Home /Research /Design of Biomedical Soft Robotic Device for Lower Limbs Mechanical Muscle Rehabilitation and Electrochemical Monitoring under Reduced-Gravity Space Environment
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Design of Biomedical Soft Robotic Device for Lower Limbs Mechanical Muscle Rehabilitation and Electrochemical Monitoring under Reduced-Gravity Space Environment

Victor Ticllacuri, José Cornejo, Niels Castrejon, Aurora B. Diaz, Katherine Hinostroza, Devjoy Dev, Yen-kai Chen, Paul Palacios, Walter Castillo, Mariela Vargas, Jorge Cornejo, Juan Montalvan, Avid Roman–Gonzalez

Year
2021
Citations
23

Abstract

Space travel is one of humanity's most fantastic aspirations. However, space is the most dangerous environment due to extreme conditions. Reduced-gravity generates disuse muscle atrophy and impaired blood circulation in lower limbs. Therefore, this paper proposes a new biomedical soft robotic system to improve muscle development and promote blood circulation by applying energetically efficient mechanical stimulation to the soft tissues of the astronaut's lower limb and, additionally, to monitor their performance by cotton-based carbon nanotubes biosensors. The computational mechanical simulations performed show a maximum increase in energy optimisation of 89% and a maximum safety factor of 2.75. These preliminary results suggest an increase in the efficiency and safety of the soft robotic device.

Keywords

Blood circulationRobotMechanical energyComputer scienceSimulationSpace environmentBiomedical engineeringMechanical engineeringPhysical medicine and rehabilitationEngineering

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