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Data from: Flexibility and control of thorax deformation during hawkmoth flight
- 负责人:
- DOI:
- doi:10.5061/dryad.310nt
- 摘要:
- . Lepidopteran insects move their wings by distortion of the thorax structure via the indirect flight muscles (IFMs), which are activated by neural signals at eve
Data from: Speed dependency in ?-motoneuron activity and locomotor modules in human locomotion: indirect evidence for phylogenetically conserved
- 负责人:
- DOI:
- doi:10.5061/dryad.4ch98
- 摘要:
- modules were analysed from multi-muscle electromyographic recordings. The reconstructed MN activity patterns were divided into the following three patterns
Data from: Flightin maintains myofilament lattice organization required for optimal flight power and courtship song quality in Drosophila
- 负责人:
- DOI:
- doi:10.5061/dryad.ps009
- 摘要:
- The indirect flight muscles (IFMs) of Drosophila and other insects with asynchronous flight muscles are characterized by a crystalline myofilament
Data from: Impacts of mussel invasions on the prey preference of two native predators
- 负责人:
- DOI:
- doi:10.5061/dryad.4f7d6
- 摘要:
- s in combination with indirect facilitation, but interrogating the behaviors that drive such outcomes will advance our understanding of successful invasions.
Data from: Does body size predict the buzz-pollination frequencies used by bees?
- 负责人:
- DOI:
- doi:10.5061/dryad.6g8qr82
- 摘要:
- ces on the indirect flight muscles that control the production of floral vibrations. Larger insects beat their wings less rapidly than smaller?bodied insect
Data from: Bee and floral traits affect the characteristics of the vibrations experienced by flowers during buzz-pollination
- 负责人:
- DOI:
- doi:10.5061/dryad.3q0b1r1
- 摘要:
- During buzz pollination, bees use their indirect flight muscles to produce vibrations that are transmitted to the flowers and result in pollen
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