
Biologic Input Output Systems, Inc develops a Universal Neural Interface that connects the human peripheral nervous system to robotic limbs and digital devices, enabling natural, intuitive, and bi-directional neuromuscular coordination with sensory feedback. Their technology uses an implanted electrode array to capture nerve signals from the brain, which are translated by an AI/ML-powered Controller into precise robotic limb movements and sensory feedback. The company leverages decades of pioneering neurotechnology research and collaborates with institutions like Mayo Clinic and University of Utah to commercialize advanced prosthetic control systems. Their product targets individuals with limb loss or limb difference, aiming to restore natural limb function and sensation with fast, accurate, and intuitive robotic limbs.

Biologic Input Output Systems, Inc develops a Universal Neural Interface that connects the human peripheral nervous system to robotic limbs and digital devices, enabling natural, intuitive, and bi-directional neuromuscular coordination with sensory feedback. Their technology uses an implanted electrode array to capture nerve signals from the brain, which are translated by an AI/ML-powered Controller into precise robotic limb movements and sensory feedback. The company leverages decades of pioneering neurotechnology research and collaborates with institutions like Mayo Clinic and University of Utah to commercialize advanced prosthetic control systems. Their product targets individuals with limb loss or limb difference, aiming to restore natural limb function and sensation with fast, accurate, and intuitive robotic limbs.