This chapter defines the central hypothesis: biocooperative systems can transition from laboratory research to clinical practice by addressing hardware and reliability limitations through cost-effective, real-time embedded acquisition systems and robust control strategies. The main objective is to design and implement embedded platforms for physiological signal acquisition, integrate them into biocooperative control paradigms for upper-limb robotic rehabilitation, and evaluate their performance in real-word scenarios.

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Hypotheses and Objectives

  • Ana Cisnal de la Rica

摘要

This chapter defines the central hypothesis: biocooperative systems can transition from laboratory research to clinical practice by addressing hardware and reliability limitations through cost-effective, real-time embedded acquisition systems and robust control strategies. The main objective is to design and implement embedded platforms for physiological signal acquisition, integrate them into biocooperative control paradigms for upper-limb robotic rehabilitation, and evaluate their performance in real-word scenarios.