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2
[Bipedalism in birds, a determining feature for their adaptive success].
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Wings versus legs in the avian bauplan: development and evolution of alternative locomotor strategies.
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Flapping before Flight: High Resolution, Three-Dimensional Skeletal Kinematics of Wings and Legs during Avian Development.
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Facultative adjustment of pre-fledging mass loss by nestling swifts preparing for flight.
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Wing-assisted incline running and the evolution of flight.
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Wing bone geometry reveals active flight in Archaeopteryx.
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The effects of wing twist in slow-speed flapping flight of birds: trading brute force against efficiency.
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Flapping wing aerodynamics: from insects to vertebrates.
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Forelimb posture in dinosaurs and the evolution of the avian flapping flight-stroke.
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Convergent evolution of noncoding elements associated with short tarsus length in birds.
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Evolutionary integration of forelimb and hindlimb proportions within the bat wing membrane inhibits ecological adaptation.
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Multi-Modal Mobility Morphobot (M4) with appendage repurposing for locomotion plasticity enhancement.
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Emerging biological insights enabled by high-resolution 3D motion data: promises, perspectives and pitfalls.
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Measured motion: searching for simplicity in spinal locomotor networks.
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A fundamental avian wing-stroke provides a new perspective on the evolution of flight.
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