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Updated: Mar 6, 2026

Patterning of Microorganisms and Microparticles through Sequential Capillarity-assisted Assembly
Published on: November 4, 2021
Device and programming abstractions for spatiotemporal control of active micro-particle swarms
Amy T Lam1, Karina G Samuel-Gama1, Jonathan Griffin1
1Stanford University, 318 Campus Drive, Clark Center Room E350A, Stanford, CA 94305, USA. ingmar@stanford.edu.
Abstract:
We present a hardware setup and a set of executable commands for spatiotemporal programming and interactive control of a swarm of self-propelled microscopic agents inside a microfluidic chip. In particular, local and global spatiotemporal light stimuli are used to direct the motion of ensembles of Euglena gracilis, a unicellular phototactic organism. We develop three levels of programming abstractions (stimulus space, swarm space, and system space) to create a scripting language for directing swarms. We then implement a multi-level proof-of-concept biotic game using these commands to demonstrate their utility. These device and programming concepts will enhance our capabilities for manipulating natural and synthetic swarms, with future applications for on-chip processing, diagnostics, education, and research on collective behaviors.

