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1,062 results for “Morphological Relations”

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Figures 35-43. Adults, lateral view. 35 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 35-43. Adults, lateral view. 35, Allomegops sp.; 36, Cymatobaris impressifrons; 37, Hiotus inflatus; 38, Megalobaris viridana; 39, Ortycus setifer; 40, Testalthea sp.; 41, Tonesia sp.; 42, Trichobaris texana; 43, Arachnobas gazella.

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Figures 326-335. Mouthparts - maxilla. 326 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 326-335. Mouthparts - maxilla. 326, Cyrtepistomus castaneus; 327, Derelomus basalis; 328, Cryptorhynchus lapathi; 329, Cholus rana; 330, Dryophthorus americanus; 331, Bagous transversus; 332, Cossonus impressifrons; 333, Curculio pardalis; 334, Hylurgops planirostris; 335, Barycerus collaris.

opencc-by-4.0May 2009View details →
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Figures 207-220 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 207-220. Mouthparts – labia, ventral view. 207, Dirabius calvus; 208, Eisonyx opacus; 209, Xystus arnoldi; 210, Geraeus penicillus; 211, Microcholus puncticollis; 212, Linogeraeus viduatus; 213, Ovanius minutus, dorso-lateral view; 214, Plocamus echidna, dorso-ventral view; 215, Oligolochus bracatus; 216, Oligolochus ornatus; 217, Odontocorynus scutellumalbum; 218, Odontocorynus creperus; 219, Camelodes leachii; 220, Sibariops concinnus.

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Figures 353-367. Mouthparts - mandibles. 353 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 353-367. Mouthparts - mandibles. 353, Zygobaris nitens; 354, Centrinus curvirostris; 355, Anthinobaris sp., showing three incisors on mandible; 356, Ovanius picipennis; 357, Peridinetus irroratus, showing angled incisors and molar region on an angled mandible; 358, Loboderes citriventris; 359, Antesis sparsa, showing incisor and molar region on a linear mandible; 360, Acentrinops brevicollis, showing lateral laceration on incisor; 361, Garnia sp., showing mandible bearing two incisors; 362, Pachygeraeus laevirostris, showing mandible with one incisor and a molar region; 363, Eisonyx crassipes, showing angled incisors and molar region on an angled mandible; 364, Dirabius calvus; 365, Eisonyx opacus; 366, Xystus arnoldi, showing incisor and molar region on a linear mandible and lateral laceration on incisor; 367, Buchananius sulcatus, showing three incisors on mandible.

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Figures 318-325. Mouthparts - maxilla. 318 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 318-325. Mouthparts - maxilla. 318, Pycnotheantis sp., showing thin, elongate setae on posterior margin of lacinia; 319, Telemus sp.; 320, Pteracanthus smidtii; 321, Megabaris quadriguttata; 322, Conoproctus quadripustulatus, showing crescent-shaped setae along margin of galea and lacinia and transverse row of setae along anterior margin of palpiger; 323, Eugeraeus sp., showing dense scattering of setae along anterior margin of palpiger; 324, Lepidobaris acnisti; 325, Phacelobarus singularis, showing a comparatively more compact palpus.

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Figures 432-450. 432-434 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 432-450. 432-434, tendons of mouthparts. 432, tendons on maxilla; 433-434, tendons on mandible. 435-450, proventriculus, lateral view. 435, Optatus palmaris; 436, Peridinetus irroratus; 437, Garnia sp.; 438, Eisonyx crassipes; 439, Xystus arnoldi; 440, Camelodes leachii; 441, Diorymerus lancifer; 442, Centrinopus alternatus; 443, Anavallius ruficornis; 444, Telemus sp.; 445, Conoproctus quadripustulatus. 446-447, Cyrtepistomus castaneus. 446, lateral view; 447, anterior view; 448, Bagous transversus; 449, Cholus rana; 450, Hylurgops planirostris.

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Figures 44-48. Adults, lateral view. 44 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 44-48. Adults, lateral view. 44, Balanogastris kolae; 45, Cyllophorus fasciatus; 46, Telephae oculata; 47, Trichodocerus sp.; 48, Trigonocolus curvipes.

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Figures 468-475 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 468-475. SEM images of pronotum. 468, Conotrachelus fissunguis (Molytinae), lateral view showing sculpturing; 469, Pertorcus sp., lateral view; 470, Pseudocentrinus ochraceus, lateral view of puncture collar; 471, Centrinopus helvinus, lateral view of puncture collar; 472, enlargement of puncture collar of 471; 473, Pachybaris porosa, lateral view; 474, Microstegotes sp., lateral view; 475, Vallius sulcatus, lateral view showing extreme convexity of pronotum.

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Figures 126-131. 126 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 126-131. 126, Lixus concavus, scale morphology on male 7th tergite. 127-131, head morphology, SEM's. 127, Taiwanobaris sp., dorso-lateral head sculpturing near margin of eye; 128-131, Anthinobaris sp. 128, latero-ventral view; 129, lateral view; 130, enlargement of lateral view showing wide ocular vibrissae; 131, detail of ocular vibrissae along lateral margin of pronotum.

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Figures 12-22. Adults, lateral view. 12 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 12-22. Adults, lateral view. 12, Eurhinus festivus; 13, Eurhinus festivus; 14, Fryella mutilata; 15, Geraeus lineellus; 16, Lepidobaris acnisti; 17, Loboderes citriventris; 18, Madarellus ebenus; 19, Megabaris quadriguttata; 20, Microstrates cocois; 21, Optatus palmaris; 22, Pacomes subglaber.

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Figures 1-11. Adults, lateral view. 1 in Morphology of Baridinae and related groups (Coleoptera, Curculionidae)

Figures 1-11. Adults, lateral view. 1, Amercedes subulirostris; 2, Baris torquata; 3, Centrinus curvirostris; 4, Barymerus binarius; 5, Conoproctus quadripustulatus; 6, Cylindrocerus comma; 7, Cyrionyx camelus; 8, Demoda vittata; 9, Diastethus eurhinoides; 10, Diorymerus lancifer; 11, Embates chaetopus.

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Fig. 4 in Taxonomy and morphology of four "ophrys-related" scuticociliates (Protista, Ciliophora, Scuticociliatia), with the description of a new genus, Paramesanophrys gen. nov.

Fig. 4. Comparisons among different buccal apparatus patterns of Paramesanophrys gen. nov. and some related genera; arrows in A–J show different positions to which PM extends anteriorly and highlighted structures in A–J mark M2. A. Paramesanophrys typica gen. et sp. nov. (from the present work). B. Mesanophrys carcini (Grolière & Léglise, 1977) Small & Lynn in Aescht, 2001 (from Song & Wilbert 2000). C. Uronema marinum Dujardin, 1841 (from Song et al. 2009). D. Uronemella filificum (Kahl, 1931) Song & Wilbert, 2002 (from Song & Wilbert 2002). E. Metanophrys sinensis Song & Wilbert, 2000 (from Song & Wilbert 2000). F. Anophryoides haemophila Cawthorn et al., 1996 (from Cawthorn et al. 1996). G. Philasterides armatalis Song, 2000 (from Song 2000). H. Paranophrys marina Thompson & Berger, 1965 (from Song et al. 2002). I. Paralembus digitiformis Kahl, 1931 (from Song & Wilbert 2000). J. Cohnilembus verminus (Müller, 1786) Kahl, 1933 (from Song 2000). Abbreviations: M1–3 = membranelles 1, 2 and 3; PM = paroral membrane; Sc = scutica.

opencc-by-3.0Apr 2016View details →
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Fig. 7 in Taxonomy and morphology of four "ophrys-related" scuticociliates (Protista, Ciliophora, Scuticociliatia), with the description of a new genus, Paramesanophrys gen. nov.

Fig. 7. Metanophrys similis Song et al., 2002, in vivo (A–F) and after protargol staining (G–J). A. Ventral view of a typical individual. B–D. Ventral views of three individuals; arrowheads in D mark somatic cilia. E. Food vacuole (arrow). F. Posterior region; arrow shows caudal cilium. G, I. Ventral views, to show detailed structure of the buccal area. H. Dorsal view; arrow shows monokinetids, arrowhead marks dikinetids. J. Macronucleus. Abbreviations: M1–3 = membranelles 1, 2 and 3; Ma = macronucleus; PM = paroral membrane. Scale bars: A–D = 30 μm.

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Fig. 6 in Taxonomy and morphology of four "ophrys-related" scuticociliates (Protista, Ciliophora, Scuticociliatia), with the description of a new genus, Paramesanophrys gen. nov.

Fig. 6. Metanophrys sinensis Song & Wilbert, 2000, in vivo (A–D, G) and after protargol (E–F, I–J) or silver nitrate (H) staining. A. Ventral view of a typical individual. B. Ventral view of another individual; arrowheads mark somatic cilia. C. Ventral view; arrowhead exhibits buccal field. D. Notched pellicle (arrowhead). E. Detailed structure of buccal area. F. Individual in morphogenesis, to show buccal apparatus. G. Ventral view, showing bar-shaped crystal (arrowhead). H. Detail of somatic kinetids. I. Dikinetids of scutica (arrowheads). J. Posterior region; arrowheads show monokinetids of somatic kineties. Abbreviations: M1–3 = membranelles 1, 2 and 3; PM = paroral membrane. Scale bars: A–B = 15 μm.

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Fig. 5 in Taxonomy and morphology of four "ophrys-related" scuticociliates (Protista, Ciliophora, Scuticociliatia), with the description of a new genus, Paramesanophrys gen. nov.

Fig. 5. Mesanophrys carcini Small & Lynn in Aescht, 2001, in vivo (A–D) and after protargol staining (E–G). A. Ventral view of a representative individual; arrow shows contractile vacuole. B–D. Ventral views of four individuals; arrow in B shows caudal cilium and arrow in D marks food vacuole. E–F. Ventral views, detailed structure of buccal area. G. Dorsal view; arrow indicates somatic kinety. Abbreviations: M1–3 = membranelles 1, 2 and 3; Ma = macronucleus; PM = paroral membrane; Sc = scutica. Scale bars: A–D = 30 μm; E–G = 5 μm.

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Fig. 2 in Taxonomy and morphology of four "ophrys-related" scuticociliates (Protista, Ciliophora, Scuticociliatia), with the description of a new genus, Paramesanophrys gen. nov.

Fig. 2. Paramesanophrys typica gen. et sp. nov., from life (A–F) and after protargol staining (G–I). A. Ventral view of a representative individual. B. Different body shapes. C. Changing shapes of buccal field of the same individual. D. Movement trace. E. Food granules. F. Part of pellicle, to show extrusomes. G–H. Ventral (G) and dorsal (H) views of the same specimen (holotype), showing infraciliature and nuclear apparatus. I. Detailed structure of the buccal area. Abbreviations: M1–3 = membranelles 1, 2 and 3; Ma = macronucleus; PM = paroral membrane; Sc = scutica. Scale bars: A = 30 μm; B = 40 μm.

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Fig. 1. Sampling sites. A in Taxonomy and morphology of four "ophrys-related" scuticociliates (Protista, Ciliophora, Scuticociliatia), with the description of a new genus, Paramesanophrys gen. nov.

Fig. 1. Sampling sites. A. Coastal waters of the Yellow Sea at Qingdao, Shandong province. B. A coastal mariculture-region in Zhanjiang, Guangdong province. C. Coastal waters of Daya Bay, Guangdong province.

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Figure 5 in Morphology of tube-like threads related to Limnochares aquatica (L., 1758) (Acariformes: Hydrachnidia: Limnocharidae) in the laboratory

Figure 5. Scanning electron microscopy (SEM) of threads from the thread cloth and some external characteristics of the water mites Limnochares aquatica (L.). (a) Bunch of the hollow collapsed threads sometimes bending at different angles (arrow). Scale bar = 10 µm; (b) threads crossing freely and sometimes torn (arrow). Note a thread partly retaining its natural shape (arrowhead). Scale bar = 5 µm; (c) front view of a mite. Scale bar = 500 µm; (d) portion of the dorsal surface showing proposed dermal gland orifices (glandularia) provided either with a sensitive hair (arrows) or with a short spine (arrowheads). Scale bar = 100 µm; (e) slit-like orifice (arrow) provided with a sharp spine at the pole of the structure. Scale bar = 20 µm; (f) identical slit-like orifice (arrow) possessing a sensitive hair situated on the pedestal at the pole of the orifice. Scale bar = 20 µm.

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Figure 1 in Morphology of tube-like threads related to Limnochares aquatica (L., 1758) (Acariformes: Hydrachnidia: Limnocharidae) in the laboratory

Figure 1. Water mites Limnochares aquatica (L.) and threads' associations during maintenance in the laboratory. (a) A mite in a drop of water with white spots on the dorsal surface (arrows); (b) Another, larger, mite in a drop of water revealing a small white flock on the posterior portion of the idiosoma (arrow); (c) A mite engaging with an extremely large flock association at its venter (arrowhead). Note the hardly distinguished possible detachment of the colourless threads from the dorsal body surface (arrow) forming figures of balls; (d) The balls of threads containing also inclusions of additional organic substances. Scale bars = 1 mm.

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Figure 2 in Morphology of tube-like threads related to Limnochares aquatica (L., 1758) (Acariformes: Hydrachnidia: Limnocharidae) in the laboratory

Figure 2. Threads of the water mites Limnochares aquatica (L.) in a light microscope. (a) Freely interlaced threads in oil immersion in a common microscope. Note that practically colourless threads are unbranched and totally devoid of any internal substances, being sometimes bent at different angle. Scale bar = 20 µm; (b) Differential-interferential contrast (DIC) showing threads' replicas. Scale bar = 5 µm; (c) DIC of gentian-violet stained preparation showing both empty threads and thread with a core (arrow). Scale bar = 20 µm; (d) Bright field (BF) of gentian-violet stained preparation obviously indicating colourless threads and contaminating bacteria and bacterial chain (arrows) freely dispersed in the sample. Scale bar = 5 µm.

opencc-by-4.0May 2016View details →

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Allen Brain Atlas

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allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record