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398 results for “morphotype”
FIGURE 2. Halisarca magellanica. A, B & C, morphotype 1 in Integrative taxonomic re-description of Halisarca magellanica and description of a new species of Halisarca (Porifera, Demospongiae) from Chilean Patagonia
FIGURE 2. Halisarca magellanica. A, B & C, morphotype 1 with stretched filamentous outgrowths (specimen RBINS-POR. 10827 in situ); D, type specimen, re-photographed as published by Topsent (1901), corresponding to morphotype 1; E, morphotype 2 thinly encrusting (specimen RBINS-POR. 10753 in situ); F & G, morphotype 3 bushy with assembled digitations (specimen RBINS-POR. 12921 in situ). (O = osculum). Arrows indicate ostia.
FIGURE 2. Conchyliurus dispar n in Description of Conchyliurus dispar n. sp. (Copepoda, Cyclopoida, Clausidiidae) associated with the bivalve Barnea manilensis (Philippi) from the Yellow Sea with a discussion of the male morphotypes in the genus
FIGURE 2. Conchyliurus dispar n. sp., female. A, maxilla; B, maxilliped; C, leg 1; D, leg 2; E, third endopodal segment of leg 3; F, leg 4; G, free exopod segment of leg 5. Scale bars: A–B, 0.02 mm; C–G, 0.05 mm.
FIGURE 4. Conchyliurus dispar n in Description of Conchyliurus dispar n. sp. (Copepoda, Cyclopoida, Clausidiidae) associated with the bivalve Barnea manilensis (Philippi) from the Yellow Sea with a discussion of the male morphotypes in the genus
FIGURE 4. Conchyliurus dispar n. sp. (A, C) and Conchyliurus quintus Tanaka, 1961 (B, D–E). A, anal somite and caudal rami of female, ventral; B, anal somite and caudal rami of female, ventral; C, distal segment of female maxilla; D, distal segment of female maxilla; E, distal segment of male maxilla. Scale bars: A−B, 0.05 mm; C−E, 0.02 mm.
FIGURE 1. Conchyliurus dispar n in Description of Conchyliurus dispar n. sp. (Copepoda, Cyclopoida, Clausidiidae) associated with the bivalve Barnea manilensis (Philippi) from the Yellow Sea with a discussion of the male morphotypes in the genus
FIGURE 1. Conchyliurus dispar n. sp., female. A, habitus, dorsal; B, urosome, dorsal; C, antennule; D, antenna; E, labrum; F, mandible; G, paragnath; H, maxillule. Scale bars: A, 0.2 mm; B, 0.1 mm; C–D, 0.05 mm; E–F, H, 0.02 mm; G, 0.1 mm.
FIGURE 3. Conchyliurus dispar n in Description of Conchyliurus dispar n. sp. (Copepoda, Cyclopoida, Clausidiidae) associated with the bivalve Barnea manilensis (Philippi) from the Yellow Sea with a discussion of the male morphotypes in the genus
FIGURE 3. Conchyliurus dispar n. sp., male (A−F) and Conchyliurus quintus Tanaka, 1961, male (F). A, habitus of large male, dorsal; B, habitus of small male, dorsal; C, urosome of small male, ventral; D, spermatophore; E, maxilliped of large male; F, maxilliped of small male; G, urosome of small male, ventral. Scale bars: A−B, 0.2 mm; C, G, 0.1 mm; D−F, 0.05 mm.
FIGURE 2. The five O. stephenseni morphotypes, named Morphotype I in Re-description of Orchestia stephenseni Cecchini, 1928: designation of neotype and senior synonym to Orchestia constricta A. Costa, 1853 (Crustacea: Amphipoda: Talitridae) by Reversal of Precedence
FIGURE 2. The five O. stephenseni morphotypes, named Morphotype I to V, and corresponding to the five gnathopod 2 shapes. The body-length for each photographed individual is reported. Scale bar = 1 mm.
Potential and limits of cultivation of brackish and freshwater populations of tubular morphotypes of Ulva (Ulvophyceae) in food industry or biotechnologies -supplementary material
<p>Supplementary material for diploma thesis: Potential and limits of cultivation of brackish and freshwater populations of tubular morphotypes of Ulva (Ulvophyceae) in food industry or biotechnologies.</p>
FIGURE. Drosera tomentosa (a–d): a, rosette; b, rosette and base of inflorescences of D. tomentosa var. glabrata (Serra do Cipó, MG); c, inflorescence of the "type morphotype" of D. tomentosa (Chapada Diamantina, BA); d, inflorescence with open flower of the "glabrate morphotype" of D. tomentosa, side view (Diamantina, MG). Drosera villosa (e, f): e, habit; f, flower (Parque Estadual da Serra Negra da Mantiqueira, MG). Drosera viridis (g–i): g, rosettes of D. viridis (bottom) and D. communis (single plant, top; Imbituva, PR); h, leaf, detail (Piraquara, PR); i, flower (Balsa Nova, PR). Photo credits: a, b, d–f by PMG; c by FR; g–i by Carlos Rohrbacher. in A synopsis of the genus Drosera (Droseraceae) in Brazil
FIGURE. Drosera tomentosa (a–d): a, rosette; b, rosette and base of inflorescences of D. tomentosa var. glabrata (Serra do Cipó, MG); c, inflorescence of the "type morphotype" of D. tomentosa (Chapada Diamantina, BA); d, inflorescence with open flower of the "glabrate morphotype" of D. tomentosa, side view (Diamantina, MG). Drosera villosa (e, f): e, habit; f, flower (Parque Estadual da Serra Negra da Mantiqueira, MG). Drosera viridis (g–i): g, rosettes of D. viridis (bottom) and D. communis (single plant, top; Imbituva, PR); h, leaf, detail (Piraquara, PR); i, flower (Balsa Nova, PR). Photo credits: a, b, d–f by PMG; c by FR; g–i by Carlos Rohrbacher.
FIGURE. Drosera hirtella: a, specimen Saint-Hilaire B1-1762bis (P00749158), with the designated lectotype highlighted; b, detail of the lectotype, showing the ascending scape and leaves with obovate lamina; c, detail of the individual to the left of the lectotype, representing the "western morphotype", with narrowly obovate lamina. Image extracted from A. de Saint-Hilaire virtual herbarium (2020). in A synopsis of the genus Drosera (Droseraceae) in Brazil
FIGURE. Drosera hirtella: a, specimen Saint-Hilaire B1-1762bis (P00749158), with the designated lectotype highlighted; b, detail of the lectotype, showing the ascending scape and leaves with obovate lamina; c, detail of the individual to the left of the lectotype, representing the "western morphotype", with narrowly obovate lamina. Image extracted from A. de Saint-Hilaire virtual herbarium (2020).
FIGURE. Drosera hirtella (a–i): a, b, c, habit of the "type morphotype"; d, habit of the "western morphotype"; e, rosette of the "type morphotype"; f, emerging inflorescence, highlighting the red scape with red eglandular trichomes characteristic of the species; g, fertile individuals of D. hirtella (left plant, with inflorescence emerging to the bottom) and D. lutescens (right plant, with inflorescence emerging to the top left) growing under shaded conditions side by side, highlighting the morphological differences between the two species regarding leaf shape and scape and indumentum color; h, i, flower. a–c, f and h at Serra do Cipó, MG; d and h at Chapada dos Veadeiros, GO; e at Diamantina, MG; g at Cristalina, GO. Photo credits: all by PMG. in A synopsis of the genus Drosera (Droseraceae) in Brazil
FIGURE. Drosera hirtella (a–i): a, b, c, habit of the "type morphotype"; d, habit of the "western morphotype"; e, rosette of the "type morphotype"; f, emerging inflorescence, highlighting the red scape with red eglandular trichomes characteristic of the species; g, fertile individuals of D. hirtella (left plant, with inflorescence emerging to the bottom) and D. lutescens (right plant, with inflorescence emerging to the top left) growing under shaded conditions side by side, highlighting the morphological differences between the two species regarding leaf shape and scape and indumentum color; h, i, flower. a–c, f and h at Serra do Cipó, MG; d and h at Chapada dos Veadeiros, GO; e at Diamantina, MG; g at Cristalina, GO. Photo credits: all by PMG.
FIGURES 24–32 in Additions to chrysophycean stomatocyst flora from South Urals shallow lake including descriptions of three new morphotypes
FIGURES 24–32. Chrysophycean stomatocysts observed in this study (SEM). Fig. 24: Stomatocyst 27, Van de Vijver & Beyens emend. Pang & Wang. Fig. 25: Stomatocyst 298, Gilbert & Smol in Gilbert et al. Fig. 26: Stomatocyst 11, Vorobyova et al. Fig. 27: Stomatocyst 300, Gilbert & Smol in Gilbert et al. Fig. 28: Stomatocyst 133, Duff & Smol in Duff et al. emend. Wilkinson & Smol in Wilkinson et al., forma С. Fig. 29: Stomatocyst 133, Duff & Smol in Duff et al. emend. Wilkinson & Smol in Wilkinson et al., forma А. Figs. 30–32: Stomatocyst 73, Hansen. Scale bars = 2 μm.
FIGURES 12–23 in Additions to chrysophycean stomatocyst flora from South Urals shallow lake including descriptions of three new morphotypes
FIGURES 12–23. Chrysophycean stomatocysts observed in this study (SEM). Fig. 12: Stomatocyst 183, Brown & Smol in Brown et al. Fig. 13: Stomatocyst 118, Zeeb et al. Fig. 14: Stomatocyst 47, Hansen. Fig. 15: Stomatocyst 313, Brown & Smol in Brown et al. Figs. 16, 17: Stomatocyst cf. 107, Pang & Wang. Fig. 18: Stomatocyst 260, Zeeb et al. emend. Gilbert et al., forma B. Figs. 19, 20: Stomatocyst 260, Zeeb et al. emend. Gilbert et al., forma A. Fig. 21: Stomatocyst 169, Zeeb & Smol. Figs. 22, 23: Stomatocyst 67, Pang & Wang, forma A. Scale bars = 2 μm.
FIGURES 2–11 in Additions to chrysophycean stomatocyst flora from South Urals shallow lake including descriptions of three new morphotypes
FIGURES 2–11. New stomatocysts from the Lake Zhurmankol (SEM). Figs. 2–5: Stomatocyst 3, Ignatenko, Yatsenko-Stepanova & Kapustin. Fig. 6: Stomatocyst 4, Ignatenko, Yatsenko-Stepanova & Kapustin. Figs. 7–10: Stomatocyst 5, Ignatenko, Yatsenko-Stepanova & Kapustin. Fig. 11: Close-up view of the scale of P. bandaiensis. Scale bars: 2–10—2 μm, 11—0.25 μm
FIGURE 1 in Additions to chrysophycean stomatocyst flora from South Urals shallow lake including descriptions of three new morphotypes
FIGURE 1. Map of the chrysophycean stomatocyst studies in Russia: 1—Murmansk Region, 2—Leningrad Region, 3—Vologda Region, 4—Yaroslavl Region, 5—Komi Republic, 6—Chelyabinsk Region, 7—Orenburg Region, 7a—Lake Zhurmankol, "Orenburgskiy" State Nature Reserve (this study), 8—Omsk Region, 9—Altai Republic, 10—Krasnoyarsk Region, 11—Irkutsk Region, 12—Republic of Buryatia, 13—Republic of Sakha (Yakutia).
Figure 5. Spermathecae shape variation across the valentinus morphotype. A, B in Systematics and phylogeography of western Mediterranean tarantulas (Araneae: Theraphosidae)
Figure 5. Spermathecae shape variation across the valentinus morphotype. A, B, 'north' lineage (I. valentinus); C, 'south' lineage (I. mogadorensis). Scale bar = 1 mm.
Supplementary material 1 from: Vaníčková L, Břízová R, Pompeiano A, Ferreira LL, de Aquino NC, Tavares RF, Rodriguez LD, Mendonça AL, Canal NA, do Nascimento RR (2015) Characterisation of the chemical profiles of Brazilian and Andean morphotypes belonging to the Anastrepha fraterculus complex (Diptera, Tephritidae). In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 193-209. https://doi.org/10.3897/zookeys.540.9649
Table S1. Anastrepha fraterculus male and female characteristic.: Explanation note: Anastrepha fraterculus male (m) and female (f) characteristic cuticular hydrocarbons identified by principal component analyses.
Identical stable isotopic signatures in Globigerinoides ruber morphotypes from northeastern Indian Ocean coretops
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Figure 6. Hemipenial morphotypes. A, morphotype 1 in Integrative taxonomy of the Iphisa elegans Gray, 1851 species complex (Squamata: Gymnophthalmidae) leads to the description of five new species
Figure 6. Hemipenial morphotypes. A, morphotype 1 (UFMT 10126: Vilhena, Rondônia, Brazil); B, morphotype 2 (MZUSP 82428: Juruena, Mato Grosso, Brazil); C, morphotype 3 (MZUSP 100257: Igarapé-Açu, Amazonas, Brazil); D, morphotype 4 (INPA 13852: Beruri, Amazonas, Brazil); E, morphotype 5 (MHNSM 16718: Distrito Genaro Herrera, Provincia Requena, Peru). F, morphotype 6 (MZUSP 107623: Moibamba, Amazonas, Brazil). Scale bars = 3 mm.
Spatial regulation of substrate adhesion directs fibroblast morphotype and phenotype
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FIGURE 4. Ernstia rocasensis morphotypes A in Calcareous sponges (Porifera, Calcarea) from Florida: new species, new records and biogeographical affinities
FIGURE 4. Ernstia rocasensis morphotypes A. Photo in vivo of massive morphotype in mangrove (UFRJPOR 8369). B. Photo in vivo of encrusting morphotype in rocky shore (UFRJPOR 8361). C. Massive morphotype (UFRJPOR 8369) in ethanol. D. Encrusting morphotype (UFRJPOR 8367) in ethanol.
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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.