Qinbin He
Papers
1
Total Citations
2
H-Index
1
About
Qinbin He is a researcher at the intersection of unconventional computing and biological systems, with a primary focus on harnessing the computational capabilities of slime mould. His most notable contribution is the pioneering work on implementing majority gates and circular computation in *Physarum polycephalum*, demonstrating how this simple organism can perform complex logical operations. This research, published in 2015, has been cited 2 times and represents a foundational step toward building real-time universal processors from living substrates. He's work extends the boundaries of natural computation, showing that slime mould can serve as a viable platform for computational geometry, collision-based logic circuits, and even robot control. By proving that biological matter can execute circular computation—a concept essential for memory and feedback loops—He has opened new avenues for bio-inspired computing architectures. His achievements highlight the potential of living systems to replace traditional silicon-based processors in specific applications, making him a key figure in the growing field of biological computing and unconventional hardware design.
Research Focus
Key Achievements
Top Papers
- 1Majority Gates and Circular Computation in Slime Mould2 citations · 2015