Projects
Current projects
Neuro-biomechanical aspects determining the motor behavior in infants with high-risk of neuromotor impairments
Long-term evolution of walking ability in cerebral palsy: a longitudinal study
EvaluatioN of motor cApacities and telerehaBilitation in chiLdren with neuromotor disordErs
Efficacy of the Vestibular Implant for the rehabilitation of patients with severe bilateral vestibulopathy
Intelligent Offloading Footwear for Prevention of Lower Extremity Amputations in People with Diabetes
Characterization of knee instability after knee arthroplasty
Clinical validation of a new device for assessing forefoot instability and its impact on Hallux Valgus treatment
Modelling pathological gait with machine learning for treatment selection support
Implementation of a low-cost movement laboratory and training for the management of neuro-orthopaedic disorder: Evaluation of its impact and the quality of developed expertise
Pre- and post-surgery success criteria of functional outcome in total hip arthroplasty
STOP (Stimulation transcranial Optimization Physiotherapy) Low Back Pain
UltraMotion: An innovative approach to measure 4D in vivo bony segment motions based on the fusion between ultrasound and motion capture systems
Past projects
Investigate how information received by the CNS is processed during gait after ACL recconstruction
Dual task in children with cerebral palsy
Gait performance evaluation in children with cerebral palsy: bridging the gap between laboratory and real life
Getting high level of evidence for surgical treatments from routine clinical data. A real-world testing of the SPHN infrastructure
3D kinematics for clinical gait analysis using wearable sensors
Non-specific chronic low back pain (NSCLBP) in children and adolescents: Electromyographic, kinematic and psychosocial characterization
Identifying subgroups of patients with chronic nonspecific low back pain based on a multifactorial approach
Rasterstereography: a 3D radiation-free tool to evaluate scoliosis angle in patients with adolescent idiopathic scoliosis
Modeling pathological gait resulting from motor impairments: compare and combine neuromechanical simulation and machine learning approaches