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贴片式柔性氧分压传感器的研制

Development of a Patch-Type Flexible Oxygen Partial Pressure Sensor.

作者信息

Katayama Yuta, Fujioka Yuta, Tsukada Kosuke

机构信息

Graduate School of Fundamental Science and TechnologyKeio UniversityYokohama223-8522Japan.

Department of Applied Physics and Physico-InformaticsKeio UniversityYokohama223-8522Japan.

出版信息

IEEE J Transl Eng Health Med. 2020 Jun 29;8:1400607. doi: 10.1109/JTEHM.2020.3005477. eCollection 2020.

Abstract

Oxygen concentration in living organisms is one of the important vital indicators in emergency care and bedside medical settings. However, the oximetry method has limitations: the measurement site is limited to the tissue containing blood and the absolute value of oxygen concentration cannot be measured. To overcome these limitations, in this work, we develop a new oxygen sensor that can directly measure the oxygen particle pressure ([Formula: see text]) on the surface of the body and organs. A light emitting diode (LED) and a photodiode (PD) were embedded in a dimethylpolysiloxane substrate mixed with carbon nanotubes. The effectiveness of the device was evaluated using calibration, bending strain tests, time and frequency response, and finally assessments. The results reveal that the calibration experiment of the fabricated oxygen sensor device showed high sensitivity. The carbon nanotube electrode has a sufficient bending resistance and does not affect the response characteristics of the LED and PD, that is, it does not affect the oxygen measurement. assessment shows that the developed patch-type flexible oxygen sensor can accurately measure [Formula: see text] by attaching it to tissues or organs having irregularities or curved surfaces and actual measurements on rat liver surface demonstrated its feasibility.

摘要

生物体中的氧浓度是急诊护理和床边医疗环境中的重要生命体征之一。然而,血氧测定法存在局限性:测量部位仅限于含血组织,且无法测量氧浓度的绝对值。为了克服这些局限性,在本研究中,我们开发了一种新型氧传感器,它可以直接测量身体和器官表面的氧粒子压力([公式:见正文])。将发光二极管(LED)和光电二极管(PD)嵌入与碳纳米管混合的二甲基聚硅氧烷基材中。通过校准、弯曲应变测试、时间和频率响应以及最终评估来评估该装置的有效性。结果表明,所制备的氧传感器装置的校准实验显示出高灵敏度。碳纳米管电极具有足够的抗弯曲性,且不影响LED和PD的响应特性,即不影响氧测量。评估表明,所开发的贴片式柔性氧传感器通过附着于具有不规则或弯曲表面的组织或器官上,能够准确测量[公式:见正文],并且在大鼠肝脏表面的实际测量证明了其可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cb2/7333882/059c68806524/tsuka1abcd-3005477.jpg

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