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Gait, Balance, and Mobility Analysis

Udkommer d. 02.12.2024

Gait, Balance, and Mobility Analysis

- Theoretical, Technical, and Clinical Applications

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Gait, Balance, and Mobility Analysis: Theoretical, Technical, and Clinical Applications provides a comprehensive overview of gait and movement analysis techniques, from traditional motion capture to modern wearable technologies. The book contains both a technical element that focuses on biomechanics and engineering concepts for gait analysis and the application of gait analysis with clinical populations. Beginning with a comprehensive background on the underlying neural control of gait and mobility in humans and physiological control of balance, the book then covers analysis methods and techniques for laboratory, clinic or remote patient assessment. It then examines how gait, mobility and balance are impacted by musculoskeletal, neurological, and cardio-respiratory conditions. Lastly, it discusses future directions and provides recommendations for future studies. Combining the expertise of engineers and clinicians, this book takes a multidisciplinary approach to show how and why gait, balance and mobility can be used to tackle important clinical questions for various conditions.

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Detaljer
  • SprogEngelsk
  • Sidetal500
  • Udgivelsesdato02-12-2024
  • ISBN139780443214844
  • Forlag Academic Press Inc
  • FormatPaperback
Størrelse og vægt
  • Vægt450 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Mobility Running Rehabilitation Dementia Exercise Exercise therapy Gait Movement disorders Multiple Sclerosis Musculoskeletal system Neural networks Neurology Neurotransmitters Stroke Computer vision Algorithms Computer science Pathology Machine learning Physiology Biomechanics Rhythm Reflexes Biomedical Engineering Kinematics Balance Neuroimaging Assessment Postural Balance Artificial intelligence Physiotherapy activity Pose Estimation Clinical assessment Sensory integration Sensor Remote Monitoring Wearables Chronic lung disease Pace Musculoskeletal disorder Kinetic Knee pain Healthcare technology Brain structure Postural control Ageing Brain function Clinical neuroscience Neurodegeneration Physical activity Medical device Neural mechanisms Developmental milestones Asymmetry Gait analysis Kinematic Digital health technology Saccades Gross motor development Diagnostic procedure Anticipatory postural adjustments Automatic Postural Responses Analytical validation Centre of Mass Digital biomarker Clinical validation clinical validity Fundamental Movement Skills Inertial measurement unit human movement studies Motor assessment Musculoskeletal function fixations Motor Skill Acquisition Neurologic finding Gait Model sensory input Internal models Surface electromyography <p>Gait diagnostics</p> Centre of pressure Force platforms Insole pressure sensors Chronic disorder Sensitivity to intervention Gait domain Digital clinical outcome assessment Biomechanical system Digital endpoints Gait and mobility parameters Ageing and motor control Measurement outcome Perturbation-based balance training Cardio-respiratory diseases Gait impairment Technical validation Postural stability Prognostic capacity Digital mobility outcomes Clinical gait
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