Self-made 3D-printed encapsulation of thin-film transducers for reliable force measurement in biomedical applications

R. Pertusio, S. Roatta
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引用次数: 1

Abstract

In biomedical studies as well as in clinical trials, it is often useful to have a reliable measure of the force exerted by the body(eg. clenching force at the teeth or pinch force at fingertips) or on the body by external stimuli (eg. taps to elicit reflexes orlocal pressure for nociceptive stimulation). Thin-film sensors such as FlexiForce ® provide a very handy and versatile solutionfor these application, but can be easily damaged and offer poor accuracy and repeatability, being heavily affected by thesurface material they get in contact with. The aim of the study is the realization of a 3D-printed cover that completely embedsthe sensor, thus providing mechanical protection and increasing reliability of the measurement. The increasing availability of3D printers and of printing materials for medical use allows the user to shape the cover according to specific needs, with shortdeveloping time and low cost.
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自制3d打印薄膜传感器封装,用于生物医学应用中可靠的力测量
在生物医学研究和临床试验中,对身体施加的力有一个可靠的测量通常是有用的。牙齿上的握紧力或指尖的握紧力)或身体受到外部刺激(例如:轻拍以引起反射或局部压力以产生伤害性刺激)。薄膜传感器如FlexiForce®为这些应用提供了一个非常方便和通用的解决方案,但很容易损坏,精度和可重复性差,受到接触表面材料的严重影响。这项研究的目的是实现一个完全嵌入传感器的3d打印盖板,从而提供机械保护并提高测量的可靠性。越来越多的3d打印机和用于医疗用途的打印材料的可用性允许用户根据特定需求塑造封面,开发时间短,成本低。
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