Injectable micro-LED optoelectronics (wireless optogenetics)
Injectable micro-LED optoelectronics (wireless optogenetics)
One-line verdict: Light sources the size of a cell, injected into deep brain with a recording electrode beside them, driven wirelessly in animals that are free to move.
Quick tags: Stimulation (optical) · Recording · Intracortical · Published: 2013 (Science)
Overview
What it is: An injectable class of cellular-scale semiconductor devices. The building block is a GaN micro-inorganic LED (µ-ILED). Multilayer probes combine µ-ILEDs with sensors and actuators, including a platinum microelectrode for recording or electrical stimulation.
Why it matters: Optogenetics usually needs a fiber to the brain. This shows light sources placed at precise deep locations without a tether, controlled by a wireless link.
What was shown: Completely wireless, programmed control of complex behavior in freely moving animals.
Spec Card Grid
Identity
- Authors: Tae-il Kim, Jordan G. McCall and co-authors; corresponding authors John A. Rogers and Michael R. Bruchas
- Org: University of Illinois Urbana-Champaign and Washington University in St. Louis, with collaborators
- Published: Science 340(6129):211-216, 12 April 2013
Geometry & Architecture
- µ-ILED: 6.45 µm thick, 50 × 50 µm
- Pt microelectrode: 20 × 20 µm exposed area
- Format: injected into tissue as a thin multifunctional probe
Evidence and limits
- Shown: wireless optogenetic behavioral control in freely moving animals
- Not covered here: human use; long-term durability
Engineering Verdict
Strengths: no fiber, deep placement, light and electrical recording in one probe.
Limitations: depends on optogenetic expression in the target cells, which is not available in humans today; delivery and heat management are addressed in the paper, not summarized here.
References
- Kim T-i, McCall JG, Jung YH, et al. Injectable, cellular-scale optoelectronics with applications for wireless optogenetics. Science. 2013;340(6129):211-216. doi: 10.1126/science.1232437. https://www.science.org/doi/10.1126/science.1232437. Open copy: https://pmc.ncbi.nlm.nih.gov/articles/PMC3769938/