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467 results for “Incertae sedis”
Fig. 4 in Duobrachium sparksae (incertae sedis Ctenophora Tentaculata Cydippida): A new genus and species of benthopelagic ctenophore seen at 3,910 m depth off the coast of Puerto Rico
Fig. 4. Location and bathymetry of dive site. A. Dive site north of Puerto Rico, B. Guajataca Canyon and C. The 50 km wide Arecibo Amphitheater on the southern margin of the Puerto Rico trench.
Fig. 3 in Duobrachium sparksae (incertae sedis Ctenophora Tentaculata Cydippida): A new genus and species of benthopelagic ctenophore seen at 3,910 m depth off the coast of Puerto Rico
Fig. 3. Digital illustration of the habit of Duobrachium sparksae n. gen. n. sp. A. tentacular view B. stomodeal view. Illustrations by NB.
Fig. 1 in Duobrachium sparksae (incertae sedis Ctenophora Tentaculata Cydippida): A new genus and species of benthopelagic ctenophore seen at 3,910 m depth off the coast of Puerto Rico
Fig. 1. Stills captured from video observations of Duobrachium sparksae n. gen. n. sp. A. First sighting (USNM 1607331), showing body shape in stomodeal plane and tentacles coiling within tentacle sheath inside the arms. 16:30:40 UTC; B. First sighting (USNM 1607331), showing body shape in tentacular plane and gonads beneath all ctene rows. Cand D. Second sighting (USNM 1607332) showing regular tentilla of tentacles and large embryos/eggs within gonads, highlighting the quality of the HD video. 17:37:36 UTC.
Fig. 2 in Duobrachium sparksae (incertae sedis Ctenophora Tentaculata Cydippida): A new genus and species of benthopelagic ctenophore seen at 3,910 m depth off the coast of Puerto Rico
Fig. 2. Line drawing schematic of Duobrachium sparksae n. gen. n. sp. A. Tentacular view of the main body of the animal. B. Oral view. C. Aboral view. ct - ctene row, g - gonads, m - mouth, ta - tentillum, tent - tentacle, stat - statocyst, sto - stomodeum. Illustrations by NB.
Fig. 5 in Buchnerillo atlanticus sp. nov., a new halophilic woodlouse (Isopoda: Oniscidea: incertae sedis) from the Atlantic coast of the Iberian Peninsula, with ecological remarks
Fig. 5. Buchnerillo atlanticus sp. nov., paratype, ♂ (MBCN 24683). A. Distal part of maxilliped. B. Maxilla. C. Maxillula, outher branch. D. Maxillula, inner branch. E. Left mandible. F. Right mandible. Figure not to scale.
Fig. 7 in Buchnerillo atlanticus sp. nov., a new halophilic woodlouse (Isopoda: Oniscidea: incertae sedis) from the Atlantic coast of the Iberian Peninsula, with ecological remarks
Fig. 7. Distribution of different species of Buchnerillo Verhoeff, 1942: B. litoralis Verhoeff, 1942 (●), unconfirmed records of B. litoralis (?), B. oceanicus Ferrara, 1974 (), B. neotropicalis Taiti, Montesanto & Vargas, 2018 (●), B. atlanticus sp. nov. (★) and unconfirmed records of B. atlanticus sp. nov. (?).
Fig. 3 in Buchnerillo atlanticus sp. nov., a new halophilic woodlouse (Isopoda: Oniscidea: incertae sedis) from the Atlantic coast of the Iberian Peninsula, with ecological remarks
Fig. 3. Buchnerillo atlanticus sp. nov., ♀ (CLLG). A. Whole animal, partially conglobated. B. Last pereonites, pleon and pleotelson, lateral view. C. Tergal setae. D. Short time preserved specimen in lateral view. Scale bars: A, D = 0.5 mm; B = 0.3 mm; C = 0.015 mm.
Fig. 4 in Buchnerillo atlanticus sp. nov., a new halophilic woodlouse (Isopoda: Oniscidea: incertae sedis) from the Atlantic coast of the Iberian Peninsula, with ecological remarks
Fig. 4. Buchnerillo atlanticus sp. nov., paratype, ♂ (MBCN 24683). A. Left half of pereon-tergite 1, extended; the interrupted lines represent the ventral lobe. B. First antenna. C. Second antenna. Figure not to scale.
Fig. 6 in Buchnerillo atlanticus sp. nov., a new halophilic woodlouse (Isopoda: Oniscidea: incertae sedis) from the Atlantic coast of the Iberian Peninsula, with ecological remarks
Fig. 6. Buchnerillo atlanticus sp. nov., paratype, ♂ (MBCN 24683). A. Pleotelson and uropods, ventral view. B. First pereopod; arrow indicates divided setae of carpus and pectinate scale of propodus. C. Seventh pereopod. D. First pleopod. E. Second pleopod. F. Genital papilla. Figure not to scale.
Fig. 2. A–B in Buchnerillo atlanticus sp. nov., a new halophilic woodlouse (Isopoda: Oniscidea: incertae sedis) from the Atlantic coast of the Iberian Peninsula, with ecological remarks
Fig. 2. A–B. Alive specimens of Buchnerillo atlanticus sp. nov. in their habitat (photo: N. Noval). C. Buchnerillo atlanticus sp. nov. conglobated after suffering a disturbance (photo: M. Álvarez Fidalgo).
Fig. 1. A in Buchnerillo atlanticus sp. nov., a new halophilic woodlouse (Isopoda: Oniscidea: incertae sedis) from the Atlantic coast of the Iberian Peninsula, with ecological remarks
Fig. 1. A. Type locality of Buchnerillo atlanticus sp. nov. (★) in Asturias (red), Spain (dark blue). B. Habitat of Buchnerillo atlanticus sp. nov. in Conejera beach (Villaviciosa, Asturias).
Fig. 8 Incertae sedis microorganisms and agglutinated worm tubes. a-i in Upper Jurassic To Lowermost Cretaceous Microfossils From The Hăghimaş Mountains (Eastern Carpathians, Romania)
Fig. 8 Incertae sedis microorganisms and agglutinated worm tubes. a-i Crescentiella morronensis (Crescenti) in longitudinal-oblique (a, c, i), oblique (b, d, e, f), and transverse (e, h) sections; a, c – thin section FO1-B (c = closeup view of the middle part in a); b – thin section FO2-B8; d – thin section FO2-A1(3); e, f – thin section FO1-E (f = close-up view of the middle part in e). g – thin section FO1-A1; h – thin section FO2-A1; i – thin section FO1- F2(2). j-n Terebella lapilloides (Münster). Longitudinal (l), longitudinal-oblique (k, n), and transverse (j, m) sections; j – thin section FO2-B10; k – thin section FO1-B; l, m – thin sections FO1-A0; n – thin section FO2-A1.
Fig. S1 in A New Testate Amoeba, Matsakision ogawaraensis sp. nov. (Silicofilosea: Incertae sedis Euglyphida) from Lake Shore Sand of Northern Japan
Fig. S1. Light micrograph of Matsakision ogawaraensis sp. nov. (A) broad lateral view of paratype MO-004 (on TNS-AL-58972). (B) ventral view of paratype MO-005 (on TNS-AL-58972). Scare bar: 10 µm
Fig. 2 in A New Testate Amoeba, Matsakision ogawaraensis sp. nov. (Silicofilosea: Incertae sedis Euglyphida) from Lake Shore Sand of Northern Japan
Fig. 2. Light micrographs of Matsakision ogawaraensis sp. nov. (A) broad ventral view of a living cell. (B) ventral view of a living cell. (C) back view with emphasis on the pseudopodia. Arrowheads indicate pseudopodia. (D) ventral view of holotype MO-001 (on TNS- AL-58972). (E) view of shell structure when the focal distance is adjusted to the test surface of MO-001. (F) view of MO-001 with emphasis on the apertural edge. Arrowheads indicate a chitinous lip. (G)–(H) lateral view of paratypes MO-002 (on TNS-AL-58972) and MO-003 (on TNS-AL-58972), respectively. Scale bars: 10 µm.
Fig. 1 in A New Testate Amoeba, Matsakision ogawaraensis sp. nov. (Silicofilosea: Incertae sedis Euglyphida) from Lake Shore Sand of Northern Japan
Fig. 1. Outline of Matsakision ogawaraensis sp. nov.: ventral (A), lateral (B), apertural (C) view. SL – shell length, SW – shell width, SH – the longest shell height, AW – apertural width, AH – apertural height.
Fig. 8 in The Acoela: on their kind and kinships, especially with nemertodermatids and xenoturbellids (Bilateria incertae sedis)
Fig. 8 The Acoela/Acoelomorpha in different schemes of eumetazoan relationships. a Precladistic version assuming a small planula-like worm as the ancestor of all bilaterians and with acoels as its direct descendants (after Hyman 1951). b Scheme based on morphological characters; the Acoela is part of the Acoelomorpha, which is placed within the Platyhelminthes (after Westheide and Rieger 2007). c Phylogeny according to rDNA (Wallberg et al. 2007); the Acoelomorpha
Fig. 5 a in The Acoela: on their kind and kinships, especially with nemertodermatids and xenoturbellids (Bilateria incertae sedis)
Fig. 5 a Image of a live specimen of Convolutriloba retrogemma reproducing asexually by budding. White arrowheads point to buds. Note the reversed polarity. b, c CLSM projections showing muscles (blue) and serotoninlike immunoreactive nervous system (red) in dorsal (b) and central (c) planes of a mature Isodiametra pulchra. White arrowheads point to neurite bundles, asterisk marks the position of the statocyst. Scale bars: a 1 mm; b and c 50 μm
Fig. 3 in The Acoela: on their kind and kinships, especially with nemertodermatids and xenoturbellids (Bilateria incertae sedis)
Fig. 3 Image of a mature and live specimen of Isodiametra pulchra without (left) and with superimposed colors (right) to illustrate the general morphology of acoels. From top to bottom: yellow: frontal organ (fo); red: nervous system (ns); green: central syncytium (cs); cyan: testes (t); pink: ovaries (o); gray: mouth; purple: female copulatory organs (fco) composed of seminal bursa, bursal nozzle, and vestibulum (from posterior to anterior); white: chordoid vacuoles (cv); blue: false seminal vesicles and prostatoid glands (fsv); orange: male copulatory organ (cop) composed of muscular seminal vesicle and invaginated penis. Scale bar: 100 μm
Fig. 1 in The Acoela: on their kind and kinships, especially with nemertodermatids and xenoturbellids (Bilateria incertae sedis)
Fig. 1 Images of various live acoels found in a beaker of sublittoral sand from the Indian Ocean. Animals are oriented with the anterior end to the top. Note the statocyst in all and mature oocytes in some animals. Scale bar: 200 μm
Fig. 15 in Saphonecrus sinicus Belizin 1968, incertae sedis
Fig. 15. Maximum Likelihood (ML) phylogenetic tree of Rhinocypha spp. based on (a) COI gene, (b) 16S rRNA gene, and (c) combined COI + 16S rRNA sequences with R. bisignata as an outgroup. Bootstrap values are shown on the branches.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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