近红外光无创肿瘤检测

Yung-Chi Lin, S. Tseng, P. Chung, C. Yang, Ming-Han Wu, S. Nioka, Yong-Kie Wong
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引用次数: 1

摘要

本文介绍了一种利用光子扩散方程分析组织成分,特别是血氧饱和度和血红蛋白浓度的近红外(NIR)无创装置。该设备配备一个多光谱(7波长)LED和多个传感器,这些传感器与LED光源的空间距离不同。对这些传感器获得的测量数据进行最佳拟合,以实现更准确地估计组织成分的浓度,如组织样品的血红蛋白、水和脂质,这些通常用于临床诊断。此外,利用蒙特卡罗模拟分析了不同深度下光子在组织中的传输情况。根据仿真结果,提出了一种降低浅层影响,提高深层肿瘤检测精度的肿瘤检测方法。该装置还通过从颈部肿瘤患者获得的幻影和临床数据进行评估。结果表明,该装置不仅对颈部肿瘤的存在敏感,而且可以应用于其他临床疾病的研究。
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Non-invasive tumor detection using NIR light
This paper presents a non-invasive device with near-infrared (NIR) light for the analysis of tissue components, particularly the blood oxygen saturation and hemoglobin concentration, by using photon diffusion equation. The device equips with a multispectral (7 wavelengths) LED and multiple sensors of different spatial distances to the LED source. An optimal fitting of the measurement data obtained from these sensors is employed to achieve a more accurate estimation of the concentrations of tissue components, such as hemoglobin, water, and lipid of tissue samples, which are often referred in clinic diagnosis. Besides, Monte Carlo simulation is applied to analyze how photons transmit in tissue under different depth levels. According to the simulation results, the proposal introduces a method for tumor detection to reduce the effect of shallow layer and to increase detection accuracy for deep layer tumors. The device was also evaluated by phantoms and clinical data acquired from the patients with neck tumors. Results indicate that our device is not only sensitive to the presence of neck tumors but also can be applied to study other clinical diseases.
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