Department of Information and Communication Engineering, Daegu Gyeongbuk Institute of Science and Technology, Daegu, Korea.
Department of Otorhinolaryngology-Head and Neck Surgery, Seoul National University Hospital, Seoul, South Korea.
J Biophotonics. 2020 Jun;13(6):e2452. doi: 10.1002/jbio.201960213. Epub 2020 Mar 21.
We develop a novel smartphone-based spectral imaging otoscope for telemedicine and examine its capability for the mobile diagnosis of middle ear diseases. The device was applied to perform spectral imaging and analysis of an ear-mimicking phantom and a normal and abnormal tympanic membrane for evaluation of its potential for the mobile diagnosis. Spectral classified images were obtained via online spectral analysis in a remote server. The phantom experimental results showed that it allowed us to distinguish four different fluids located behind a semitransparent membrane. Also, in the spectral classified images of normal ears (n = 3) and an ear with chronic otitis media (n = 1), the normal and abnormal regions in each ear could be quantitatively distinguished with high contrast. These preliminary results thus suggested that it might have the potentials for providing quantitative information for the mobile diagnosis of various middle ear diseases.
我们开发了一种新颖的基于智能手机的光谱成像耳镜,用于远程医疗,并研究其对中耳疾病进行移动诊断的能力。该设备用于对耳模拟体以及正常和异常鼓膜进行光谱成像和分析,以评估其用于移动诊断的潜力。通过远程服务器中的在线光谱分析获得光谱分类图像。在对模拟体的实验结果中,该设备可以区分位于半透明膜后面的四种不同的液体。另外,在对 3 只正常耳朵和 1 只患有慢性中耳炎耳朵的光谱分类图像中,每个耳朵的正常和异常区域都可以以高对比度进行定量区分。这些初步结果表明,该设备可能具有提供各种中耳疾病移动诊断的定量信息的潜力。