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创新型单传感器、鞋内压力和温度监测装置:一项静态实验室验证研究。

Innovative single-sensor, in-shoe pressure and temperature monitoring device: A static laboratory validation study.

机构信息

Faculty of Health Sciences, University of Malta, Malta.

Faculty of Health Sciences, University of Malta, Malta.

出版信息

Gait Posture. 2023 Sep;105:35-38. doi: 10.1016/j.gaitpost.2023.06.024. Epub 2023 Jul 4.

Abstract

BACKGROUND

To perform laboratory static validation of pressures from an innovative, single-sensor pressure and temperature monitoring device for the early detection of complications in the high-risk foot.

RESEARCH QUESTION

Can an innovative, newly developed, in-shoe pressure and temperature measuring device, detect and measure the in-shoe peak plantar pressures and skin temperature as accurately as the reference standard?

METHODS

A pressure generating rig, the Tekscan™ Equilibration 'bladder calibrator', was used to produce a known force, against the gold standard, FScan™ in-shoe pressure mapping system by Tekscan™ and a newly developed prototype. The F-scan® system was used to record the pressure readings and establish a baseline for the readings recorded utilising the prototype. A total of 20 pressure values were recorded with 100 samples each.

RESULTS

Exploratory data analysis was conducted to gain insights and analyse the prototype's behaviour at different pressure points. Pre-processing and data cleaning were also performed to remove any anomalies. Support Vector Regressor with a polynomial kernel and Grid-Search algorithm was used to fit the recorded data curve. The best combination of parameters had a Mean Squared Error of 2.59 and a Root Mean Squared Error of 1.61. A simple linear equation was used to convert raw readings to pressure values.

SIGNIFICANCE

The results of this study conclude that the pressure measurements taken with the prototype are congruent to the gold standard, F-scan® in-shoe system. This confirms that the prototype is a valid device that can be used safely as a low-cost alternative to current costly commercial in-shoe pressure mapping devices.

摘要

背景

为了对用于早期发现高危足部并发症的创新型单传感器压力和温度监测设备的压力进行实验室静态验证。

研究问题

创新型、新开发的鞋内压力和温度测量设备能否像参考标准一样准确地检测和测量鞋内足底峰值压力和皮肤温度?

方法

使用压力产生装置——Tekscan™平衡“囊校准器”,产生已知力,与 Tekscan™ FScan™鞋内压力映射系统的金标准和新开发的原型进行对抗。F-scan®系统用于记录压力读数,并利用原型建立记录读数的基线。总共记录了 20 个压力值,每个压力值记录了 100 个样本。

结果

进行了探索性数据分析,以深入了解和分析原型在不同压力点的行为。还进行了预处理和数据清理以去除任何异常。使用带有多项式核的支持向量回归和网格搜索算法拟合记录的数据曲线。最佳参数组合的均方误差为 2.59,均方根误差为 1.61。使用简单的线性方程将原始读数转换为压力值。

意义

这项研究的结果表明,原型测量的压力与金标准 F-scan®鞋内系统一致。这证实了原型是一种有效的设备,可以安全地用作当前昂贵的商用鞋内压力映射设备的低成本替代品。

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