Department of Rehabilitation Medicine, Gangnam Severance Hospital, Rehabilitation Institute of Neuromuscular Disease, Yonsei University College of Medicine, Seoul 06229, Korea.
Department of Rehabilitation Medicine, Hallym University Dongtan Sacred Heart Hospital, Hallym University College of Medicine, Hwaseong 18450, Korea.
Int J Environ Res Public Health. 2022 Sep 5;19(17):11109. doi: 10.3390/ijerph191711109.
The purpose of this study was to report the clinical validation of the posture analyzing and virtual reconstruction device (PAViR) system, focusing on the accuracy of sagittal spinal parameters, compared with the EOS imaging system. Seventy patients diagnosed with segmental and somatic dysfunction were recruited between February 2020 and November 2020. Each patient was examined using the EOS imaging system and PAViR; the sagittal parameters of human body posture [forward head posture (FHP), T1 tilt angle (T1t), knee flexion angle (KF), lumbar lordosis angle (LL), and pelvic tilt angle (PT)] were analyzed to verify the correlation between the results of the two devices. The median differences in the results of the two devices showed significant differences in FHP (T4-frontal head and T4-auditory canal), T1t, and PT. In the correlation analysis, the values of FHP (C7-auditory canal, T4-frontal head, and T4-auditory canal), T1t, and PT showed a moderate correlation between the two devices (r = 0.741, 0.795, 0.761, 0.621, and 0.692, respectively) ( < 0.001). The KF and LL was fairly correlated (r = 0.514 and 0.536, respectively) ( = 0.004, both). This study presents the potential of a novel skeletal imaging system without radiation exposure, based on a 3D red-green-blue-depth camera (PAViR), as a next-generation diagnostic tool by estimating more accurate parameters through continuous multi-data-based upgrades with artificial intelligence technology.
本研究旨在报告姿势分析和虚拟重建设备(PAViR)系统的临床验证,重点是与 EOS 成像系统相比,矢状脊柱参数的准确性。2020 年 2 月至 2020 年 11 月期间,共招募了 70 名被诊断为节段性和躯体功能障碍的患者。每位患者均接受 EOS 成像系统和 PAViR 检查;分析人体姿势的矢状参数[前探头位置(FHP)、T1 倾斜角(T1t)、膝关节弯曲角(KF)、腰椎前凸角(LL)和骨盆倾斜角(PT)],以验证两种设备结果之间的相关性。两种设备结果的中位数差异在 FHP(T4-额头部和 T4-耳道)、T1t 和 PT 方面存在显著差异。在相关性分析中,FHP(C7-耳道、T4-额头部和 T4-耳道)、T1t 和 PT 的值在两种设备之间呈中度相关(r = 0.741、0.795、0.761、0.621 和 0.692,分别)(<0.001)。KF 和 LL 呈中度相关(r = 0.514 和 0.536,分别)(= 0.004,均)。本研究提出了一种基于 3D 红绿蓝深度相机(PAViR)的新型无辐射骨骼成像系统的潜力,作为一种下一代诊断工具,通过人工智能技术的连续多数据基础升级来估计更准确的参数。