Department of Computer Science and Engineering, American University of Sharjah, Sharjah P.O. Box 26666, United Arab Emirates.
Sensors (Basel). 2023 Dec 26;24(1):135. doi: 10.3390/s24010135.
A sedentary lifestyle has caused adults to spend more than 6 h seated, which has led to inactivity and spinal issues. This context underscores the growing sedentary behavior, exemplified by extended sitting hours among adults and university students. Such inactivity triggers various health problems and spinal disorders, notably Upper Crossed Syndrome (UCS) and its association with thoracic kyphosis, which can cause severe spinal curvature and related complications. Traditional detection involves clinical assessments and corrective exercises; however, this work proposes a multi-layered system for a back brace to detect, monitor, and potentially prevent the main signs of UCS. Building and using a framework that detects and monitors signs of UCS has facilitated patient-doctor interaction, automated the detection process for improved patient-physician coordination, and helped improve patients' spines over time. The smart wearable brace includes inertial measurement unit (IMU) sensors targeting hunched-back postures. The IMU sensors capture postural readings, which are then used for classification. Multiple classifiers were used where the long short-term memory (LSTM) model had the highest accuracy of 99.3%. Using the classifier helped detect and monitor UCS over time. Integrating the wearable device with a mobile interface enables real-time data visualization and immediate feedback for users to correct and mitigate UCS-related issues.
久坐的生活方式导致成年人每天有超过 6 小时的时间处于坐姿,这导致了缺乏运动和脊柱问题。这种情况突显了日益增长的久坐行为,成年人和大学生长时间坐着就是一个例子。这种缺乏运动会引发各种健康问题和脊柱疾病,特别是上交叉综合征(UCS)及其与胸椎后凸的关联,这会导致严重的脊柱弯曲和相关并发症。传统的检测方法包括临床评估和矫正运动;然而,这项工作提出了一个多层系统,用于背部支撑物来检测、监测,并有可能预防 UCS 的主要迹象。构建和使用一个检测和监测 UCS 迹象的框架,促进了医患互动,使检测过程自动化,以改善医患协调,并帮助患者的脊柱随着时间的推移得到改善。智能可穿戴支撑物包括针对驼背姿势的惯性测量单元(IMU)传感器。IMU 传感器捕捉姿势读数,然后用于分类。使用了多个分类器,其中长短期记忆(LSTM)模型的准确率最高,为 99.3%。使用分类器有助于随着时间的推移检测和监测 UCS。将可穿戴设备与移动接口集成,使用户能够实时可视化数据并获得即时反馈,以纠正和减轻与 UCS 相关的问题。