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同心环探头用于生物阻抗光谱测量:在猪口腔组织上的设计和离体可行性测试。

Concentric Ring Probe for Bioimpedance Spectroscopic Measurements: Design and Ex Vivo Feasibility Testing on Pork Oral Tissues.

机构信息

SIB Labs, Department of Applied Physics, University of Eastern Finland, P.O. Box 1627, FI-70211 Kuopio, Finland.

Institute of Dentistry, University of Eastern Finland, P.O. Box 1627, FI-70211 Kuopio, Finland.

出版信息

Sensors (Basel). 2018 Oct 10;18(10):3378. doi: 10.3390/s18103378.

Abstract

Many oral diseases, such as oral leukoplakia and erythroplakia, which have a high potential for malignant transformations, cause abnormal structural changes in the oral mucosa. These changes are clinically assessed by visual inspection and palpation despite their poor accuracy and subjective nature. We hypothesized that non-invasive bioimpedance spectroscopy (BIS) might be a viable option to improve the diagnostics of potentially malignant lesions. In this study, we aimed to design and optimize the measurement setup and to conduct feasibility testing on pork oral tissues. The contact pressure between a custom-made concentric ring probe and tissue was experimentally optimized. The effects of loading time and inter-electrode spacing on BIS spectra were also clarified. Tissue differentiation testing was performed for ex vivo pork oral tissues including palatinum, buccal mucosa, fat, and muscle tissue samples. We observed that the most reproducible results were obtained by using a loading weight of 200 g and a fixed time period under press, which was necessary to allow meaningful quantitative comparison. All studied tissues showed their own unique spectra, accompanied by significant differences in both impedance magnitude and phase ( ≤ 0.014, Kruskal-Wallis test). BIS shows promise, and further studies are warranted to clarify its potential to detect specific pathological tissue alterations.

摘要

许多口腔疾病,如口腔白斑病和红斑病,具有高度恶性转化的潜力,导致口腔黏膜的异常结构变化。这些变化通过肉眼观察和触诊进行临床评估,尽管其准确性和主观性较差。我们假设非侵入性生物阻抗谱(BIS)可能是改善潜在恶性病变诊断的可行选择。在这项研究中,我们旨在设计和优化测量设置,并对猪口腔组织进行可行性测试。实验优化了定制同心环探头与组织之间的接触压力。还阐明了加载时间和电极间距对 BIS 谱的影响。对包括硬腭、颊黏膜、脂肪和肌肉组织样本在内的离体猪口腔组织进行了组织分化测试。我们观察到,通过使用 200 克的加载重量和固定的加压时间,可以获得最可重复的结果,这是进行有意义的定量比较所必需的。所有研究的组织都显示出其独特的光谱,同时在阻抗幅度和相位方面存在显著差异(≤0.014,Kruskal-Wallis 检验)。BIS 显示出前景,需要进一步研究来阐明其检测特定病理组织改变的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12b7/6210762/530eb4d49520/sensors-18-03378-g001.jpg

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