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1,153 results for “Ferns”
Text-fig. 2. Scanning electron micrographs of non-angiosperm remains (a–d) and insect remains (e–f) from Zliv-Řídká Blana locality. a: Eopolytrichium sp. small leafy shoot, no. NM-F 3631; b: Taxon 1, single tip of a young fern frond with circinate vernation, no. NM-F 4130; c: Taxon 2, fern with simple leaves and circinate vernation, no. NM-F 3459; d: Pagiophyllum sp., small needle-like leaf, no. NM-F 4132; e: Microcarpolithes hexagonalis, a faecal pellet/coprolite with subcylindrical shape, no. NMF 4520; f: Palaeoaldrovanda splendens, pieces of compact walls formed by rectangular cells, no. NM-F 3237. in Plant Mesofossils From The Late Cretaceous Klikov Formation, The Czech Republic
Text-fig. 2. Scanning electron micrographs of non-angiosperm remains (a–d) and insect remains (e–f) from Zliv-Řídká Blana locality. a: Eopolytrichium sp. small leafy shoot, no. NM-F 3631; b: Taxon 1, single tip of a young fern frond with circinate vernation, no. NM-F 4130; c: Taxon 2, fern with simple leaves and circinate vernation, no. NM-F 3459; d: Pagiophyllum sp., small needle-like leaf, no. NM-F 4132; e: Microcarpolithes hexagonalis, a faecal pellet/coprolite with subcylindrical shape, no. NMF 4520; f: Palaeoaldrovanda splendens, pieces of compact walls formed by rectangular cells, no. NM-F 3237.
Text-fig. 2. Charred fern from diatomite of Saint-Bauzile. a: Overview of diatomite slab with large fragment of charred fern; SM.B 22258; scale bar = 1 cm. b: SEM overview image of charred fern pinnule. c: Enlargement of (b) showing details of undulating anticlinal walls of the epidermis. in Evidence For Wildfires During Deposition Of The Late Miocene Diatomites Of The Konservat-Lagerstätte Lake Saint-Bauzile (Ardèche, France) - Preliminary Results
Text-fig. 2. Charred fern from diatomite of Saint-Bauzile. a: Overview of diatomite slab with large fragment of charred fern; SM.B 22258; scale bar = 1 cm. b: SEM overview image of charred fern pinnule. c: Enlargement of (b) showing details of undulating anticlinal walls of the epidermis.
Figures 5–6 in A New Species of Teratomyza, the First Fern Fly from New Guinea (Diptera, Teratomyzidae)
Figures 5–6. Teratomyza ismayi sp. nov. (5) proboscis and ventral edge of gena of male, anterolateral view; (6) part
Figure 1 in A New Species of Teratomyza, the First Fern Fly from New Guinea (Diptera, Teratomyzidae)
Figure 1. Teratomyza ismayi holotype. (A) Left wing, ventral side. (B) habitus, left lateral view. (C) Head, left lateral view. (D) Head, dorsal view. (E) Thorax, dorsal view.
Figure 2 in A New Species of Teratomyza, the First Fern Fly from New Guinea (Diptera, Teratomyzidae)
Figure 2. Teratomyza ismayi male genitalia (A) external features, left lateral view. (B) right surstylus, internal view, illustrating armature.
Figure 1 in Early detection of alien fern species through the consultation of horticultural catalogues
Figure 1. Prevalence of different (a, c) scales and (b, d) modes of trade expressed as proportions of the total number of traders and total number of species recorded per trade country. Treatment of species that were traded both on-ground and via e-commerce is detailed in the methods. Countries of trade: Canada (CA), United States of America (US), the United Kingdom and the Republic of Ireland (UKI), South Africa (ZA), Australia (AU), New Zealand (NZ).
Fig. 5 in A new Late Triassic dipteridacean fern from the Paso Flores Formation, Neuquén Basin, Argentina
Fig. 5. Drawing of the dipteridacean fern Patagoniapteris artabeae gen. and sp. nov. from the upper Norian–Rhaetian, Upper Triassic Paso Flores Formation, Neuquén Province, Argentina. A. MCF-PBPH 066, basal portion of a rachial arm with the primary segments fused lamina. B. MCF-PBPH 415, primary segments of fertile frond with deeply dissected lobes. C. Hypothetical reconstruction of the frond.
Fig. 2 in A new Late Triassic dipteridacean fern from the Paso Flores Formation, Neuquén Basin, Argentina
Fig. 2. Location of the study area within Argentina and southern region of the Neuquén Province and north-western region of the Río Negro Province (B, C). Aerial view of the study area showing the main outcropping sections of the Paso Flores Formation (A) (based on Spalletti et al. 1988 and González Díaz 1982). The star indicates the location of the studied fossil flora at Cañadón de Pancho described herein. Image taken from Google Earth (2016).
Fig. 7 in A new Late Triassic dipteridacean fern from the Paso Flores Formation, Neuquén Basin, Argentina
Fig. 7. Dipteridacean fern Patagoniapteris artabeae gen. and sp. nov. from the upper Norian–Rhaetian, Upper Triassic Paso Flores Formation, Neuquén Province, Argentina. A. MCF-PBPH 066, view of the sori. A1–A5, details of the sori with and without sporangia (arrow). Scale bars 1.5 mm.
Fig. 1 in A new Late Triassic dipteridacean fern from the Paso Flores Formation, Neuquén Basin, Argentina
Fig. 1. Generalized outline of the Neuquén Basin, showing the location of the studied area of the Paso Flores Formation, Neuquén Province, Patagonia, Argentina (modified from Vergani et al. 1995). Image taken by NASA, July 2004.
Figure 3 in Phenolic substances and cyanogenesis in galled and non-galled tissue of the fern species Microgramma vacciniifolia
Figure 3. PCoA (Principal Coordinates Analysis) ordination diagram for the presence and absence of the phenolic substances in galled and non-galled tissue of the Microgramma vacciniifolia. SNM (stem non-galled by midge), MIG (midge-induced galls), MIGP (midgeinduced galls attacked by parasitoids), SNMM (stem non-galled by micromoth), MMIG (micromoth-induced galls)
Figure 2 in Phenolic substances and cyanogenesis in galled and non-galled tissue of the fern species Microgramma vacciniifolia
Figure 2. Chromatogram and ultraviolet (UV) spectra of methanolic Microgramma vacciniifolia extracts. MMIG (micromoth-induced galls), MIG (midge-induced galls), MIGP (midge-induced galls attacked by parasitoids).
Figure 1 in Phenolic substances and cyanogenesis in galled and non-galled tissue of the fern species Microgramma vacciniifolia
Figure 1. Chromatogram and ultraviolet (UV) spectra of methanolic Microgramma vacciniifolia extracts. SNMM (stem non-galled by micromoth), SNM (stem non-galled by midge).
Fig. 1 in Thick-stemmed wood fern Dryopteris crassirhizoma Nakai in the diet of sika deer Сervus nippon (Temm.) in south of the Primorskiy region
Fig. 1. Thick-stemmed wood fern Dryopteris crassirhizoma Nakai in the Ussuriysky Nature Reserve and the Komarovskoe forestry, the Right Komarovka River floodplain: (A) growing season; (B) non-growing season Рис 1. Щитовник тоΛстокорневищный Dryopteris crassirhizoma Nakai в Уссурийском заповеÃнике и Комаровском Λесничестве, пойма реки Правая Комаровка: (A) вегетационный периоÃ; (B) вневегетационный периоÃ
Рис. 3. Пятнистый оΛень, испоΛьзующий в питании Dryopteris crassirhizoma: (A) взросΛый самец в Комаровском Λесничестве. Уссурийский гороÃской округ. 15 ноября 2009 г., сфотографирован фотоΛовушкой Reconyx; (B) моΛоÃая самка в Суворовском Λесничестве Шкотовского района, 11 мая 2009 г., сфотографирована фотоΛовушкой Leaf River in Thick-stemmed wood fern Dryopteris crassirhizoma Nakai in the diet of sika deer Сervus nippon (Temm.) in south of the Primorskiy region
Рис. 3. Пятнистый оΛень, испоΛьзующий в питании Dryopteris crassirhizoma: (A) взросΛый самец в Комаровском Λесничестве. Уссурийский гороÃской округ. 15 ноября 2009 г., сфотографирован фотоΛовушкой Reconyx; (B) моΛоÃая самка в Суворовском Λесничестве Шкотовского района, 11 мая 2009 г., сфотографирована фотоΛовушкой Leaf River
Рис. 1. ГнезΔовые биотопы чернобровой камышевки: a — опушка Λеса со спирейно-папоротниковым поΔΛеском на р. Самарга; b — спирейно-зΛакововая опушка в б. Сизиман Fig. 1. Breeding biotopes of the black-browed warbler: a — forest edge with spireal-fern undergrowth on the Samarga river; b — spirey-cereal edge in the Siziman Bay in in the Ussuri region
Рис. 1. ГнезΔовые биотопы чернобровой камышевки: a — опушка Λеса со спирейно-папоротниковым поΔΛеском на р. Самарга; b — спирейно-зΛакововая опушка в б. Сизиман Fig. 1. Breeding biotopes of the black-browed warbler: a — forest edge with spireal-fern undergrowth on the Samarga river; b — spirey-cereal edge in the Siziman Bay
Fig. 2 in Thick-stemmed wood fern Dryopteris crassirhizoma Nakai in the diet of sika deer Сervus nippon (Temm.) in south of the Primorskiy region
Fig. 2. Patterns of consumption of thick-stemmed wood fern parts by feeding sika deer: (A) stalks (rachises) with leaf blades completely nibbled off; (B) upper parts of fronds and partially pinnae browsed; (C) fern fronds (pinnae, upper and lower parts of leaf) are torn out of the basal rosette and partially browsed; (D) signs of digging and eating of wood fern (arrows indicate fern fragments) Рис. 2. Способы потребΛения частей Dryopteris crassirhizoma при кормΛении пятнистого оΛеня: (A) стержни (рахисы) с поΛностью откушенными Λистовыми пΛастинками; (B) объеÃены верхние части вайи и частично Λистовые пΛастинки; (C) Λистья папоротника (Λистовые пΛастинки, верхняя и нижняя части Λиста) вырваны из прикорневой розетки и частично съеÃены; (D) признаки раскапывания и поеÃания папоротника (стреΛками указаны фрагменты папоротника) Conclusions age plant in the south of the Russian Far East, Our observations have reliably confirmed including the territory of the Lazovsky Nature the active utilization of the fern D. crassirhi- Reserve (Prisyazhnyuk, Prisyazhnyuk 1974; zoma—an herbaceous plant—as a food item Makovkin 1999; Sheremetyev, Prokopenko in sika deer diet. According to available data 2005). on the sika deer feeding ecology, this fern spe- After the termination of winter feeding of cies has not previously been reported as a for- sika deer, which was carried out from 1950
Figs. 9–15 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.
Figs. 9–15. Adult specimens and genitalia of Calicotis rotundinidus. 9–10, Male specimen, TAIWAN: Hulian, Shioulin, Gekou; 11–12, Female specimen, TAIWAN: New Taipei City, Wulai, Bauching temple; 13–14, Male genitalia; 15, Female genitalia. Scale bars: 9–12 = 5 mm; 13–14 = 1 mm; 15 = 1 mm.
Figs. 2–8 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.
Figs. 2–8. Adult specimens and genitalia of Calicotis attiei. 2–3, Male specimen, TAIWAN: Hualian, Shioulin, Gekou; 4–5, Female specimen, TAIWAN: Hualian, Shioulin, Gekou; 6–7, Male genitalia; 8, Female genitalia. Scale bars: 2–5 = 5 mm; 6–7 = 1 mm; 8 = 1 mm.
Fig. 35 in The Newly Recorded Fern-spore Feeding Moths in the Genus , Meyrick 1889 (Lepidoptera: Stathmopodidae) from Taiwan, with Notes on Life History of Three Species.
Fig. 35. Eggs of Calicotis attiei (blue arrows) on the sporangiospores of Microsorum scolopendria. Image by Masahiko Tanahashi. Scale bar = 1 mm
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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.
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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.