Without being conscious of it, our motor system is constantly solving computationally challenging problems in ways that astonish both roboticists and neuroscientists. We develop computational models of animal movement to understand how the brain generates movement and design novel rehabilitation therapies and assistive devices for patients with movement disorders. We collaborate closely with neuroscientists, clinicians and roboticists to study the brain and help patients achieve a better quality of life.
Popular repositories Loading
-
coniii
coniii PublicForked from eltrompetero/coniii
Convenient Interface to Inverse Ising (ConIII)
Python 1
-
autolfads-tf2
autolfads-tf2 PublicForked from snel-repo/autolfads-tf2
A TensorFlow 2.0 implementation of Latent Factor Analysis via Dynamical Systems (LFADS) and AutoLFADS.
Python 1
-
-
-
Repositories
- mousearm Public
- Vibrotactile_Clinic_Source_Code_2026 Public
Release of source code for pre-print on vibrotactile stimulation
- ising_EnergyOverTime Public
- MouseArmImitationLearning Public
This is an imitation learning project which uses reinforcmenent learning to train deep neural networks to control biomechanical and torque driven models by minimizing the difference between a desired kinematic motion and the actual motion enacted by a network
- .github Public
- matteos_arm Public
- baseCebra-analysis Public
- autolfads-tf2 Public Forked from snel-repo/autolfads-tf2
A TensorFlow 2.0 implementation of Latent Factor Analysis via Dynamical Systems (LFADS) and AutoLFADS.
Top languages
Loading…
Most used topics
Loading…