Fig. 1. Eurystomatella sinica after protargol impregnation. A, C. Ventral views showing infraciliature and macronucleus. B. Dorsal view showing somatic kineties. Ma, macronucleus; M1, M2a, M2b, M3, oral membranelles; PM, paroral membrane; SK, somatic kineties. Scale bar = 30 μm.
Fig. 4 in Taxonomy and distribution of two small negligible diatoms of Plagiogrammopsis minima and Diploneis aestuarii from Northeast Asian tidal flats
Fig. 4. Light microscope (LM) photographs of Diploneis aestuarii: A-N. Size range in valve view. Scale bar = 10 μm.
Fig. 3 in Taxonomy and distribution of two small negligible diatoms of Plagiogrammopsis minima and Diploneis aestuarii from Northeast Asian tidal flats
Fig. 3. Scanning electron microscope (SEM) photographs of Plagiogrammopsis minima from A-D (Minami-arao, Japan), E, F (Nakdong, Busan, Korea): A. Entire view of the girdle. Arrow indicates row of the short spines on the valve face. Large arrowhead indicates girdle bands ornamented by a row of poroids; B. External view of the valve face with girdle bands. Right arrow indicates pseudoseptum extends from margin to margin in the central fascia. Left arrow indicates the cribrum occlusion; C. External view of the whole valve. Large arrowheads indicate the two ocelluli which are twisted to opposite directions along the valve axis. Arrow indicates the cribrum occlusion; D. Internal view of the whole valve. Large arrowheads indicate the two ocelluli which are twisted to opposite directions at valve apex. Arrow indicates internal view of the cribrum occlusion located outside of the areolae; E. Right arrow indicates the pseudosptum while left arrow indicates external aperture of the rimoportula; F. Right arrow indicates the pseudosptum while left arrow indicates a rimoportula.
FIGURE 16. Louteridium parayi. A in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation
FIGURE 16. Louteridium parayi. A. Habit (Breedlove 67024). B. Bracteoles and flower (Breedlove & Thorne 30789). C. Calyx (Breedlove 28970). D. Corolla bud opened to show stamens (Breedlove 67024). E. Stigma (Breedlove 67024). F. Dehisced capsule (Breedlove 28970). G. Seed (Breedlove 28970). Drawn by Ellen del Valle.
FIGURE 9 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation
FIGURE 9. Map of Costa Rica (with provinces) and Panama (with provinces and comarcas) with distribution of Louteridium costaricense. Dots may pertain to multiple collections.
FIGURE 5 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation
FIGURE 5. Pollen of Louteridium (except for L. koelzii, which was unavailable). A. L. brevicalyx (Daniel & Steinmann 11913). B. L. chartaceum (Daniel & Butterwick 5905). C. L. costaricense (van der Werff 7019). D. L. dendropilosum (Daniel et al. 11784). E. L. donnell-smithii (Daniel & Véliz 11337). F. L. mexicanum (Breedlove & Thorne 30786). G. L. parayi (Daniel & Wendt 5805). H. L. parayi (Breedlove & Daniel 70889) with intine protruding from apertures (revealing their number). I. L. purpusii (Breedlove & Smith 31613). J. L. purpusii (Breedlove & Smith 31613), with intine protruding from apertures (revealing their number). K. L. rzedowskianum (Kruse 1380). L. L. tamaulipense (Hutchinson s.n.). All scales = 10 μm.
FIGURE 3 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation
FIGURE 3. Trichomes (SEM) of Louteridium spp. A, B. L. dendropilosum (Daniel et al. 11784), with dendritic trichomes bearing scattered micropapillae. C, D. L. donnell-smithii (Breedlove & Daniel 71197), with unbranched trichomes bearing micropapillae mostly arranged in lines.
FIGURE 14. Louteridium koelzii. A in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation
FIGURE 14. Louteridium koelzii. A. Apex of shoot with flush of new leaves (McVaugh & Koelz 1797). B. Branch with inflorescence in flower (McVaugh & Koelz 1507). C. Leaf (McVaugh & Koelz 1797). D. Corolla bud opened (McVaugh & Koelz 1797). E. Dehisced corolla with epipetalous stamens (McVaugh 26180). F. Distal portion of style and stigma (McVaugh 26180). G. Partially dehisced capsule with calyx and pedicel (McVaugh 26180). H. Seed (McVaugh 26180). Drawn by Karin Douthit, copyright reserved to University of Michigan Herbarium, used with permission.
FIGURE 7 in Louteridium (Acanthaceae: Acanthoideae: Ruellieae: Trichantherinae): Taxonomy, Phylogeny, Reproductive Biology, and Conservation
FIGURE 7. Seeds of Louteridium. A. L. donnell-smithii (Breedlove & Bourell 68070). B. L. brevicalyx (Daniel & Steinmann 11913). C. L. brevicalyx in water (Daniel & Steinmann 11913). D. L. dendropilosum (Daniel et al. 11784). E. L. chartaceum (Daniel & Butterwick 5905). F. L. chartaceum (Daniel & Butterwick 5905) in water. G. L. mexicanum (Wendt et al. 3614). H. L. parayi (Breedlove 28970). I. L. purpusii (Breedlove & Smith 31613). J. L. chartaceum (Daniel & Butterwick 5905), detail of dry seed. K. L. chartaceum (Daniel & Butterwick 5905), detail of seed in water. All scales = 1 mm.
FIGURE 2 in Additional Notes on North American Acanthaceae: Biogeography, Distributions, Taxonomy, Lectotypifications, and Catalog of Species
FIGURE 2. Justicia spp. (A, B) and Pseuderanthemum variabile (C, D). A. Flower of J. americana (Daniel & Lott 10530) showing limb of corolla with lateral lobes of lower lip widely spreading from lower-central lobe. B. Flower of J. lanceolata (Daniel 11762) showing limb of corolla with lateral lobes of lower lip barely spreading from lower-central lobe. There is variation in color of the corolla in both species of Justicia. C. Spontaneous plant of P. variabile at San Francisco Conservatory of Flowers (Daniel s.n.). D. Front view of limb of corolla.
Figure 4 in Diadromous fishes from Saint-Pierre and Miquelon archipelago: diagnoses, taxonomy, nomenclature and distribution
Figure 4. – Pungitius pungitius (Linnaeus, 1758): syntypes LSL 34 and 35; scale bar = 1cm; with the permission of the Linnean Society of London (A); MNHN-IC-2022-0020, 32.7 mm SL, Saint-Pierre and Miquelon, Saint-Pierre Island, Milieu Pond (B).
Figure 3 in Diadromous fishes from Saint-Pierre and Miquelon archipelago: diagnoses, taxonomy, nomenclature and distribution
Figure 3. – Gasterosteus aculeatus Linnaeus, 1758: syntypes LSL 29-31; scale bar = 1cm; with the permission of the Linnean Society of London (A); MNHN-IC-2022-0022, 33.7 mm SL, Saint-Pierre and Miquelon (B).
Figure 2 in Diadromous fishes from Saint-Pierre and Miquelon archipelago: diagnoses, taxonomy, nomenclature and distribution
Figure 2. – Apeltes quadracus (Mitchill, 1815): drawning of an individual from New York, USA given by Mitchill (1815: 430, Pl. 1) with its species description (A); MNHN-IC-2022-0021, 26.9 mm SL, Saint-Pierre and Miquelon, Saint-Pierre Island, Airport Pond (B).
Fig. 10 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 10 Diaforobiotus svalbardicus sp. nov.: eggs seen in PCM: A, D, G focus on egg processes surface; B, E, H focus on egg processes midsections; C, F, I focus on egg surface between processes. Triples A–C, D–F, G–I represent three different eggs photographed with dif-
Fig. 1 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 1 Diaforobiotus islandicus (Richters, 1904): habitus and cuticular pores seen in PCM: A adult habitus, dorso-ventral projection (neotype); B, C cuticular pores on dorsal and ventral side of the body, respectively; D pulvinus on the internal surface of leg III. Filled flat arrowheads indicate cuticular bars above the claws in legs I–III. Scale bars inμm
Fig. 8 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 8 Diaforobiotus svalbardicus sp. nov.: bucco-pharyngeal apparatus seen in PCM: A dorsal projection of the entire bucco-pharyngeal apparatus; B, C dorsal (B) and ventral (C) views of the oral cavity armature; D, E dorsal (D) and ventral (E) view of macroplacoids. Empty arrows indicate dorsal spikes, filled flat arrowheads indicate the first band of teeth, empty flat arrowheads indicate the second band of teeth, filled indented arrowheads indicate the third band of teeth, empty indented arrowhead indicates the medial tooth in dorsal portion of the third band of teeth whereas filled arrows indicate constrictions in macroplacoids. Scale bars in μm
Fig. 4 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 4 Diaforobiotus islandicus (Richters, 1904): eggs seen in PCM: A, C, E focus on egg processes; B, D, F focus on egg surface between processes. Pairs A–B, C–D, E–F represent three different eggs photographed with different focus. Filled flat arrowheads indicate rings of pores surrounding egg processes. Scale bars in μm
Fig. 6 in Integrative taxonomy helps to revise systematics and questions the purported cosmopolitan nature of the type species within the genus Diaforobiotus (Eutardigrada: Richtersiusidae)
Fig. 6 Diaforobiotus svalbardicus sp. nov.: habitus and cuticular pores seen in PCM: A adult habitus, dorso-ventral projection (holotype); B, C cuticular pores on dorsal and ventral side of the body, respectively (holotype). Filled flat arrowheads indicate cuticular bars above the claws in legs I–III. Scale bars in μm
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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
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.