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Data from: Mechanosensation is evolutionarily tuned to locomotor mechanics
负责人:
Brett Aiello
关键词:
mechanosensation Neuromechanics evolution pectoral fin locomotion phylogeny
DOI:
doi:10.5061/dryad.0463n
摘要:
nics within a phylogenetic framework, we show that peripheral mechanosensation has evolved with limb biomechanics, evolutionarily tuning the neuromecha
Data from: Touch sensation by pectoral fins of the catfish Pimelodus pictus
负责人:
关键词:
Pimelodus pictus;swimming;pectoral fin;neuroanatomy;mechanosensation;sensory physiology;catfish
DOI:
doi:10.5061/dryad.2c760
摘要:
Mechanosensation is fundamental to many tetrapod limb functions yet it remains largely uninvestigated in the paired fins of fishes, the limb homologs
Data from: Neural evidence supports a dual sensory-motor role for insect wings
负责人:
Pratt, Brandon
关键词:
Flight Control Campaniform Sensilla Wings Strain Sensing Coriolis Forces
DOI:
doi:10.5061/dryad.7hm1m
摘要:
Flying insects use feedback from various sensory modalities including vision and mechanosensation to navigate through their environment. The rapid
Data from: Insights into the roles of CMK-1 and OGT-1 in interstimulus interval-dependent habituation in Caenorhabditis elegans
负责人:
Rankin, Catharine
关键词:
Mechanosensation OGT-1 CMK-1 Non-associative learning Habituation Neurogenetics
DOI:
doi:10.5061/dryad.qg7kv6c
摘要:
-dependent manner, providing the first insights into the molecular mechanisms underlying the universally observed phenomenon that habituation has different properti
Data from: Force transduction and lipid binding in MscL: a continuum-molecular approach
负责人:
关键词:
force transduction;mechanosensitive channel of large conductance;stress tensor;central force decomposition;traction;MscL;lateral pressure profiles;mechanosensation;lipid binding
DOI:
doi:10.5061/dryad.ph510
摘要:
The bacterial mechanosensitive channel MscL, a small protein mainly activated by membrane tension, is a central model system to study
Data from: Single mechanosensory neurons encode lateral displacements using precise spike timing and thresholds
负责人:
Yarger, Alexandra
关键词:
mechanosensation haltere insect flight sensory neuron primary afferent
DOI:
doi:10.5061/dryad.272gd5n
摘要:
in the context of the animal’s own body movements. Mechanosensory cues that can resolve dynamic internal and environmental conditions, like those from vertebrate

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