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用于骨科的基于聚二甲基硅氧烷的可拉伸电容式应变片传感器的批量制造

Batch Fabrication of a Polydimethylsiloxane Based Stretchable Capacitive Strain Gauge Sensor for Orthopedics.

作者信息

Sheeja Prakash Karthika, Mayr Hermann Otto, Agrawal Prachi, Agarwal Priyank, Seidenstuecker Michael, Rosenstiel Nikolaus, Woias Peter, Comella Laura Maria

机构信息

Department of Microsystems Engineering-IMTEK, University of Freiburg, 79110 Freiburg im Breisgau, Germany.

Department of Orthopedics and Trauma Surgery, The University Medical Center Freiburg, 79106 Freiburg im Breisgau, Germany.

出版信息

Polymers (Basel). 2022 Jun 8;14(12):2326. doi: 10.3390/polym14122326.

Abstract

Polymer-based capacitive strain gauges are a novel and promising concept for measuring large displacements and strains in various applications. These novel sensors allow for high strain, well above the maximum values achieved with state-of-the-art strain gauges (Typ. 1%). In recent years, a lot of interest in this technology has existed in orthopedics, where the sensors have been used to measure knee laxity caused by a tear of the anterior cruciate ligament (ACL), and for other ligament injuries. The validation of this technology in the field has a very low level of maturity, as no fast, reproducible, and reliable manufacturing process which allows mass production of sensors with low cost exists. For this reason, in this paper, a new approach for the fabrication of polymer-based capacitive strain gauges is proposed, using polydimethylsiloxane (PDMS) as base material. It allows (1) the fast manufacturing of sensor batches with reproducible geometry, (2) includes a fabrication step for embedding rigid electrical contacts on the sensors, and (3) is designed to produce sensor batches in which the size, the number, and the position of the sensors can be adapted to the patient's anatomy. In the paper, the process repeatability and the robustness of the design are successfully proven. After 1000 large-strain elongation cycles, in the form of accelerated testing caused much higher strains than in the above-mentioned clinical scenario, the sensor's electrical contacts remained in place and the functionalities were unaltered. Moreover, the prototype of a patient customizable patch, embedding multiple sensors, was produced.

摘要

基于聚合物的电容式应变片是一种用于测量各种应用中大幅位移和应变的新颖且有前景的概念。这些新型传感器能够承受高应变,远高于现有应变片所能达到的最大值(典型值为1%)。近年来,矫形外科领域对这项技术兴趣浓厚,该传感器已被用于测量前交叉韧带(ACL)撕裂导致的膝关节松弛以及其他韧带损伤情况。由于不存在能够低成本批量生产传感器的快速、可重复且可靠的制造工艺,这项技术在该领域的验证成熟度很低。因此,本文提出了一种以聚二甲基硅氧烷(PDMS)为基础材料制造基于聚合物的电容式应变片的新方法。它能够(1)快速制造具有可重复几何形状的传感器批次,(2)包括在传感器上嵌入刚性电触点的制造步骤,并且(3)设计用于生产传感器批次,其中传感器的尺寸、数量和位置可以根据患者的解剖结构进行调整。本文成功证明了该工艺的可重复性和设计的稳健性。在经历1000次大应变伸长循环(其形式为加速测试,产生的应变比上述临床场景中的应变高得多)后,传感器的电触点仍保持原位,功能未发生改变。此外,还制作了一个可根据患者定制的贴片原型,其中嵌入了多个传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5934/9228458/de85e5fa85f7/polymers-14-02326-g001.jpg

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