The human gait cycle is a complex biomechanical process that plays a critical role in maintaining mobility and quality of life. This study aims to analyze the biomechanics of the gait cycle experimentally to optimize rehabilitation strategies for the locomotor system. Using advanced motion capture technology and force plates, we collected comprehensive kinematic and kinetic data from participants without gait abnormalities. Our findings reveal distinct differences patterns between normal walk and simulated walk. By integrating biomechanical insights with clinical practices, this study proposes optimized rehabilitation strategies that enhance recovery outcomes for individuals with gait disorders. The results contribute to a deeper understanding of gait biomechanics and offer practical applications for improving rehabilitation techniques.

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Experimental Analysis of the Gait Cycle Biomechanics in Order to Optimize the Process of Rehabilitation of the Locomotor System

  • Anca Ioana Tătaru,
  • Mihaela Ioana Baritz,
  • Mirela Apostoaie,
  • Angela Repanovici

摘要

The human gait cycle is a complex biomechanical process that plays a critical role in maintaining mobility and quality of life. This study aims to analyze the biomechanics of the gait cycle experimentally to optimize rehabilitation strategies for the locomotor system. Using advanced motion capture technology and force plates, we collected comprehensive kinematic and kinetic data from participants without gait abnormalities. Our findings reveal distinct differences patterns between normal walk and simulated walk. By integrating biomechanical insights with clinical practices, this study proposes optimized rehabilitation strategies that enhance recovery outcomes for individuals with gait disorders. The results contribute to a deeper understanding of gait biomechanics and offer practical applications for improving rehabilitation techniques.