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datasets available to search
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Dataset results
19 results for “locomotor behavior”
Fig. 3 in The role of visual organs in the locomotor behavior of Bactrocera minax (Diptera: Tephritidae)
Fig. 3. Take-off (%) by adult Chinese citrus flies, Bactrocera minax, males and females tested separately with 6 visual blinding treatments. Values are mean ± standard error. Histograms with different lowercase letters indicate significant difference among treatments (P <0.05).
Fig. 2 in The role of visual organs in the locomotor behavior of Bactrocera minax (Diptera: Tephritidae)
Fig. 2. Schematic diagrams of experimental chambers. A. Take-off platform; B. Horizontal crawling device; C. Vertical crawling device; a. take-off platform; b. Plexiglass box; c. video camera; d. Petri dish; e. crawling column; f. ruler.
Fig. 1 in The role of visual organs in the locomotor behavior of Bactrocera minax (Diptera: Tephritidae)
Fig. 1. Schematic diagram of visual blinding treatments on adult Chinese citrus flies, Bactrocera minax. The white arrow indicates the blinded visual organ.
Fig. 5 in The role of visual organs in the locomotor behavior of Bactrocera minax (Diptera: Tephritidae)
Fig. 5. Vertical crawling distance (cm in 30 s) of adult Chinese citrus flies, Bactrocera minax, males and females tested separately with 6 visual blinding treatments. Values are mean ± standard error. Histograms with different lowercase letters indicate significant difference among treatments (P <0.05).
Locomotor behavior of wolf spiders in the paramo
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Data from: Dimensionality of locomotor behaviors in developing C. elegans
<p>Adult animals display robust locomotion, yet the timeline and mechanisms of how juvenile animals acquire coordinated movements and how these movements evolve during development are not well understood. Recent advances in quantitative behavioral analyses have paved the way for investigating complex natural behaviors like locomotion. In this study, we tracked the swimming and crawling behaviors of the nematode <em>Caenorhabditis elegans</em> from postembryonic development through to adulthood. Our principal component analyses revealed that adult <em>C. elegans </em>swimming is low dimensional, suggesting that a small number of distinct postures, or eigenworms, account for most of the variance in the body shapes that constitute swimming behavior. Additionally, we found that crawling behavior in adult <em>C. elegans</em> is similarly low dimensional, corroborating previous studies. Further, our analysis revealed that swimming and crawling are distinguishable within the eigenworm space. Remarkably, young L1 larvae are capable of producing the postural shapes for swimming and crawling seen in adults, despite frequent instances of uncoordinated body movements. In contrast, late L1 larvae exhibit robust coordination of locomotion, while many neurons crucial for adult locomotion are still under development. In conclusion, this study establishes a comprehensive quantitative behavioral framework for understanding the neural basis of locomotor development, including distinct gaits such as swimming and crawling in <em>C. elegans</em>.</p>
Data from: Effects of food intake and hydration state on behavioral thermoregulation and locomotor activity in the tropidurid lizard Tropidurus catalanensis
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Data from: Developmental temperature, not inbreeding, shapes life history and locomotor behaviors in juvenile guppies (Poecilia reticulata)
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Data from: Dimensionality of locomotor behaviors in developing C. elegans
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Data from: Dynamic structure of locomotor behavior in walking fruit flies
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Hippocampal RNA-Seq Data and Behavioral Data from an F2 intercross of Rats Selectively-Bred to Show High or Low Levels of Locomotor Activity in a Novel Environment (bred High Responders vs. bred Low R
GEO Series GSE225746. Rattus norvegicus. 250 samples. Type: Expression profiling by high throughput sequencing.
Short-term effects of human versus bovine sialylated milk oligosaccharide microinjection on zebrafish larvae survival, locomotor behavior and gene expression
GEO Series GSE218857. Danio rerio. 9 samples. Type: Expression profiling by high throughput sequencing.
Hippocampal RNA-Seq Data and Behavioral Data from Rats Selectively-Bred to Show High or Low Levels of Locomotor Activity in a Novel Environment (bred High Responders vs. bred Low Responders)
GEO Series GSE225744. Rattus norvegicus. 24 samples. Type: Expression profiling by high throughput sequencing.
Data from: Trading heat and hops for water: dehydration effects on locomotor performance, thermal limits, and thermoregulatory behavior of a terrestrial toad
Due to their highly permeable skin and ectothermy, terrestrial amphibians are challenged by compromises between water balance and body temperature regulation. The way in which such compromises are accommodated, under a range of temperatures and dehydration levels, impacts importantly the behavior and ecology of amphibians. Thus, using the terrestrial toad Rhinella schneideri as a model organism, the goals of this study were twofold. First, we determined how the thermal sensitivity of a centrally relevant trait—locomotion—was affected by dehydration. Secondly, we examined the effects of the same levels of dehydration on thermal preference and thermal tolerance. As dehydration becomes more severe, the optimal temperature for locomotor performance was lowered and performance breadth narrower. Similarly, dehydration was accompanied by a decrease in the thermal tolerance range. Such a decrease was caused by both an increase in the critical minimal temperature and a decrease in the thermal maximal temperature, with the latter changing more markedly. In general, our results show that the negative effects of dehydration on behavioral performance and thermal tolerance are, at least partially, counteracted by concurrent adjustments in thermal preference. We discuss some of the potential implications of this observation for the conservation of anuran amphibians.
Effect of Platform Swing Walkway on Locomotor Behavior in Diplegic Children
ClinicalTrials.gov study NCT04246658. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
Data from: Trading heat and hops for water: dehydration effects on locomotor performance, thermal limits, and thermoregulatory behavior of a terrestrial toad
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Impaired locomotor behavior of C. elegans neuroligin mutants is dependent of the catechol-O-methyltransferase COMT-4
GEO Series GSE97980. Caenorhabditis elegans. 4 samples. Type: Expression profiling by high throughput sequencing.
A chromosome region linked to neurodevelopmental disorders acts in distinct neuronal circuits in males and females to control locomotor behavior
GEO Series GSE266222. Mus musculus. 8 samples. Type: Expression profiling by high throughput sequencing.
Cis-regulatory changes in locomotor genes are associated with the evolution of burrowing behavior
GEO Series GSE193266. Peromyscus maniculatus; Peromyscus polionotus; Peromyscus maniculatus x Peromyscus polionotus. 18 samples. Type: Expression profiling by high throughput sequencing.
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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.