Guillaume Gines
Papers
1
Total Citations
8
H-Index
1
About
Guillaume Gines is a researcher at the intersection of synthetic biology, nanotechnology, and swarm robotics, with a focus on engineering programmable, self-organizing systems at the microscale. His most cited work, "Evolutionary optimization of self-assembly in a swarm of bio-micro-robots" (2017, 8 citations), pioneers the use of DNA-functionalized micro-beads as autonomous agents capable of sensing, signaling, and self-assembling into predefined shapes. By applying evolutionary algorithms to optimize the collective behavior of these bio-hybrid swarms, Gines demonstrates how in vitro micro-robots can be programmed to achieve complex, emergent structures without centralized control. This contribution bridges the gap between theoretical swarm intelligence and experimental synthetic biology, offering a scalable platform for applications in targeted drug delivery, tissue engineering, and microscale assembly. Though his citation count is modest, his work is notable for its bold integration of molecular programming with evolutionary robotics, laying foundational principles for next-generation bio-micro-robotic systems. Gines’ research continues to inspire new approaches to bottom-up synthetic biology and adaptive microsystems.
Research Focus
Key Achievements
Top Papers
- 1