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Fig. 2 in On the activity of two medium-sized canids: the Golden Jackal (Canis aureus) and the Red Fox (Vulpes vulpes) in the Natural Bark "Sinite Kamani" (Bulgaria) revealed by camera traps
Fig. 2. Number of all pictures of Red Fox (Vulpes vulpes) taken during 24h (expressed for one hour time interval) during seasons.
Fig. 4 in On the activity of two medium-sized canids: the Golden Jackal (Canis aureus) and the Red Fox (Vulpes vulpes) in the Natural Bark "Sinite Kamani" (Bulgaria) revealed by camera traps
Fig. 4. Daytime activity (feeding on dog food) of the Red Fox and the Golden Jackal registered by camera traps at the Sinite Kamani Natural Park.
Fig. 1 in On the activity of two medium-sized canids: the Golden Jackal (Canis aureus) and the Red Fox (Vulpes vulpes) in the Natural Bark "Sinite Kamani" (Bulgaria) revealed by camera traps
Fig. 1. Location of Sinite Kamani Natural Park and schematic position of the camera traps through the park (black circles).
Fig. 3 in On the activity of two medium-sized canids: the Golden Jackal (Canis aureus) and the Red Fox (Vulpes vulpes) in the Natural Bark "Sinite Kamani" (Bulgaria) revealed by camera traps
Fig. 3. Number of all pictures of Golden Jackal (Canis aureus) taken during 24h (expressed for one hour time interval) during seasons.
Fig. 3 in Bark of Ulmus laciniata (Trautv.) Mayr in the diet of Cervus elaphus xanthopygus (Milne-Edwards)
Fig. 3. Bark damage in young Ulmus laciniata after bark stripping by Cervus elaphus xanthopygus. Sample plot. 3.05.2021. Authors' photo Рис. 3. Характер поврежÃений коры у моΛоÃых иΛьмов Λопастных посΛе кормежки изюбрей. Пробная пΛощаÃь. 3 мая 2021 г. Фото авторов
Fig. 4. A in Bark of Ulmus laciniata (Trautv.) Mayr in the diet of Cervus elaphus xanthopygus (Milne-Edwards)
Fig. 4. A — Young Cervus elaphus xanthopygus feeding on the bark of Ulmus laciniata. Ussuriysky Nature Reserve. Suvorovskoye forestry. Shkotovsky district. 18.04.2010. Leaf River camera trap; B — A young male Cervus elaphus xanthopygus eating cambium from a large Ulmus laciniata. Ussuriysky Nature Reserve. Komarovskoye forestry. Ussuriysk urban district. 21.03.2021. Bushnell camera trap; C — A researcher examines a group of young Ulmus laciniata debarked by Cervus elaphus xanthopygus. Ussuriysky Nature Reserve. Suvorovskoye forestry. Shkotovsky district. 13.04.2010. Photo by M. Maslov; D — A researcher examines Ulmus laciniata, debarked by Cervus elaphus xanthopygus at a different time. Ussuriysky Nature Reserve. Komarovskoye forestry. Ussuriysk urban district. 27.05.2010. Photo by M. Maslov Рис. 4. A — сегоΛеток изюбря, питающийся корой иΛьма Λопастного. Уссурийский заповеÃник. Суворовское Λесничество. Шкотовский район. 18 апреΛя 2010 г. ФотоΛовушка Leaf River; B — моΛоÃой самец изюбря объеÃает камбий с крупного иΛьма Λопастного. Уссурийский заповеÃник. Комаровское Λесничество. Уссурийский гороÃской округ. 21 марта 2021 г. ФотоΛовушка Bushnell; C — научный сотруÃник осматривает группу моΛоÃых иΛьмов Λопастных, с которых изюбри объеΛи кору. Уссурийский заповеÃник. Суворовское Λесничество. Шкотовский район. 13 апреΛя 2010 г. Фото М. МасΛова; D — научный сотруÃник осматривает иΛьм Λопастной, на котором набΛюÃаются сΛеÃы обгрызания изюбрем коры разной Ãавности. Уссурийский заповеÃник. Комаровское Λесничество. Уссурийский гороÃской округ. 27 мая 2010 г. Фото М. МасΛова
Fig. 2 in Bark of Ulmus laciniata (Trautv.) Mayr in the diet of Cervus elaphus xanthopygus (Milne-Edwards)
Fig. 2. Bark damage in large Ulmus laciniata after bark stripping by Cervus elaphus xanthopygus. Sample plot. 3.05.2021. Authors' photo Рис. 2. Характер поврежÃений коры у крупных иΛьмов Λопастных посΛе кормежки изюбрей. Пробная пΛощаÃь. 3 мая 2021 г. Фото авторов
Fig. 5 in Bark of Ulmus laciniata (Trautv.) Mayr in the diet of Cervus elaphus xanthopygus (Milne-Edwards)
Fig. 5. Young Ulmus laciniata debarked by Cervus elaphus xanthopygos. "The Udege Legend" National Park. Krasnoarmeysky district. 2.06.2021. Photo by D. Belyaev Рис. 5. МоΛоÃой иΛьм Λопастной с объеÃенной изюбрем корой. НационаΛьный парк «УÃэгейская ΛегенÃа». Красноармейский район. 2 июня 2021 г. Фото À. БеΛяева
Fig. 1 in Bark of Ulmus laciniata (Trautv.) Mayr in the diet of Cervus elaphus xanthopygus (Milne-Edwards)
Fig. 1. Location of the sample plot. Surroundings of the village of Kamenushka, Ussuriysk urban district, Primorsky Region. The inset shows the research area Рис. 1. РаспоΛожение пробной пΛощаÃи. Окрестности с. Каменушка, Уссурийский гороÃской округ, Приморский край. На врезке показан район иссΛеÃований
Data from: Spatial configuration matters when removing windfelled trees to manage bark beetle disturbances in Central European forest landscapes
<p>The published dataset contains the result of the paper titled <strong>Spatial configuration matters when removing windfelled trees to manage bark beetle disturbances in Central European forest landscapes, in Journal of Environmental Management.</strong></p> <p>Two zip files contain maps in ascii format for the total bark beetle and wind damage over 54 simulation year in our study region in Slovakia under reference climate and different climate change scenarios. No- salvaging and 95% salvaging scenarios are shown, just as in the paper.</p> <p>Excel file contains data of the other figures in the paper (main text and appendices as well).</p> <p>See more details about target area, and iLand model:</p> <p>https://www.sciencedirect.com/science/article/pii/S0168192318302946</p> <p>http://iland.boku.ac.at/startpage</p> <p>contact: Laura Dobor; dobor.laura@gmail.com</p> <p> </p>
Figure 1 in A Damage-Limiting Method for Extracting Bark and Ambrosia Beetles (Coleoptera: Curculionidae: Scolytinae) from Their Tunnels in Host Plants of Conservation Concern
Figure 1. Use of sticky cockroach traps to extract the Hawaiian endemic bark beetle Xyleborus mauiensis Perkins, 1900, from a Hawaiian endemic olapa (Cheirodendron trigynum) tree on the island of Lanai. a: Section of sticky trap ready for action; note the glue pushed to one side of the strip to form a globule; b: Beetle stuck to the glue and extracted from the wood.
Figure 3 in Bark-feeding Kamalia priapus (Lepidoptera: Notodontidae) damaging Homalium ceylanicum trees in Vietnam
Figure 3. Symptoms of Kamalia priapus attack in Homalium ceylanicum trees: a. nests/cocoons on the stems; b. the cocoon was partially open with a prepupa inside; c. the pupal chamber was opened including the bark with a pupa inside; d, e. damage lesions on stems.
Figure 2 in Bark-feeding Kamalia priapus (Lepidoptera: Notodontidae) damaging Homalium ceylanicum trees in Vietnam
Figure 2. Morphological characteristics of Kamalia priapus: a, b. adults; a. male; b. female; c. eggs; d. larva; e. pupae.
Fig. 10 in Potential pest bark and ambrosia beetles from Cuba not present in the continental United States
Fig. 10. Dorsal and lateral view of female Xylosandrus cubensis. Scale bar: 1 mm. Permission to publish from the Canadian Museum of Nature, Ottawa, Canada.
Fig. 8 in Potential pest bark and ambrosia beetles from Cuba not present in the continental United States
Fig. 8. Dorsal and lateral view of female Xyleborus anthracinus. Scale bar: 1 mm. Permission to publish from the Canadian Museum of Nature, Ottawa, Canada.
Fig. 7 in Potential pest bark and ambrosia beetles from Cuba not present in the continental United States
Fig. 7. Dorsal and lateral view of female (lef) and male (right) Scolytus dimidiatus. Scale bar: 2 mm. Permission to publish from the National Museum of Natural History, Smithsonian Institution, Washington, DC, USA.
Fig. 6 in Potential pest bark and ambrosia beetles from Cuba not present in the continental United States
Fig. 6. Dorsal and lateral view of female Pityophthorus regularis. Scale bar: 1 mm. Permission to publish from the National Museum of Natural History, Smithsonian Institution, Washington, DC, USA.
Fig. 4 in Potential pest bark and ambrosia beetles from Cuba not present in the continental United States
Fig. 4. Dorsal and lateral view of female Phloeotribus atlanticus. Scale bar: 1 mm. Permission to publish from the National Museum of Natural History, Smithsonian Institution, Washington, DC, USA.
Fig. 5 in Potential pest bark and ambrosia beetles from Cuba not present in the continental United States
Fig. 5. Dorsal and lateral view of female Pityophthorus laevis. Scale bar: 1 mm. This image may be protected by copyright or have other legal restrictions on use. Permission to publish from the National Museum of Natural History, Smithsonian Institution, Washington, DC, USA.
Fig. 1 in Potential pest bark and ambrosia beetles from Cuba not present in the continental United States
Fig. 1. Dorsal and lateral view of female Corthylus subasperulus. Scale bar: 1 mm. Permission to publish from the National Museum of Natural History, Smithsonian Institution, Washington, DC, USA.
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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.