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4,483 results for “rat”
Fig. 3 in Infestation and seasonal fluctuation of chigger mites on the Southeast Asian house rat (Rattus brunneusculus) in southern Yunnan Province, China
Fig. 3. Seasonal fluctuation of infestations of the Southeast Asian house rat (R. brunneusculus) with Ascoschoengastia indica at Jingha, southern Yunnan of China (April 2016–March 2017).
Data of PK/PD model of Reserpine-Induced Myalgia (RIM) model in rats
<p><span>This study aimed to establish a model that relates the pharmacokinetic and pharmacodynamic aspects of the reserpine-induced myalgia (RIM) model. To do this, measurements of reserpine in plasma and dopamine, norepinephrine, and serotonin in nervous tissue were carried out. </span></p>
Linked collectors and determiners for: Blind mole rat (Spalacidae) sampling, used for phylogenetic analyses.
Natural history specimen data linked to collectors and determiners held within, "Blind mole rat (Spalacidae) sampling, used for phylogenetic analyses". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/368d59c2-8b6e-45a5-9209-ead5a8461614">https://bionomia.net/dataset/368d59c2-8b6e-45a5-9209-ead5a8461614</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/368d59c2-8b6e-45a5-9209-ead5a8461614">https://gbif.org/dataset/368d59c2-8b6e-45a5-9209-ead5a8461614</a>. Formatted as a Frictionless Data package.
EEG/LFP/EMG data from freely-behaving rats across the sleep/wake cycle (includes manual identification of behavioral state in 4s epochs)
<p>Open-access data set that contains raw EEG/LFP/EMG data recorded from freely-behaving rats. 40 complete 24-hr recordings across 10 male, Sprague Dawley rats are included. Additionally, manual behavioral state classification is provided for all recordings in 4s epochs. These data form the testing and training set for a recently accepted article (Ellen J.G. and Dash, M.B. <em>An automated neural network for automated behavioral state classification rats</em>, peerJ (<em>in press)</em>) which details an open-source artificial neural network for automated classification of behavioral state. R-code for the automated classifier and detailed instructions for its implementation are freely available at: <a href="https://github.com/jellen44/AutomaticSleepScoringTool"><em> https://github.com/jellen44/AutomaticSleepScoringTool</em></a></p> <p>For additional details about the data set, please see the uploaded readme file.</p> <p> </p>
Fig. 1 in A Preliminary Study Of Two Sympatric Maxomys Rats In Sarawak, Malaysia: Spacing Patterns And Population Dynamics
Fig. 1: a) Location of the study area, Lambir Hills National Park, Sarawak, Malaysia (black circle); b) Distribution of wire-mesh live cage traps (black circles) set at the Canopy Biology Plot.
Fig. 2 in A Preliminary Study Of Two Sympatric Maxomys Rats In Sarawak, Malaysia: Spacing Patterns And Population Dynamics
Fig. 2. Distribution of the home ranges of Maxomys rajah and M. whiteheadi during: a) August 1997–July 1999; b) May 2001–July 2004; and c) November 2004–July 2005. M, male; F, female.
Fig. 3 in A Preliminary Study Of Two Sympatric Maxomys Rats In Sarawak, Malaysia: Spacing Patterns And Population Dynamics
Fig. 3. Population dynamics of Maxomys rajah (open circles) and M. whiteheadi (black squares) from August 1997 to July 2005 at Lambir hills National Park, Sarawak, Malaysia.
Fig. 1 in New insights into the taxonomy of the marmoset rats Hapalomys (Rodentia: Muridae)
Fig. 1. Map of localities. 1 – Myanmar, the type locality of Hapalomys longicaudatus; 2 – Thailand, locality of R5237 (Badenhorst et al., 2009); 3 – Laos, the type locality of Hapalomys pasquieri; 4 – Vietnam, Ha Tinh Province, Ke Go NR, locality of ZIN 103040; 5 – Vietnam, Kon Tum Province, Dakto, the type locality of Hapalomys delacouri; 6 – Vietnam, Binh Phuoc Province, Bu Gia Map NP; 7 – records of Hapalomys longicaudatus (after Musser, 1972); 8 – Malaysia, an approximate locality of the Hapalomys longicaudatus record from Yong et al. (1982).
Fig. 5 in New insights into the taxonomy of the marmoset rats Hapalomys (Rodentia: Muridae)
Fig. 5. Ventral, dorsal and lateral views of skull and lingual side of mandibles: A – Hapalomys suntsovi (holotype, ZIN 99487, Binh Phuoc Province, Vietnam); B – Hapalomys delacouri (ZIN 103040, Ha Tinh Province, Vietnam). Scale bar =10 mm.
Fig. 4 in New insights into the taxonomy of the marmoset rats Hapalomys (Rodentia: Muridae)
Fig. 4. General appearance of Hapalomys suntsovi based on a specimen ZIN 99484, collected from the Bu Gia Map NP, Vietnam, on 12 January 2010.
Fig. 2 in New insights into the taxonomy of the marmoset rats Hapalomys (Rodentia: Muridae)
Fig. 2. Maximum Likelihood phylogenetic tree (GTR+G+I) of Hapalomys spp. and relative murid taxa as inferred from the COI gene sequence. Posterior probabilities are indicated above the corresponding nodes.
Fig. 3 in New insights into the taxonomy of the marmoset rats Hapalomys (Rodentia: Muridae)
Fig. 3. Ungrouped morphometric separation (principal components analysis) drawn from the 19 specimens of Hapalomys spp. Red dots – H. longicaudatus; blue dots – H. delacouri; green dots – H. suntsovi from the Bu Gia Map NP (BGM), Binh Phuoc Province, Vietnam.
Figs. 31–36 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 31–36. SEM Syphacia (Segienamsyphacia) yuniae, new species from Eropeplus canus in south Sulawesi, Indonesia. 31, cephalic end of female, apical view; 32, cephalic end of female, apical view, higher magnification; 33, egg; 34, enlarged view of eggshell surface; 35, caudal papilla of male, lateral view; 36, mamelon, ventral view.
Figs. 19–30 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 19–30. Syphacia (Segienamsyphacia) yuniae, new species from Eropeplus canus in south Sulawesi, Indonesia. 19, male, holotype, lateral view; 20, cephalic end of male, apical view; 21, midbody in cross section of male; 22, midbody in cross section of male, higher magnification; 23, posterior portion of male, ventral view; 24, posterior portion of male; lateral view; 25, spicule and gubernaculum, lateral view; 26, female, lateral view; 27, cephalic end of female, apical view; 28, midbody in cross section of female; 29, egg; 30, excretory pore and vulva, showing poorly developed vagina
Figs. 11–18 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 11–18. SEM Syphacia (Rumbaisyphacia) kumis, new species from Eropeplus canus in south Sulawesi, Indonesia. 11, cephalic end, apical view; 12, mouth opening showing setiferous apical margin of pharynx; 13, anterior end, lateral view; 14, egg; 15, posterior end; 16, mamelon, ventral view; 17, mamelon (lateral view); 18, protruded vulva
Figs. 1−10 in Description of two new species of Syphacia (Nematoda: Oxyuridae) collected from Eropeplus canus (Rodentia: Muridae), an endemic rat of Sulawesi, Indonesia, with proposal of new subgenera
Figs. 1−10. Syphacia (Rumbaisyphacia) kumis, new species from Eropeplus canus in south Sulawesi, Indonesia. 1, male, holotype, lateral view; 2, cephalic end of male, apical view; 3, midbody in cross section of male; 4, posterior end of male, ventral view; 5, spicule and gubernaculum, lateral view; 6, cephalic end of female, apical view; 7, anterior portion of female, lateral view; 8, Posterior portion of female; 9, midbody in cross section of female; 10, egg.
Fig. 2 in Variation In The Nucleolar Organiser Regions Of The Long-Tailed Giant Rats (Rodentia, Muridae, Genus Leopoldamys) In Malaysia
Fig. 2. Ag-NOR stained metaphase of male Leopoldamys sabanus: NORs located on two subacrocentric autosomes (sa1 and sa3), a large acrocentric (al), and a medium-sized acrocrocentri (am with NOR at the terminal end of the long arm). X-chromosome is the longest acrocentric and Y the smallest acrocentric in the complement.
Fig. 1 in Variation In The Nucleolar Organiser Regions Of The Long-Tailed Giant Rats (Rodentia, Muridae, Genus Leopoldamys) In Malaysia
Fig. 1. Metaphase of male Leopoldamys ciliatus with three pairs of NORs (sa1, sa3 and m) stained with silver nitrate. X-chromosome is the longest acrocentric and Y the smallest acrocentric in the complement.
Fig. 5 in Variation In The Nucleolar Organiser Regions Of The Long-Tailed Giant Rats (Rodentia, Muridae, Genus Leopoldamys) In Malaysia
Fig. 5. Ventral side of tail of Leopoldamys sabanus from Janda Baik, Pahang (top, bicoloured with pale venter) and L. ciliatus from Gunung Bunga Buah, Selangor (bottom, uniformly coloured).
Fig. 7 in Variation In The Nucleolar Organiser Regions Of The Long-Tailed Giant Rats (Rodentia, Muridae, Genus Leopoldamys) In Malaysia
Fig. 7. Ag-NOR metaphase of male Leopoldamys sabanus with one member each of three pairs (sa1, al. am) being expressed.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.