Yun Joho, Kim Hyeon Woo, Lee Jong-Hyun
Department of Biomedical Science and Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju 500-712, Korea.
School of Mechanical Engineering, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea.
Sensors (Basel). 2016 Dec 21;16(12):2207. doi: 10.3390/s16122207.
A micro electrical impedance spectroscopy (EIS)-on-a-needle for depth profiling (μEoN-DP) with a selective passivation layer (SPL) on a hypodermic needle was recently fabricated to measure the electrical impedance of biotissues along with the penetration depths. The SPL of the μEoN-DP enabled the sensing interdigitated electrodes (IDEs) to contribute predominantly to the measurement by reducing the relative influence of the connection lines on the sensor output. The discrimination capability of the μEoN-DP was verified using phosphate-buffered saline (PBS) at various concentration levels. The resistance and capacitance extracted through curve fitting were similar to those theoretically estimated based on the mixing ratio of PBS and deionized water; the maximum discrepancies were 8.02% and 1.85%, respectively. Depth profiling was conducted using four-layered porcine tissue to verify the effectiveness of the discrimination capability of the μEoN-DP. The magnitude and phase between dissimilar porcine tissues (fat and muscle) were clearly discriminated at the optimal frequency of 1 MHz. Two kinds of simulations, one with SPL and the other with complete passivation layer (CPL), were performed, and it was verified that the SPL was advantageous over CPL in the discrimination of biotissues in terms of sensor output.
最近制造了一种带有皮下针选择性钝化层(SPL)的用于深度剖析的微针上的电阻抗谱(EIS)(μEoN-DP),以测量生物组织的电阻抗及其穿透深度。μEoN-DP的SPL通过降低连接线对传感器输出的相对影响,使传感叉指电极(IDE)在测量中起主要作用。使用不同浓度水平的磷酸盐缓冲盐水(PBS)验证了μEoN-DP的鉴别能力。通过曲线拟合提取的电阻和电容与基于PBS和去离子水混合比理论估计的值相似;最大差异分别为8.02%和1.85%。使用四层猪组织进行深度剖析,以验证μEoN-DP鉴别能力的有效性。在1 MHz的最佳频率下,不同猪组织(脂肪和肌肉)之间的幅度和相位得到了清晰的区分。进行了两种模拟,一种带有SPL,另一种带有完全钝化层(CPL),并验证了在生物组织鉴别方面,就传感器输出而言,SPL比CPL更具优势。