Emily Baird
Papers
7
Total Citations
276
H-Index
6
About
Emily Baird is a researcher whose work spans insect sensory neuroscience, biomechanics, and bio-inspired robotics, with a particular focus on how insects use visual information to guide complex behaviors. Her most influential contribution lies in uncovering the elegant principles behind insect flight control: her 2013 paper "A Universal Strategy for Visually Guided Landing" (138 citations) demonstrated that honeybees regulate landing by maintaining a constant rate of optic flow expansion, a remarkably simple yet robust strategy applicable across species. Complementing this, her 2010 study on goal-seeking in honeybees (97 citations) revealed how insects navigate to remembered locations by matching current visual snapshots to stored retinal representations — a finding with significant implications for understanding miniature-brain computation. More recently, Baird has extended her research to dung beetles, investigating their locomotion, leg coordination during ball rolling, and multifunctional limb design. This work has directly inspired bio-inspired robotic systems, with several collaborative engineering papers translating beetle biomechanics into functional robot designs. Across her career, Baird's research bridges fundamental animal behavior with practical applications in robotics and autonomous systems, making her a distinctive voice at the intersection of neuroethology and engineering.
Research Focus
Key Achievements
Top Papers
- 1A universal strategy for visually guided landing138 citations · 2013
- 2Goal seeking in honeybees: matching of optic flow snapshots?97 citations · 2010
- 3Rules for the Leg Coordination of Dung Beetle Ball Rolling Behaviour11 citations · 2020
- 4Visual guidance of honeybees approaching a vertical landing surface10 citations · 2023
- 5
- 6Bio-inspired design and movement generation of dung beetle-like legs9 citations · 2018
- 7Bio-Inspired Design and Kinematic Analysis of Dung Beetle-Like Legs2 citations · 2017