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◆ IEEE journal of biomedical and health informatics2026-09-01

IMU-Driven Dynamic Spine Model Based on Kinematics and CT for Home-Based PSSE of Idiopathic Scoliosis.

Mingjie Dong, Yinbo Chen, Chengyin Wang, Yifeng Chen, Jianfeng Li, Bin Fang, Jianguo Zhang, Wangshu Yuan, Fujiao Ju, Mingming Zhang, Qianyu Zhuang

原始摘要(英文原文)· Original abstract
Idiopathic scoliosis (IS) is a prevalent spinal deformity that impairs posture and psychosocial health. Physiotherapeutic scoliosis-specific exercise (PSSE) is an effective conservative treatment that needs long-term and regular training. However, academic demands, geographic barriers, and time constraints limit frequent clinic visits, making home-based PSSE the mainstay of care. Also, the lack of supervision makes correct execution and sustained adherence difficult, posing a major challenge in spinal rehabilitation. To address this issue, we innovatively equate the spine as an open-chain spatial multibody kinematic mechanism and propose an IMU-driven, kinematics- and CT-integrated dynamic spine model (KCT-DSM). By fusing real-time motion data with CT-derived anatomical information, KCT-DSM enables continuous tracking of spinal kinematics. Further, we develop a home-based PSSE rehabilitation training system integrating KCT-DSM and PSSE. A preliminary feasibility evaluation was conducted in patients with IS. The Cobb-like angle derived from KCT-DSM differs from X-ray measurements by 1.56$^{\circ }$, suggesting that KCT-DSM provides motion tracking of spinal deformity with different scoliosis patterns. In addition, when using the training system, the effective duration of standard rehabilitation exercises increased by 45.7% in the pilot cases. Overall, the proposed system has potential for providing quantitative feedback and supporting home-based PSSE training.
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IMU-Driven Dynamic Spine Model Based on Kinematics and CT for Home-Based PSSE of Idiopathic Scoliosis. — 科研速览 Science Skim