Cristina P. Santos

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University of Minho
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Portugal

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Recent Grants

Grant: Close

Assist-As-Needed Bioinspired Control for a Smart Orthotic System Aiming Personalized Multifunctional Gait Rehabilitation

Open Date: 2020-09-01

Close Date: 2024-03-01

Grant: Close

User-adaptive autonomous robotic walker driven by artificial intelligence for ataxic rehabilitation

Open Date: 2020-09-01

Close Date: 2024-08-01

Grant: Close

SmartOs: SMARt control of a sTand-alone active Orthotic System (POCI-01-0247-FEDER-039868)

Open Date: 2019-08-01

Close Date: 2022-07-01

Grant: Close

SmartOs: Controlo Inteligente de um Sistema Ortótico Ativo e Autónomo

Open Date: 2018-07-01

Close Date: 2021-06-01

Grant: Close

SmartOs: SMARt control of a sTand-alone active Orthotic System (PTDC/EEI-ROB/30386/2017)

Open Date: 2018-07-01

Close Date: 2021-06-01

Articles (11)

Human-Robot Joint Misalignment, Physical Interaction, and Gait Kinematic Assessment in Ankle-Foot Orthoses

Lower limb exoskeletons and orthoses have been increasingly used to assist the user during gait rehabilitation through torque transmission and motor stability. However, the physical human-robot interface (HRi) has not been properly addressed. Current orthoses lead to spurious forces at the HRi that cause adverse effects and high abandonment rates. This study aims to assess and compare, in a holistic approach, human-robot joint misalignment and gait kinematics in three fixation designs of ankle-foot orthoses (AFOs). These are AFOs with a frontal shin guard (F-AFO), lateral shin guard (L-AFO), and the ankle modulus of the H2 exoskeleton (H2-AFO). An experimental protocol was implemented to assess misalignment, fixation displacement, pressure interactions, user-perceived comfort, and gait kinematics during walking with the three AFOs. The F-AFO showed reduced vertical misalignment (peak of 1.37 ± 0.90 cm, p-value < 0.05), interactions (median pressures of 0.39–3.12 kPa), and higher user-perceived comfort (p-value < 0.05) when compared to H2-AFO (peak misalignment of 2.95 ± 0.64 and pressures ranging from 3.19 to 19.78 kPa). F-AFO also improves the L-AFO in pressure (median pressures ranging from 8.64 to 10.83 kPa) and comfort (p-value < 0.05). All AFOs significantly modified hip joint angle regarding control gait (p-value < 0.01), while the H2-AFO also affected knee joint angle (p-value < 0.01) and gait spatiotemporal parameters (p-value < 0.05). Overall, findings indicate that an AFO with a frontal shin guard and a sports shoe is effective at reducing misalignment and pressure at the HRI, increasing comfort with slight changes in gait kinematics.

Year:

2023

Collaborators (6)

Cecilia E. García Cena

-

SPAIN

Joana Figueiredo

Invited Assistant Professor

University of Minho

PORTUGAL

Roque Saltaren

Associate Professor

Universidad Politécnica de Madrid

SPAIN

João Pedro Mendes Lopes

Invited Assistant Professor

University of Minho

PORTUGAL

Miguel Tavares da Silva

Associate Professor

Universidade de Lisboa Instituto Superior Técnico

PORTUGAL

Cristiana Pinheiro

University of Minho

PORTUGAL
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