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首页> 外文期刊>IEEE Electron Device Letters >Biocompatible and Ultra-Flexible Inorganic Strain Sensors Attached to Skin for Long-Term Vital Signs Monitoring
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Biocompatible and Ultra-Flexible Inorganic Strain Sensors Attached to Skin for Long-Term Vital Signs Monitoring

机译:生物相容性和超柔韧性的无机应变传感器附着在皮肤上,可长期监测生命体征

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摘要

Wearable electronics have attracted much attention and are experiencing rapid growth in recent years. Such devices are expected to stay closer to the human body (i.e., attached to the skin) for better performance. Therefore, ultra-flexibility of such devices is necessary in order to make the sensor conform to the human body when the devices are used for healthcare monitoring. Here, we present a biocompatible and ultra-flexible strain sensor for pulse and body motion real-time and long-term measurement. The sensor, fabricated and integrated on a semi-permeable substrate with good biocompatibility and waterproofness, is mechanically invisible for the human. It owns good linearity (), good repeatability, low resistance (350 ), and short response time (less than 100 ms). The sensor is designed with the shear lag theory, obtaining greater measuring range but still with good linearity. The liquid transfer printing method is used for thin-film sensing part and soft substrate integration in order to avoid damage. The sensor shows better performance and higher precision in motion and pulse monitoring than other similar sensors. The experiments demonstrate that the sensor is more suitable for long-term health monitoring at medical grade.
机译:近年来,可穿戴电子产品引起了广泛关注,并且正在快速增长。期望这样的设备保持更靠近人体(即,附着在皮肤上)以获得更好的性能。因此,当使这些设备用于医疗保健监视时,为了使传感器适合人体,这种设备的超柔韧性是必需的。在这里,我们提出了一种生物相容性和超柔韧性的应变传感器,用于实时和长期测量脉搏和身体运动。该传感器以良好的生物相容性和防水性制成并集成在半渗透性基材上,对人体而言是机械上不可见的。它具有良好的线性(),良好的重复性,低电阻(350)和较短的响应时间(小于100 ms)。该传感器采用剪切滞后理论进行设计,可获得更大的测量范围,但仍具有良好的线性度。液体转移印刷方法用于薄膜感应部件和软基板集成,以避免损坏。与其他类似传感器相比,该传感器在运动和脉冲监视方面显示出更好的性能和更高的精度。实验表明,该传感器更适合于医疗级的长期健康监测。

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