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血氧饱和度的热成像估计方法。

Thermal imaging method for estimating oxygen saturation.

机构信息

Tel Aviv University, Biomedical Engineering Department, P.O. Box 39040, Tel Aviv 69978, Israel.

出版信息

J Biomed Opt. 2009 Sep-Oct;14(5):054048. doi: 10.1117/1.3251036.

Abstract

The objective of this study is to develop a minimal invasive thermal imaging method to determine the oxygenation level of an internal tissue. In this method, the tissue is illuminated using an optical fiber by several wavelengths in the visible and near-IR range. Each wavelength is absorbed by the tissue and thus causes increase in its temperature. The temperature increase is observed by a coherent waveguide bundle in the mid-IR range. The thermal imaging of the tissue is done using a thermal camera through the coherent bundle. Analyzing the temperature rise allows estimating the tissue composition in general, and specifically the oxygenation level. Such a system enables imaging of the temperature within body cavities through a commercial endoscope. As an intermediate stage, the method is applied and tested on exposed skin tissue. A curve-fitting algorithm is used to find the most suitable saturation value affecting the temperature function. The algorithm is tested on a theoretical tissue model with various parameters, implemented for this study, and on agar phantom models. The calculated saturation values are in agreement with the real saturation values.

摘要

本研究的目的是开发一种微创热成像方法,以确定内部组织的氧合水平。在该方法中,使用光纤以可见和近红外范围内的多个波长对组织进行照明。每个波长被组织吸收,从而导致其温度升高。中红外范围内的相干波导束观察到温度升高。通过相干束使用热像仪对组织进行热成像。分析温度升高可以估计组织成分,特别是氧合水平。这样的系统可以通过商用内窥镜对体腔内部的温度进行成像。作为中间阶段,该方法应用于暴露的皮肤组织进行测试。使用曲线拟合算法来找到最适合影响温度函数的饱和度值。该算法在各种参数的理论组织模型上进行了测试,为本研究实现,并在琼脂模型上进行了测试。计算出的饱和度值与真实饱和度值一致。

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