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带有石墨烯传感器的 TLSO-智能 Brace 原型中矫正力测量的应用。

TLSO with Graphene Sensors-An Application to Measurements of Corrective Forces in the Prototype of Intelligent Brace.

机构信息

Lublin University of Technology, Nadbystrzycka Street 38D, 20-618 Lublin, Poland.

University of Warmia and Mazury in Olsztyn, Michała Oczapowskiego Street 2, 10-719 Olsztyn, Poland.

出版信息

Sensors (Basel). 2022 May 25;22(11):4015. doi: 10.3390/s22114015.

Abstract

This study presents a prototype of Intelligent Brace-the gold medal winner in the 68th edition of the International EUREKA 2019 Competition, in Valencia, Spain. It shows how to improve the effectiveness of a static orthopedic brace, with modern technology based on advanced electronic solutions. The research uses in-house-made thin-film graphene sensors, an electronic system with a microcontroller and derotating pads, a mobile application for Android system, and a remote database. The article presents a description of the real project, the system principle of operation, and the layout of the system elements in the orthosis. A prototype device was designed and built that was tested not only in laboratory conditions, but also during trials with the first patient. Approximately two months of data were collected and interpreted. The collected research results provided basic knowledge about the range of forces exerted by the brace on the patient's body, as well as the regularity of wearing the orthosis by the patient and compliance with the doctor's recommendations.

摘要

本研究展示了 Intelligent Brace 的原型,它是西班牙瓦伦西亚第 68 届国际 EUREKA 2019 竞赛的金牌得主。它展示了如何利用基于先进电子解决方案的现代技术来提高静态矫形支具的效果。该研究使用了自制的薄膜石墨烯传感器、带有微控制器和去旋转垫的电子系统、适用于 Android 系统的移动应用程序以及远程数据库。本文介绍了真实项目的描述、系统的工作原理以及矫形器中系统元素的布局。设计并构建了一个原型设备,不仅在实验室条件下进行了测试,还在第一个患者的试用中进行了测试。收集并解释了大约两个月的数据。收集到的研究结果提供了有关支具对患者身体施加的力的范围以及患者佩戴矫形器的规律性和对医生建议的遵从性的基本知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/004f/9185526/fa80e46bc45f/sensors-22-04015-g001.jpg

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