Peng Piao, Chen Huaihao, Che Bo, Li Xuan, Fan Chunjian, Liu Lei, Luo Teng, Deng Linhong
College of Microelectronics and Control Engineering, Changzhou University, Changzhou, Jiangsu 213164, P. R. China.
Institute of Biomedical Engineering and Health Sciences, Changzhou University, Changzhou, Jiangsu 213164, P. R. China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2025 Apr 25;42(2):219-227. doi: 10.7507/1001-5515.202410058.
The evaluation of blood compatibility of biomaterials is crucial for ensuring the clinical safety of implantable medical devices. To address the limitations of traditional testing methods in real-time monitoring and electrical property analysis, this study developed a portable electrical impedance tomography (EIT) system. The system uses a 16-electrode design, operates within a frequency range of 1 to 500 kHz, achieves a signal to noise ratio (SNR) of 69.54 dB at 50 kHz, and has a data collection speed of 20 frames per second. Experimental results show that the EIT system developed in this study is highly consistent with a microplate reader ( =0.97) in detecting the hemolytic behavior of industrial-grade titanium (TA3) and titanium alloy-titanium 6 aluminum 4 vanadium (TC4) in anticoagulated bovine blood. Additionally, with the support of a multimodal image fusion Gauss-Newton one-step iterative algorithm, the system can accurately locate and monitor in real-time the dynamic changes in blood permeation and coagulation caused by TC4 . In conclusion, the EIT system developed in this study provides a new and effective method for evaluating the blood compatibility of biomaterials.
生物材料血液相容性的评估对于确保可植入医疗设备的临床安全性至关重要。为解决传统测试方法在实时监测和电学性能分析方面的局限性,本研究开发了一种便携式电阻抗断层成像(EIT)系统。该系统采用16电极设计,在1至500 kHz的频率范围内运行,在50 kHz时实现了69.54 dB的信噪比,数据采集速度为每秒20帧。实验结果表明,本研究开发的EIT系统在检测工业级钛(TA3)和钛合金 - 钛6铝4钒(TC4)在抗凝牛血中的溶血行为时,与酶标仪高度一致( =0.97)。此外,在多模态图像融合高斯 - 牛顿一步迭代算法的支持下,该系统能够准确实时定位并监测由TC4引起的血液渗透和凝血的动态变化。总之,本研究开发的EIT系统为评估生物材料的血液相容性提供了一种新的有效方法。