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Image Based Musculoskeletal Modeling Allows Personalized Biomechanical Analysis of Gait.

, , , , , and . ISBMS, volume 4072 of Lecture Notes in Computer Science, page 58-66. Springer, (2006)

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The study of muscle action during single support and swing phase of gait: clinical relevance of forward simulation techniques., , and . Gait Posture, 17 (2): 97--105 (April 2003)Movement Quality Parameters during Gait Assessed by a Single Accelerometer in Subjects with Osteoarthritis and Following Total Joint Arthroplasty., , , , , , , and . Sensors, 22 (8): 2955 (2022)An EMG-based, muscle driven forward simulation of single support phase of gait., , , and . J Biomech, 35 (5): 609--619 (May 2002)Towards the Monitoring of Functional Status in a Free-Living Environment for People with Hip or Knee Osteoarthritis: Design and Evaluation of the JOLO Blended Care App., , , , , , , , , and 1 other author(s). Sensors, 20 (23): 6967 (2020)Musculo-tendon length and lengthening velocity of rectus femoris in stiff knee gait., , , , and . Gait Posture, 23 (2): 222--229 (February 2006)The complementary role of the plantarflexors, hamstrings and gluteus maximus in the control of stance limb stability during gait., , and . Gait Posture, 17 (3): 264--272 (June 2003)Image Based Musculoskeletal Modeling Allows Personalized Biomechanical Analysis of Gait., , , , , and . ISBMS, volume 4072 of Lecture Notes in Computer Science, page 58-66. Springer, (2006)Estimation of hamstring length at initial contact based on kinematic gait data., , and . Gait Posture, 20 (1): 61--66 (August 2004)Peak Tibiofemoral Contact Forces Estimated Using IMU-Based Approaches Are Not Significantly Different from Motion Capture-Based Estimations in Patients with Knee Osteoarthritis., , , , , , and . Sensors, 23 (9): 4484 (2023)