Research Center for Organic Electronics (ROEL), Yamagata University, 4-3-16 Jonan, Yonezawa, Yamagata, 992-8510, Japan.
Functional Polymers Research Laboratory, Tosoh Corporation, 1-8 Kasumi, Yokkaichi, Mie, 510-8540, Japan.
Sci Rep. 2018 Apr 23;8(1):6368. doi: 10.1038/s41598-018-24744-x.
Wearable sensor device technologies, which enable continuous monitoring of biological information from the human body, are promising in the fields of sports, healthcare, and medical applications. Further thinness, light weight, flexibility and low-cost are significant requirements for making the devices attachable onto human tissues or clothes like a patch. Here we demonstrate a flexible and printed circuit system consisting of an enzyme-based amperometric sensor, feedback control and amplification circuits based on organic thin-film transistors. The feedback control and amplification circuits based on pseudo-CMOS inverters were successfuly integrated by printing methods on a plastic film. This simple system worked very well like a potentiostat for electrochemical measurements, and enabled the quantitative and real-time measurement of lactate concentration with high sensitivity of 1 V/mM and a short response time of a hundred seconds.
可穿戴传感器设备技术可以实现人体生物信息的连续监测,在运动、医疗保健和医疗应用领域具有广阔的应用前景。进一步实现设备的超薄、超轻、超柔以及低成本,对于将其像创可贴一样贴合在人体组织或衣物上非常重要。在这里,我们展示了一种由基于酶的电流传感器、基于有机薄膜晶体管的反馈控制和放大电路组成的柔性和印刷电路系统。基于伪 CMOS 反相器的反馈控制和放大电路通过印刷方法成功集成在塑料薄膜上。这个简单的系统非常像一个用于电化学测量的恒电位仪,它可以实现高灵敏度为 1 V/mM 和响应时间短至 100 秒的乳酸浓度的定量和实时测量。