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Carlos Balaguer
Scopus Author ID
ORCID
Publication Activity (10 Years)
Years Active: 2018-2024
Publications (10 Years): 7
Top Topics
Botulinum Toxin
Upper Limb
Children With Cerebral Palsy
Induced Pluripotent Stem Cells
Top Venues
Sensors (Basel, Switzerland)
Biomimetics (Basel, Switzerland)
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This page only lists publications with an associated author ORCID identifier.
Publications
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Elisabeth Menendez
,
Santiago Martinez
,
Fernando Díaz-de-María
,
Carlos Balaguer
Integrating Egocentric and Robotic Vision for Object Identification Using Siamese Networks and Superquadric Estimations in Partial Occlusion Scenarios.
Biomimetics (Basel, Switzerland)
9 (2) (2024)
Elisabeth Menendez
,
Santiago Martinez
,
Fernando Díaz-de-María
,
Carlos Balaguer
Integrating Egocentric and Robotic Vision for Object Identification Using Siamese Networks and Superquadric Estimations in Partial Occlusion Scenarios.
Biomimetics (Basel, Switzerland)
9 (2) (2024)
Elisabeth Menendez
,
Santiago Martinez
,
Fernando Díaz-de-María
,
Carlos Balaguer
Integrating Egocentric and Robotic Vision for Object Identification Using Siamese Networks and Superquadric Estimations in Partial Occlusion Scenarios.
Biomimetics (Basel, Switzerland)
9 (2) (2024)
Rubén de-la-Torre
,
Edwin Daniel Oña
,
Carlos Balaguer
,
Alberto Jardon
Robot-Aided Systems for Improving the Assessment of Upper Limb Spasticity: A Systematic Review.
Sensors (Basel, Switzerland)
20 (18) (2020)
Edwin Daniel Oña
,
Alberto Jardon
,
Alicia Cuesta Gómez
,
Patricia Sánchez-Herrera Baeza
,
Roberto Cano-de la Cuerda
,
Carlos Balaguer
Validity of a Fully-Immersive VR-Based Version of the Box and Blocks Test for Upper Limb Function Assessment in Parkinson's Disease.
Sensors (Basel, Switzerland)
20 (10) (2020)
Santiago Martinez
,
Juan Miguel Garcia-Haro
,
Juan G Victores
,
Alberto Jardon
,
Carlos Balaguer
Experimental Robot Model Adjustments Based on Force-Torque Sensor Information.
Sensors (Basel, Switzerland)
18 (3) (2018)
Juan Hernandez-Vicen
,
Santiago Martinez
,
Juan Miguel Garcia-Haro
,
Carlos Balaguer
Correction of Visual Perception Based on Neuro-Fuzzy Learning for the Humanoid Robot TEO.
Sensors (Basel, Switzerland)
18 (4) (2018)