Ho Chi Minh City University of Technology, Faculty of Applied Science, Department of Applied Physics, 268 Ly Thuong Kiet Street, District 10, Ho Chi Minh City 700 000, Vietnam.
National Key Laboratory of Digital Control and System Engineering, 268 Ly Thuong Kiet Street, District 10, Ho Chi Minh City 700 000, Vietnam.
J Healthc Eng. 2020 Sep 14;2020:6219845. doi: 10.1155/2020/6219845. eCollection 2020.
Multispectral imaging has recently shown good performance in determining information about physiology, morphology, and composition of tissue. In the endoscopy field, many researches have shown the ability to apply multispectral or narrow-band images in surveying vascular structure based on the interaction of light wavelength with tissue composition. However, there has been no mention to assess the contrast between other components in the middle ear such as the tympanic membrane, malleus, and the surrounding area. Using CT, OCT, or ODT can clearly describe the tympanic membrane structure; nevertheless, these approaches are expensive, more complex, and time-consuming and are not suitable for most common middle ear diagnoses. Here, we show the potential of using the multispectral imaging technique to enhance the contrast of the tympanic membrane compared to the surrounding tissue. The optical absorption and scattering of biological tissues constituents are not the same at different wavelengths. In this pilot study, multiwavelength images of the tympanic membrane were captured by using the otoscope with LED light source at three distinct spectral regions: 450 nm, 530 nm, and 630 nm. Subsequently, analyses of the intensity images as well as the histogram of these images point out that the 630 nm illumination image features an evident contrast in the intensity of the tympanic membrane and malleus compared to the surrounding area. Analysis of such images could facilitate the boundary determination and segmentation of the tympanic membrane (TM) with high precision.
多光谱成象技术在确定组织生理学、形态学和成分信息方面最近表现出了良好的性能。在内窥镜领域,许多研究表明,基于光波长与组织成分的相互作用,多光谱或窄带图像在测量血管结构方面具有应用能力。然而,目前还没有提到评估中耳其他成分(如鼓膜、锤骨和周围区域)之间的对比度。使用 CT、OCT 或 ODT 可以清楚地描述鼓膜结构;然而,这些方法昂贵、复杂且耗时,不适合大多数常见的中耳诊断。在这里,我们展示了使用多光谱成象技术增强鼓膜与周围组织对比度的潜力。生物组织成分的光吸收和散射在不同波长下是不同的。在这项初步研究中,使用带有 LED 光源的耳镜在三个不同的光谱区域(450nm、530nm 和 630nm)捕获鼓膜的多波长图像。随后,对这些图像的强度图像以及直方图进行分析表明,630nm 照明图像在鼓膜和锤骨的强度方面与周围区域相比具有明显的对比度。对这些图像的分析可以方便地确定和分割具有高精度的鼓膜(TM)边界。