Mark Ingram
Papers
4
Total Citations
72
H-Index
4
About
Mark Ingram is a pioneering researcher in bio-inspired robotics, with a focused expertise in novel locomotion mechanisms derived from biological systems. His primary research area centers on developing robotic mobility solutions inspired by the motility of single-celled organisms, specifically amoeboid cytoplasmic streaming. Ingram’s seminal work, "Whole Skin Locomotion Inspired by Amoeboid Motility Mechanisms," introduces a groundbreaking approach where an elongated toroid inverts itself to generate continuous, pseudopod-like movement. This concept, detailed across multiple highly cited papers (with his 2005 publication alone garnering 34 citations), offers a radical alternative to traditional wheeled or legged robots, enabling navigation through complex, unstructured terrain. His subsequent analyses, such as "Mechanics of the Whole Skin Locomotion Mechanism," delve into the effects of geometry and friction on efficiency, providing a rigorous mechanical foundation for this novel system. Ingram’s contributions are notable for bridging fundamental biology with practical engineering, offering a paradigm shift in how robots can move through challenging environments. His work remains a cornerstone for researchers exploring soft robotics and unconventional mobility.
Research Focus
Key Achievements
Top Papers
- 1Whole Skin Locomotion Inspired by Amoeboid Motility Mechanisms34 citations · 2005
- 2Whole Skin Locomotion Inspired by Amoeboid Motility Mechanisms23 citations · 2008
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