3-D Electrochemical Impedance Spectroscopy Mapping of Arteries to Detect Metabolically Active but Angiographically Invisible Atherosclerotic Lesions

We designed a novel 6-point electrochemical impedance spectroscopy (EIS) sensor with 15 combinations of permutations for the 3-D mapping and detection of metabolically active atherosclerotic lesions. Two rows of 3 stretchable electrodes circumferentially separated by 120° were mounted on an inflatab...

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Veröffentlicht in:Theranostics 2017-01, Vol.7 (9), p.2431-2442
Hauptverfasser: Packard, René R Sevag, Luo, Yuan, Abiri, Parinaz, Jen, Nelson, Aksoy, Olcay, Suh, William M, Tai, Yu-Chong, Hsiai, Tzung K
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container_end_page 2442
container_issue 9
container_start_page 2431
container_title Theranostics
container_volume 7
creator Packard, René R Sevag
Luo, Yuan
Abiri, Parinaz
Jen, Nelson
Aksoy, Olcay
Suh, William M
Tai, Yu-Chong
Hsiai, Tzung K
description We designed a novel 6-point electrochemical impedance spectroscopy (EIS) sensor with 15 combinations of permutations for the 3-D mapping and detection of metabolically active atherosclerotic lesions. Two rows of 3 stretchable electrodes circumferentially separated by 120° were mounted on an inflatable balloon for intravascular deployment and endoluminal interrogation. The configuration and 15 permutations of 2-point EIS electrodes allowed for deep arterial penetration via alternating current (AC) to detect varying degrees of lipid burden with distinct impedance profiles (Ω). By virtue of the distinctive impedimetric signature of metabolically active atherosclerotic lesions, a detailed impedance map was acquired, with the 15 EIS permutations uncovering early stages of disease characterized by fatty streak lipid accumulation in the New Zealand White rabbit model of atherosclerosis. Both the equivalent circuit and statistical analyses corroborated the 3-D EIS permutations to detect small, angiographically invisible, lipid-rich lesions, with translational implications for early atherosclerotic disease detection and prevention of acute coronary syndromes or strokes.
doi_str_mv 10.7150/thno.19184
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subjects Animals
Arteries - diagnostic imaging
Atherosclerosis - diagnostic imaging
Dielectric Spectroscopy - methods
Disease Models, Animal
Imaging, Three-Dimensional - methods
Rabbits
Research Paper
title 3-D Electrochemical Impedance Spectroscopy Mapping of Arteries to Detect Metabolically Active but Angiographically Invisible Atherosclerotic Lesions
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