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Science Advances
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June 1, 2017
How birds direct impulse to minimize the energetic cost of foraging flight
Diana D Chin, David Lentink
Journal of the Royal Society, Interface
|
June 15, 2022
Birds both avoid and control collisions by harnessing visually guided force vectoring
Diana D Chin, David Lentink
Nature Communications
|
November 27, 2019
Birds repurpose the role of drag and lift to take off and land
Diana D Chin, David Lentink
The Journal of Experimental Biology
|
April 1, 2016
Flapping wing aerodynamics: from insects to vertebrates
Diana D Chin, David Lentink
Science Robotics
|
November 20, 2024
Bird-inspired reflexive morphing enables rudderless flight
Eric Chang, Diana D Chin, David Lentink
The Journal of Experimental Biology
|
April 8, 2020
The aerodynamic force platform as an ergometer
Marc E Deetjen, Diana D Chin, David Lentink
Bioinspiration & Biomimetics
|
December 7, 2016
Lift calculations based on accepted wake models for animal flight are inconsistent and sensitive to vortex dynamics
Eric Gutierrez, Daniel B Quinn, Diana D Chin, et al.
Elife
|
August 7, 2019
Birds land reliably on complex surfaces by adapting their foot-surface interactions upon contact
William Rt Roderick, Diana D Chin, Mark R Cutkosky, et al.
Journal of the Royal Society, Interface
|
June 9, 2017
Inspiration for wing design: how forelimb specialization enables active flight in modern vertebrates
Diana D Chin, Laura Y Matloff, Amanda Kay Stowers, et al.
Elife
|
February 26, 2024
Small deviations in kinematics and body form dictate muscle performances in the finely tuned avian downstroke
Marc E Deetjen, Diana D Chin, Ashley M Heers, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 12) with videos related to
Sort By:
Page
of 2
Science Advances
|
June 1, 2017
How birds direct impulse to minimize the energetic cost of foraging flight
Diana D Chin, David Lentink
Journal of the Royal Society, Interface
|
June 15, 2022
Birds both avoid and control collisions by harnessing visually guided force vectoring
Diana D Chin, David Lentink
Nature Communications
|
November 27, 2019
Birds repurpose the role of drag and lift to take off and land
Diana D Chin, David Lentink
The Journal of Experimental Biology
|
April 1, 2016
Flapping wing aerodynamics: from insects to vertebrates
Diana D Chin, David Lentink
Science Robotics
|
November 20, 2024
Bird-inspired reflexive morphing enables rudderless flight
Eric Chang, Diana D Chin, David Lentink
The Journal of Experimental Biology
|
April 8, 2020
The aerodynamic force platform as an ergometer
Marc E Deetjen, Diana D Chin, David Lentink
Bioinspiration & Biomimetics
|
December 7, 2016
Lift calculations based on accepted wake models for animal flight are inconsistent and sensitive to vortex dynamics
Eric Gutierrez, Daniel B Quinn, Diana D Chin, et al.
Elife
|
August 7, 2019
Birds land reliably on complex surfaces by adapting their foot-surface interactions upon contact
William Rt Roderick, Diana D Chin, Mark R Cutkosky, et al.
Journal of the Royal Society, Interface
|
June 9, 2017
Inspiration for wing design: how forelimb specialization enables active flight in modern vertebrates
Diana D Chin, Laura Y Matloff, Amanda Kay Stowers, et al.
Elife
|
February 26, 2024
Small deviations in kinematics and body form dictate muscle performances in the finely tuned avian downstroke
Marc E Deetjen, Diana D Chin, Ashley M Heers, et al.
Page
of 2