BrainGate pilot, first human results (2006)
Lab or organization
BrainGate pilot, first human results (2006)
One-line verdict: The paper that showed a person with long-standing paralysis could still drive a computer cursor from motor cortex spiking, years after injury.
Quick tags: Recording · Intracortical · Human · Published: 13 July 2006 (Nature)
Overview
What it is: A pilot neuromotor prosthesis. A 96-microelectrode array implanted in primary motor cortex recorded neuronal ensemble activity from a tetraplegic participant, identified in the paper as MN.
What was shown: Intended hand motion still modulated cortical spiking three years after spinal cord injury. Decoders turned that activity into a “neural cursor”. With it MN opened simulated e-mail and operated devices such as a television, even while conversing. He also opened and closed a prosthetic hand and performed rudimentary actions with a multi-jointed robotic arm.
What it did not show: This was one participant and early results. The authors describe them as a basis for further work, not a finished clinical system.
Spec Card Grid
Identity
- Authors: Leigh R. Hochberg, John P. Donoghue, and colleagues
- Published: Nature, 13 July 2006, “Neuronal ensemble control of prosthetic devices by a human with tetraplegia”
- Participant: one man (MN), three years after spinal cord injury
Architecture
- Sensor: 96-microelectrode array, primary motor cortex
- Output: neural cursor; television and e-mail control; prosthetic hand; robotic arm
Evidence and limits
- Not covered here: array dimensions and electrode length, which are in the paper’s methods; no 3D model yet
References
- Hochberg LR, Donoghue JP, et al. Neuronal ensemble control of prosthetic devices by a human with tetraplegia. Nature. 2006. https://www.nature.com/articles/nature04970