Fischer Susanne, Abtahi Bahareh, Warncke Mareen, Böhmer Carola, Winger Hans, Sachse Carmen, Mersch Johannes, Häntzsche Eric, Nocke Andreas, Cherif Chokri
Institute for Textile Machinery and High Performance Material Technology (ITM), Faculty for Mechanical Science and Engineering, Technische Universität Dresden, 01062 Dresden, Germany.
CeTI-Cluster of Excellence, Centre for Tactile Internet with Human-in-the-Loop, Technische Universität Dresden, 01062 Dresden, Germany.
Micromachines (Basel). 2024 Jan 31;15(2):222. doi: 10.3390/mi15020222.
Functional electrical stimulation (FES) aims to improve the gait pattern in cases of weak foot dorsiflexion (foot lifter weakness) and, therefore, increase the liveability of people suffering from chronic diseases of the central nervous system, e.g., multiple sclerosis. One important component of FES is the detection of the knee angle in order to enable the situational triggering of dorsiflexion in the right gait phase by electrical impulses. This paper presents an alternative approach to sensors for motion capture in the form of weft-knitted strain sensors. The use of textile-based strain sensors instead of conventional strain gauges offers the major advantage of direct integration during the knitting process and therefore a very discreet integration into garments. This in turn contributes to the fact that the FES system can be implemented in the form of functional leggings that are suitable for inconspicuous daily use without disturbing the wearer unnecessarily. Different designs of the weft-knitted strain sensor and the influence on its measurement behavior were investigated. The designs differed in terms of the integration direction of the sensor (wale- or course-wise) and the width of the sensor (number of loops) in a weft-knitted textile structure.
功能性电刺激(FES)旨在改善足背屈无力(足部抬起无力)情况下的步态模式,从而提高患有中枢神经系统慢性疾病(如多发性硬化症)患者的生活质量。FES的一个重要组成部分是检测膝关节角度,以便在正确的步态阶段通过电脉冲实现背屈的情境触发。本文提出了一种以纬编应变传感器形式进行运动捕捉的传感器替代方法。使用基于纺织品的应变传感器而非传统应变片的主要优点是在编织过程中可直接集成,因此能非常隐蔽地集成到服装中。这进而促成了FES系统可以采用功能性紧身裤的形式实现,适合在日常使用中不引人注目,且不会给穿戴者带来不必要的干扰。研究了纬编应变传感器的不同设计及其对测量行为的影响。这些设计在纬编纺织结构中传感器的集成方向(纵行或横列方向)和传感器宽度(线圈数量)方面存在差异。