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Two-Point Stretchable Electrode Array for Endoluminal Electrochemical Impedance Spectroscopy Measurements of Lipid-Laden Atherosclerotic Plaques

机译:两点可伸缩电极阵列用于腔内电化学阻抗谱测量脂载性动脉粥样硬化斑块。

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摘要

Four-point electrode systems are commonly used for electric impedance measurements of biomaterials and tissues. We introduce a 2-point system to reduce electrode polarization for heterogeneous measurements of vascular wall. Presence of endoluminal oxidized low density lipoprotein (oxLDL) and lipids alters the electrochemical impedance that can be measured by electrochemical impedance spectroscopy (EIS). We developed a catheter-based 2-point micro-electrode configuration for intravascular deployment in New Zealand White rabbits. An array of 2 flexible round electrodes, 240 µm in diameter and separated by 400 µm was microfabricated and mounted on an inflatable balloon catheter for EIS measurement of the oxLDL-rich lesions developed as a result of high-fat diet-induced hyperlipidemia. Upon balloon inflation, the 2-point electrode array conformed to the arterial wall to allow deep intraplaque penetration via alternating current (AC). The frequency sweep from 10 to 300 kHz generated an increase in capacitance, providing distinct changes in both impedance (Ω) and phase (ϕ) in relation to varying degrees of intraplaque lipid burden in the aorta. Aortic endoluminal EIS measurements were compared with epicardial fat tissue and validated by intravascular ultrasound and immunohistochemistry for plaque lipids and foam cells. Thus, we demonstrate a new approach to quantify endoluminal EIS via a 2-point stretchable electrode strategy.
机译:四点电极系统通常用于生物材料和组织的电阻抗测量。我们引入了两点系统,以减少电极极化,用于血管壁的异质测量。腔内氧化的低密度脂蛋白(oxLDL)和脂质的存在会改变电化学阻抗,可以通过电化学阻抗谱(EIS)进行测量。我们开发了一种基于导管的2点微电极配置,用于新西兰白兔的血管内部署。对直径为240 µm,相距400 µm的2个柔性圆形电极的阵列进行了微细加工,并将其安装在可充气的球囊导管上,用于EIS测量由高脂饮食诱导的高脂血症导致的富含oxLDL的病变。球囊充气后,两点电极阵列顺应动脉壁,以允许通过交流电(AC)深入斑块内穿透。从10 kHz到300 kHz的频率扫描产生了电容的增加,相对于主动脉中斑块内脂质负荷的变化程度,阻抗(Ω)和相位(φ)都有明显变化。将主动脉腔内EIS测量值与心外膜脂肪组织进行比较,并通过血管内超声和免疫组织化学方法对斑块脂质和泡沫细胞进行验证。因此,我们展示了一种通过2点可拉伸电极策略量化腔内EIS的新方法。

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