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Figure 3 in First report of Meloidogyne enterolobii infecting Japanese blue berry tree (Elaeocarpus decipiens) in Florida, USA
Figure 3: PCR amplification products of DNA extracted from MeLOiDOGyne enterOLOBii (Yang and Eisenback, 1983) using mtDNA primer set MK7-F/MK7-R SCAR. Negative control=PCR reagents without DNA. Low range DNA ladder 2,000 bp.
Figure 1 in First report of Meloidogyne enterolobii infecting Japanese blue berry tree (Elaeocarpus decipiens) in Florida, USA
Figure 1: Roots of ELaeOCarpUS DeCipienS F.B.Forbes & Hemsl. showing galls induced by Meloidogyne enterolobii (Yang and Eisenback, 1983).
Dataset: Berry Corporation (BRY) Stock Performance
This dataset provides historical stock market performance data for specific companies. It enables users to analyze and understand the past trends and fluctuations in stock prices over time. This information can be utilized for various purposes such as investment analysis, financial research, and market trend forecasting.
Fig. 2 in A mysterious wing spine in male coffee berry borers (Coleoptera: Curculionidae: Scolytinae)
Fig. 2. Low temperature-scanning electron microscope photographs showing the wing spine in three lef wings (a, b, c), and a detail of the spine (d).
Fig. 1. A in Monitoring coffee berry borer, Hypothenemus hampei (Coleoptera: Curculionidae), populations with alcoholbaited funnel traps in coffee farms in Colombia
Fig. 1. A red funnel trap used to capture CBB (Hypothenemus hampei) (A) and the methanol–ethanol lure (3: 1 ratio) enclosed in a semi-permeable membrane (B). CBB were collected in a plastic container containing 200 mL of soapy water. Photo Alex. E. Bustillo.
Fig. 2 in Monitoring coffee berry borer, Hypothenemus hampei (Coleoptera: Curculionidae), populations with alcoholbaited funnel traps in coffee farms in Colombia
Fig. 2. Number of CBB (Hypothenemus hampei) captured per trap per month (mean ± SEM) and corresponding berry infestation (%) on large coffee farms (≥ 20 ha) in Risaralda, Caldas, Colombia (A), and on small coffee farms (≤ 3 ha) in Viterbo, Caldas, Colombia (B) in 2003-2004. Note differences in axis scales.
Рис. 1. А — рыжеухий бюΛьбюΛь на боярышнике, с. Δазо, Приморский край, 5.11.2019. Фото В. П. Шохрина; B — рыжеухий бюΛьбюΛь пьет сок кΛена приречного, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 03.04.2022. Фото À. А. БеΛяева; C — рыжеухий бюΛьбюΛь кормится ягоΑами Αевичьего винограΑа пятиΛисточкового, г. ВΛаΑивосток, 02.01.2020. Фото А. П. ХоΑакова; D — рыжеухий бюΛьбюΛь, кΛ. ФореΛевый, окрестности с. ФиΛипповка, Хасанский район, Приморский край, 01.03.2018. Фото Ю. А. Àармана; E — рыжеухий бюΛьбюΛь кормится ягоΑами бархата амурского, г. ВΛа- Αивосток, 06.11.2019. Фото А. В. ВяΛкова; F — рыжеухий бюΛьбюΛь, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 04.05.2022. Фото М. В. МасΛова Fig. 1. A — brown-eared bulbul on a hawthorn tree, Lazo village, Primorsky Region, 5.11.2019. Photo by V. P. Shokhrin; B — brown-eared bulbul drinks the juice of an Amur maple, Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 03.04.2022. Photo by D. A. Belyaev; C — brown-eared bulbul feeds on the berries of the Virginia creeper, Vladivostok, 02.01.2020. Photo by A. P. Khodakov; D — brown-eared bulbul. Forelevy spring, vicinity of Filippovka Village, Khasansky District, Primorsky Region, 01.03.2018. Photo by Yu. A. Darman; E — brown-eared bulbul feeds on the berries of an Amur cork tree, Vladivostok, 06.11.2019. Photo by A. V. Vyalkov; F — brown-eared bulbul. Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 04.05.2022. Photo by M. V. Maslov in An increase in the number of records of the brown-eared bulbul Microscelis amaurotis in the Russian Far East in recent years
Рис. 1. А — рыжеухий бюΛьбюΛь на боярышнике, с. Δазо, Приморский край, 5.11.2019. Фото В. П. Шохрина; B — рыжеухий бюΛьбюΛь пьет сок кΛена приречного, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 03.04.2022. Фото À. А. БеΛяева; C — рыжеухий бюΛьбюΛь кормится ягоΑами Αевичьего винограΑа пятиΛисточкового, г. ВΛаΑивосток, 02.01.2020. Фото А. П. ХоΑакова; D — рыжеухий бюΛьбюΛь, кΛ. ФореΛевый, окрестности с. ФиΛипповка, Хасанский район, Приморский край, 01.03.2018. Фото Ю. А. Àармана; E — рыжеухий бюΛьбюΛь кормится ягоΑами бархата амурского, г. ВΛа- Αивосток, 06.11.2019. Фото А. В. ВяΛкова; F — рыжеухий бюΛьбюΛь, с. Каймановка, Уссурийский гороΑской округ, Приморский край, 04.05.2022. Фото М. В. МасΛова Fig. 1. A — brown-eared bulbul on a hawthorn tree, Lazo village, Primorsky Region, 5.11.2019. Photo by V. P. Shokhrin; B — brown-eared bulbul drinks the juice of an Amur maple, Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 03.04.2022. Photo by D. A. Belyaev; C — brown-eared bulbul feeds on the berries of the Virginia creeper, Vladivostok, 02.01.2020. Photo by A. P. Khodakov; D — brown-eared bulbul. Forelevy spring, vicinity of Filippovka Village, Khasansky District, Primorsky Region, 01.03.2018. Photo by Yu. A. Darman; E — brown-eared bulbul feeds on the berries of an Amur cork tree, Vladivostok, 06.11.2019. Photo by A. V. Vyalkov; F — brown-eared bulbul. Kaymanovka Village, Ussuriysky Urban District, Primorsky Region, 04.05.2022. Photo by M. V. Maslov
Figure 5 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 5. Map indicating the approximate locations (black stars) of the four CBB sampling sites on the island of Lanai. Inset: Position of Lanai (in black) within the Hawaiian Islands archipelago.
Figure 3 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 3. Lindgren funnel trap deployed in dryland forest at The Nature Conservancy Kanepuu Preserve, July 2020. Photograph by C.P.D.T. Gillett.
Figure 1 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 1. Dorsal and lateral views of an adult female specimen of Hypothenemus hampei (Ferrari, 1867), the coffee berry borer, from Munro Trail, Lanai. Length of specimen: 1.6 mm. Photograph by C.P.D.T. Gillett.
Figure 2 in First Record of the Coffee Berry Borer, Hypothenemus hampei (Ferrari, 1867), on the Hawaiian Island of Lanai (Coleoptera: Curculionidae: Scolytinae)
Figure 2. Lindgren funnel trap deployed on the native plant Freycinetia arborea in mesic / "cloud" forest alongside Munro Trail on Lanaihale, Lanai, July 2020. Photograph by C.P.D.T. Gillett.
Figure 4. Xylosandrus compactus boring coffee berries around the blossom area. X. compactus boring a in First Report of Exploitation of Coffee Beans by Black Twig Borer (Xylosandrus Compactus) and Tropical Nut Borer (Hypothenemus obscurus) (Coleoptera; Curculionidae: Scolytinae) in Hawaii
Figure 4. Xylosandrus compactus boring coffee berries around the blossom area. X. compactus boring a coffee berry (A, left), hole made by X. compactus on the endosperm (B, right); galleries or immature stages were not found.
Fig. 2. Adult spotted wing drosophila emergence from berries 2 in Efficacy of entomopathogenic fungal products for biological control of spotted wing drosophila (Diptera: Drosophilidae) under laboratory conditions
Fig. 2. Adult spotted wing drosophila emergence from berries 2 wk afer re- moval from the arenas. Bars with the same letter are not significantly different from each other (P> 0.05). Error bars represent standard error of the mean.
FIGURE 60. Salvinia preauriculata Berry, 1930 in Fruits, seeds and flowers from the Bovay and Bolden clay pits (early Eocene Tallahatta Formation, Claiborne Group), northern Mississippi, USA
FIGURE 60. Salvinia preauriculata Berry, 1930; UF15737-030658. Specimen showing two floating fronds and a finely dissected, rootlike submerged frond. Scale bar equals 1 mm.
FIGURE 56. Carpolithus prangosoides Berry, 1916 in Fruits, seeds and flowers from the Puryear clay pit (middle Eocene Cockfield Formation), western Tennessee, USA
FIGURE 56. Carpolithus prangosoides Berry, 1916: 1) UF15820-048318, a large fruit with elliptic fruit body and three wings (indicated by arrows). Scale bar equals 4 mm; 2) Enlargement of Figure 56.1 to show reticulate venation of the fruit wing. Scale bar equals 1 mm; 3) UF15820-059471', seven immature, elliptic fruits about 5 mm long and 1.8 mm wide. Note that two fruits on the left and two fruits at the lower right overlap. Scale bar equals 3 mm; 4) UF15820-048319, a fruit with rounded wing apices. Scale bar equals 4 mm; 5) Enlargement of two fruits in Figure 56.3 to show thin fruit wing (indicated by lower right arrow) and fruit body (dark area indicated by upper left arrow). Scale bar equals 1 mm; 6) Enlargement of distal part of fruit in Figure 56.4 to show at least four wings (indicated by arrows). Scale bar equals 1 mm; 7) UF15820-059459, a laterally compressed floral structure with attached pedicel. Scale bar equals 2 mm; 8) Enlargement of the apical portion of Figure 56.7 to show the light-colored perianth parts (indicated by arrow) and enclosed darker structure. Scale bar equals 1 mm; 9) Enlargement of the basal portion of Figure 56.7 to show the pedicel (indicated by arrow). Scale bar equals 1 mm.
FIGURE 26. Paraengelhardtia eocenica Berry, 1916 in Fruits, seeds and flowers from the Puryear clay pit (middle Eocene Cockfield Formation), western Tennessee, USA
FIGURE 26. Paraengelhardtia eocenica Berry, 1916: 1) UF15820-004854, specimen showing a small nutlet (n) impression and the prophyllum (p) extending almost four-fifths of the fruit wing (w). Scale bar equals 3 mm; 2) CONN-Q3-02, compressed specimen showing nutlet and fruit wing. Scale bar equals 3 mm.
Fig. 6 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 6. PCA plot of Trianchoratus malayensis, with geographical origin of data indicated. The horizontal and vertical barplots indicate one-dimensional summary of the PC axes.
Fig. 3 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 3. Biplot of the first two principal components for the four species of Trianchoratus, with mean coordinates of the species indicated. Only vectors (IL1, OL1, IR1, OR1 and pt1) from one ventral anchor are shown.
Fig. 1. A in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 1. A well-developed anchor of Trianchoratus species showing the basic measurements taken for morphometric analysis.
Fig. 4 in Morphometric Analysis Of Trianchoratus Price & Berry, 1966 (Monogenea: Heteronchocleidinae) From Channa Spp. (Osteichthyes: Channidae) Of Peninsular Malaysia
Fig. 4. Chernoff faces: graphical summary of the mean of each of the 15 variables in the four Trianchoratus species represented as different facial features.
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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.