Escobar Fausto Andrés, Rengifo Carlos Felipe, Mosquera Víctor Hugo
Universidad Mariana, Street 18 No. 34-104, Pasto, Nariño, Colombia.
Universidad del Cauca, Department of Electronics, Instrumentation and Control, Street 5 No. 4-70 Popayán, Colombia.
HardwareX. 2025 Jul 9;23:e00667. doi: 10.1016/j.ohx.2025.e00667. eCollection 2025 Sep.
This study proposes an electrical impedance tomography (EIT) device based on a programmable system on a chip (PSoc). The EIT-PSoC system is implemented using two PSoC 5LP platforms. A resistive phantom is used to study frame frequency (fps), accuracy (Ac), and signal-to-noise ratio (SNR). A saline phantom, along with both conductive and non-conductive objects, is employed to evaluate the system's ability to detect changes in impedance distribution. Finally, the dielectric characteristics of the human lower pelvis is emulated using four agar phantoms, allowing an evaluation of the EIT-PSoC system's performance in response to changes in fluid volume and conductivity. Experiments conducted on the resistive phantom to characterize the EIT-PSoC system demonstrate a frame frequency of 100 fps, a median SNR of 63.59 dB, and an accuracy of 95.39% when using a 0.98 mA sinusoidal current signal at 50 kHz. EIT image reconstruction shows that the proposed system can distinguish impedance changes in the saline phantom. Additionally, by utilizing the global impedance (GI) index and the agar phantoms, the EIT-PSoC system can detect changes in volume and conductivity, making this system a promising alternative for monitoring the volume and conductivity of biological fluids.
本研究提出了一种基于可编程片上系统(PSoc)的电阻抗断层成像(EIT)设备。EIT-PSoC系统是使用两个PSoC 5LP平台实现的。使用电阻性体模来研究帧频(fps)、精度(Ac)和信噪比(SNR)。使用盐水体模以及导电和非导电物体来评估系统检测阻抗分布变化的能力。最后,使用四个琼脂体模模拟人体下骨盆的介电特性,从而评估EIT-PSoC系统在响应液体体积和电导率变化时的性能。在电阻性体模上进行的表征EIT-PSoC系统的实验表明,当在50 kHz使用0.98 mA正弦电流信号时,帧频为100 fps,中值信噪比为63.59 dB,精度为95.39%。EIT图像重建表明,所提出的系统能够区分盐水体模中的阻抗变化。此外,通过利用全局阻抗(GI)指数和琼脂体模,EIT-PSoC系统能够检测体积和电导率的变化,使得该系统成为监测生物流体体积和电导率的有前途的替代方案。