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用于经济锥分析的定量仪器的开发:连接影像学和临床测量方法。

Development of quantitative instrumentation for cone of economy analysis: bridging radiographic and clinical measures.

作者信息

Chang Hsu Ming, Christina Soong, Jen Yeh Ting, Yu Chen Hsuan

机构信息

Department of Power Mechanical Engineering, National Tsing Hua University, No. 101, Section 2, Guangfu Rd, East District, Hsinchu City 300, Taiwan.

Institute of Biomedical Engineering, College of Medicine and College of Engineering, National Taiwan University, No. 1, Section 4, Roosevelt Rd, Da'an District, Taipei City 10617, Taiwan; Department of Physical Medicine and Rehabilitation, National Taiwan University Hospital, No. 7, Zhongshan S Rd, Zhongzheng District, Taipei City 100, Taiwan.

出版信息

Spine J. 2025 Mar 28. doi: 10.1016/j.spinee.2025.03.005.

Abstract

BACKGROUND CONTEXT

Postural misalignment and compromised balance are major contributors to fall risk in the elderly, leading to significant physical injuries, reduced quality of life (QOL), and increased healthcare burdens. Evaluating postural stability is critical for fall prevention. The cone of economy (CoE) concept explores the range of motion of the center of mass and head required to maintain a stable upright posture, yet its measurement remains challenging due to the limitations of existing methods.

PURPOSE

This study introduces a novel apparatus for real-time measurement of both external and internal CoEs, offering a cost-effective alternative to expensive and complex traditional methods that require extensive data processing.

STUDY DESIGN/SETTING: The study employed a controlled experimental design to develop and validate the proposed CoE measurement apparatus in a laboratory setting using a sample of healthy young adults.

METHODS

The proposed apparatus used 2 spherical measuring units to independently track pelvic and T1 vertebra motion, employing dual rotational magnetic encoders and a linear displacement sensor for precise 3D motion contour capture.

RESULTS

Validation experiments confirmed the system's reliability, achieving an average measurement error below 1.5 mm. The CoE is not an idealized cone but has an irregular conical shape, influenced by physiological factors (height and weight). The average range of sway (RoS) for external CoE at T1 was 42.7 (coronal), 47.6 (sagittal), and 12.5 cm (vertical), whereas that at the pelvic position was 14.3, 13.4, and 8 cm, respectively. The average RoS for internal CoE were smaller: 10.4 (coronal), 6.9 (sagittal), and 2 cm (vertical) at T1 and 8.2, 5.8, and 2.2 cm, respectively, at the pelvic position. The external CoE exhibited a larger RoS at the body's front, reflecting the foot's role in balancing forward shifts of gravity.

CONCLUSIONS

Preliminary findings highlight a stronger correlation between external CoE and height than internal CoE, establishing a foundation for CoE research with implications for fall prevention and balance assessment.

CLINICAL SIGNIFICANCE

This study introduces a reliable, cost-effective apparatus for real-time cone of economy (CoE) measurement, offering dynamic insights into postural stability, fall risk, and personalized balance assessment in clinical settings.

摘要

背景

姿势失调和平衡能力下降是导致老年人跌倒风险的主要因素,会造成严重身体损伤、生活质量(QOL)下降以及医疗负担增加。评估姿势稳定性对于预防跌倒至关重要。经济圆锥(CoE)概念探讨了维持稳定直立姿势所需的质心和头部的运动范围,但由于现有方法的局限性,其测量仍然具有挑战性。

目的

本研究介绍了一种用于实时测量外部和内部CoE的新型仪器,为需要大量数据处理的昂贵且复杂的传统方法提供了一种经济高效的替代方案。

研究设计/设置:本研究采用对照实验设计,在实验室环境中使用健康年轻成年人样本开发并验证所提出的CoE测量仪器。

方法

所提出的仪器使用2个球形测量单元独立跟踪骨盆和T1椎体的运动,采用双旋转磁编码器和线性位移传感器精确捕获3D运动轮廓。

结果

验证实验证实了该系统的可靠性,平均测量误差低于1.5毫米。CoE不是理想的圆锥体,而是具有不规则的圆锥形状,受生理因素(身高和体重)影响。T1处外部CoE的平均摆动范围(RoS)在冠状面为42.7(厘米)、矢状面为47.6(厘米)、垂直方向为12.5厘米,而在骨盆位置分别为14.3、13.4和8厘米。内部CoE的平均RoS较小:T1处冠状面为10.4(厘米)、矢状面为6.9(厘米)、垂直方向为2厘米,骨盆位置分别为8.2、5.8和2.2厘米。外部CoE在身体前方表现出更大的RoS,反映了足部在平衡重力向前转移中的作用。

结论

初步研究结果突出了外部CoE与身高之间的相关性比内部CoE更强,为CoE研究奠定了基础,对预防跌倒和平衡评估具有重要意义。

临床意义

本研究介绍了一种可靠、经济高效的实时经济圆锥(CoE)测量仪器,为临床环境中的姿势稳定性、跌倒风险和个性化平衡评估提供了动态见解。

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