Development of MEMS microsensors, aiming at the application in the study of muscle fatigue in vivo

Kaique F. Sanches, Selva Jéssica S. G., D. D. Purificação, M. Bertotti, Carreño Marcelo N. P.
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Abstract

Many studies have been conducted in order to better understand the role of the pH in muscle fatigue. However, measuring in vivo pH concentration, in the muscular environment during anaerobic exercise, cannot be conducted through regular methods. Thus, in this work, we design and fabricate a siliconbased implantable microelectrode array (MEA) utilizing microelectronics and MEMS techniques. The probe consists of a microneedle with three pairs of electrodes, each containing one Ag-AgCl reference electrode and one Au-IrOx working electrode. The Au and Au/IrOx electrodes were tested in a potassium ferricyanide solution and, in order to verify the device sensitivity to pH, open circuit potential (OCP) measurements were carried out in 0.1 mol L-1 phosphate buffer solution (PBS) with different pH values. The results show a linear response to the solution pH in the studied range, proving that the probe is a promising sensor.
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开发MEMS微传感器,旨在将其应用于体内肌肉疲劳的研究
为了更好地了解pH值在肌肉疲劳中的作用,已经进行了许多研究。然而,在无氧运动时的肌肉环境中,体内pH浓度的测量无法通过常规方法进行。因此,在这项工作中,我们利用微电子和MEMS技术设计和制造了硅基可植入微电极阵列(MEA)。探针由带有三对电极的微针组成,每对电极包含一个Ag-AgCl参比电极和一个Au-IrOx工作电极。在铁氰化钾溶液中测试Au和Au/IrOx电极,为了验证器件对pH的灵敏度,在0.1 mol L-1的不同pH值的磷酸盐缓冲溶液(PBS)中进行开路电位(OCP)测量。结果表明,该探头在研究范围内对溶液pH值呈线性响应,是一种很有前途的传感器。
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