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  1. Review—Emerging Portable Technologies for Gait Analysis in Neurological Disorders.Christina Salchow-Hömmen, Matej Skrobot, Magdalena C. E. Jochner, Thomas Schauer, Andrea A. Kühn & Nikolaus Wenger - 2022 - Frontiers in Human Neuroscience 16.
    The understanding of locomotion in neurological disorders requires technologies for quantitative gait analysis. Numerous modalities are available today to objectively capture spatiotemporal gait and postural control features. Nevertheless, many obstacles prevent the application of these technologies to their full potential in neurological research and especially clinical practice. These include the required expert knowledge, time for data collection, and missing standards for data analysis and reporting. Here, we provide a technological review of wearable and vision-based portable motion analysis tools that emerged (...)
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  • Walking Speed Reliably Measures Clinically Significant Changes in Gait by Directional Deep Brain Stimulation.Christopher P. Hurt, Daniel J. Kuhman, Barton L. Guthrie, Carla R. Lima, Melissa Wade & Harrison C. Walker - 2021 - Frontiers in Human Neuroscience 14.
    Introduction: Although deep brain stimulation often improves levodopa-responsive gait symptoms, robust therapies for gait dysfunction from Parkinson's disease remain a major unmet need. Walking speed could represent a simple, integrated tool to assess DBS efficacy but is often not examined systematically or quantitatively during DBS programming. Here we investigate the reliability and functional significance of changes in gait by directional DBS in the subthalamic nucleus.Methods: Nineteen patients underwent unilateral subthalamic nucleus DBS surgery with an eight-contact directional lead in the most (...)
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