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403 results for “morphological characteristics”
Figure 10 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 10. SEM and stereomicroscope images of Acanthopsis seeds, showing appressed hygroscopic hairs when dry and uncoiled mucilaginous hairs upon wetting. A and B, appressed hairs of seed (dried state), A. dregeana subsp. longispina (Steyn 2141, PRE); C, seed with uncoiled hairs upon wetting, A. disperma (Steyn 1845, PRE); D, uncoiled hair showing helical thickening of walls, A. disperma (Steyn 1845, PRE); E, uncoiled hairs stained with safranin, A. disperma (Steyn 1845, PRE); F, seedling, A. hoffmannseggiana typical form (Steyn 2148, PRE). Scale bar: A = 300 µm, B = 80 µm, C= 1 mm, D = 30 µm, E. 50 µm, F = 2 mm.
Figure 8 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 8. Insects observed on Acanthopsis flowers. A, fruit fly on A. hoffmannseggiana; B, fruit fly and ant on A. nitida; C, long-proboscid bee fly probing a flower of A. tuba. Photograph: A, B, the authors; C, F. Grenier.
Figure 4 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 4. Corolla of Acanthopsis flowers showing colour variation. A, A. glauca; B, A. horrida; C, A. hoffmannseggiana; D, A. scullyi. Photographs: A, B, M. Koekemoer; C, D, the authors.
Figure 3 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 3. Corolla, androecium and gynoecium of Acanthopsis flowers. A, corolla, A. tuba (Von Staden 9139); B, corolla, A. horrida (Koekemoer 4370, PRE); C, androecium, A. horrida (Koekemoer 4370, PRE); D, gynoecium and one lateral sepal of calyx; note the tuft of glandular hairs at base of style, A. scullyi (Steyn 1911, PRE). Scale bar: A, B = 10 mm, C, D = 1 mm. Artist: Daleen Roodt.
Figure 1 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 1. Different habits found in Acanthopsis. A, acaulescent herb; B, compact subshrub; C, shrublet (cushion-shaped); D, shrublet (virgate). Photographs: A, B, the authors; C, D: M. Koekemoer.
Figure 5 in Notes on morphological characteristics and life history strategy of the genus Acanthopsis Harv. (Acanthaceae)
Figure 5. Androecium of Acanthopsis disperma flowers. A, stout filaments; B, anthers and style; C and D, anthers, showing long hairs and pollen grains exposed on the side facing the corolla lip. Scale bar: A = 0.8 mm, B = 0.7 mm, C = 0.5 mm, D = 0.2 mm.
Figure 4 in Morphological characteristics of Neoseiulus setarius Ma, Meng & Fan, sp. nov. (Acari: Phytoseiidae) from China
Figure 4. Neoseiulus setarius Ma, Meng & Fan, sp. nov., adult male. A. Dorsal idiosoma; B. Ventral idiosoma; C. Spermatodactyl. Scale bars: A–B = 50 μm; C = 20 μm.
Figure 5 in Morphological characteristics of Neoseiulus setarius Ma, Meng & Fan, sp. nov. (Acari: Phytoseiidae) from China
Figure 5. Neoseiulus setarius Ma, Meng & Fan, sp. nov., adult male. A. dorsal idiosoma; B. ventral idiosoma; C. spermatodactyl. Scale bars = 20 μm.
Figure 3 in Morphological characteristics of Neoseiulus setarius Ma, Meng & Fan, sp. nov. (Acari: Phytoseiidae) from China
Figure 3. Neoseiulus setarius Ma, Meng & Fan, sp. nov., adult female. A. Gnathosoma; B. Palp; C. Leg I; D. Leg II; E. Leg III; F. Leg IV. Scale bars: A–B = 20 μm; C–F = 50 μm.
Figure 2 in Morphological characteristics of Neoseiulus setarius Ma, Meng & Fan, sp. nov. (Acari: Phytoseiidae) from China
Figure 2. Neoseiulus setarius Ma, Meng & Fan, sp. nov., adult female. A. Dorsal idiosoma; B. Ventral idiosoma; C. Chelicera; D. Spermatheca. Scale bars: A–B = 40 μm; C–D = 10 μm.
Figure 1 in Morphological characteristics of Neoseiulus setarius Ma, Meng & Fan, sp. nov. (Acari: Phytoseiidae) from China
Figure 1. Neoseiulus setarius Ma, Meng & Fan, sp. nov., adult female. A. Dorsal idiosoma; B. Ventral idiosoma; C. Chelicera; D–E. Variations of spermatheca. Scale bars: A–B = 50 μm; C–E = 20 μm.
Рис. 1. КоΛичество макрокониΑий грибов роΑа Fusarium (% от общего чисΛа эΛементов морфоΛогии) на органах и в физиоΛогических жиΑкостях картофеΛьной коровки Fig. 1. Number of macroconidia of fungus species from the genus Fusarium (% of the total number of morphological elements) on organs and in physiological fluids of the potato ladybird beetle in On the vector characteristics of the potato ladybird beetle Henosepilachna Vigintioctomaculata (Motsch.) (Coleoptera, Coccinellidae) in the system "phytophagous insect - plant pathogen - plant"
Рис. 1. КоΛичество макрокониΑий грибов роΑа Fusarium (% от общего чисΛа эΛементов морфоΛогии) на органах и в физиоΛогических жиΑкостях картофеΛьной коровки Fig. 1. Number of macroconidia of fungus species from the genus Fusarium (% of the total number of morphological elements) on organs and in physiological fluids of the potato ladybird beetle
Fig. 3 in Morphological characteristics of major airborne pollen in Korea peninsula
Fig. 3. SEM micrographs of airborne pollen grains of herb plants. AC. Ambrosia artemisiifolia. D. Boehmeria spicata. E, F. Chenopodium album var. centrorubrum. G. Humulus japonicus. H, I. Miscanthus sinensis. JL. Pennisetum alopecuroides.
Fig. 2 in Morphological characteristics of major airborne pollen in Korea peninsula
Fig. 2. SEM micrographs of airborne pollen grains of woody plants. A, B. Acer negundo. C. Celtis sinensis. D, E. Fraxinus sieboldiana. F, G. Pterocarya stenoptera. H, I. Quercus aliena.
Fig. 1 in Morphological characteristics of major airborne pollen in Korea peninsula
Fig. 1. SEM micrographs of airborne pollen grains of Gymnosperm. AC. Juniperus chinenesis. CF. Metasequoia glytostroboides. GI. Pinus rigida.
Fig. 6 a–f in Revealing morphological characteristics of Goniodorididae genera (Mollusca: Nudibranchia)
Fig. 6 a–f Scanning electron micrographs of Ancula gibbosa (Risso, 1818) and g photographs of labial cuticle and radula under microcomputed tomography of Trapania graeffei (Bergh, 1880) (11424a, Basel museum). a Jaw elements (MNCN 15.05/93237). b Detail of jaw elements (MNCN 15.05/93238). c Detail of honeycomb-shaped elements. d Frontal view of rachis and internal and external teeth (ZMBN 130,701). e Detail of half radula (ZMBN 130701). f Penial spines and cilia (MNCN 15.05/93238). Scale bars: a 100 µm. b 10 µm. c 10 µm. d 50 µm. e 30 µm. f 100 µm
Fig. 1 a in Revealing morphological characteristics of Goniodorididae genera (Mollusca: Nudibranchia)
Fig. 1 a Okenia elegans (Leuckart, 1828); photo: D. Poloniato, in Pola et al. (2019). b Goniodoris nodosa (Montagu, 1808); photo: I. Ekimova. c Ancula gibbosa (Risso, 1818); photo: (a) H. Jensen (ZMBM 130701), (b) I. Ekimova (MNCN 15.05/92163). d Trapania graeffei (11424 a, Basel Museum); e Goniodoridella savignyi Pruvot-Fol, 1933; photo: G. Cobb. f Murphydoris singaporensis Sigurdson, 1991 (ZRC.MOL.15663); photo: Lee Kong Chian Natural History Museum, Singapore
Fig. 2 in Revealing morphological characteristics of Goniodorididae genera (Mollusca: Nudibranchia)
Fig. 2 Drawings of internal anatomy. a, b Okenia elegans (Leuckart, 1828) (MNCN 15.05/88175). a Buccal bulb. b Reproductive system. c Reproductive system of Goniodoris nodosa (Montagu, 1808) (MNCN 15.05/92160). d Reproductive system of Ancula gibbosa (Risso, 1818) (ZMBN 129656). e Reproductive system of Trapania graeffei (Bergh, 1880) (11,424 a). f Reproductive system of Goniodoridella savignyi Pruvot-Fol, 1933 (QMMO 85,916). g Reproductive system of Murphydoris singaporensis Sigurdson, 1991 (ZRC. MOL.15663a). am, ampulla; bc, bursa copulatrix; bp, buccal pump; fgm, female gland mass; hd, hermaphroditic duct; oe, oesophagus; p, penis; pb, penial bulb; ra, radular sac; rs, receptaculum seminis; sgl, salivary gland; ud, uterine duct; va, vagina; vd, vas deferens. Scale bars 1 mm
Fig. 2 in Morphological Characteristics Of Dicrocoelium Dendriticum (Digenea, Dicrocoeliidae), Parasitizing Three Host Species In The Central Regions Of Ukraine
Fig. 2. Frequency distribution of body length of Dicrocoelium specimens from naturally infected cattle, sheep and goat (n = 30).
Fig. 1 in Short Communication Range extension and some morphological characteristics of Ptychoglossus brevifrontalis, Boulenger, 1912 (Squamata: Alopoglossidae) in Suriname
Fig. 1. Map showing the occurrence of P. brevifrontalis in Suriname. The blue dot represents the first recorded specimen from Suriname while the red triangle depicts the specimen collected at the BNP. Fig. 2. Lateral view of head of P. brevifrontalis showing the labials. Fig. 3. Anal scales of P. brevifrontalis.
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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)
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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.