Adapting smartphones for low-cost optical medical imaging

S. Pratavieira, J. D. Vollet-Filho, F. Carbinatto, K. Blanco, N. Inada, V. Bagnato, C. Kurachi
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引用次数: 5

Abstract

Optical images have been used in several medical situations to improve diagnosis of lesions or to monitor treatments. However, most systems employ expensive scientific (CCD or CMOS) cameras and need computers to display and save the images, usually resulting in a high final cost for the system. Additionally, this sort of apparatus operation usually becomes more complex, requiring more and more specialized technical knowledge from the operator. Currently, the number of people using smartphone-like devices with built-in high quality cameras is increasing, which might allow using such devices as an efficient, lower cost, portable imaging system for medical applications. Thus, we aim to develop methods of adaptation of those devices to optical medical imaging techniques, such as fluorescence. Particularly, smartphones covers were adapted to connect a smartphone-like device to widefield fluorescence imaging systems. These systems were used to detect lesions in different tissues, such as cervix and mouth/throat mucosa, and to monitor ALA-induced protoporphyrin-IX formation for photodynamic treatment of Cervical Intraepithelial Neoplasia. This approach may contribute significantly to low-cost, portable and simple clinical optical imaging collection.
使智能手机适应低成本光学医学成像
光学图像已用于几种医疗情况,以改善病变的诊断或监测治疗。然而,大多数系统使用昂贵的科学(CCD或CMOS)相机,需要计算机来显示和保存图像,通常导致系统的最终成本很高。此外,这类设备的操作通常变得更加复杂,对操作人员的专业技术知识要求越来越高。目前,使用内置高质量摄像头的智能手机类设备的人数正在增加,这可能使此类设备成为医疗应用中高效、低成本的便携式成像系统。因此,我们的目标是开发适应这些设备的光学医学成像技术的方法,如荧光。特别地,智能手机的外壳可以将类似智能手机的设备连接到宽视场荧光成像系统。这些系统用于检测不同组织的病变,如宫颈和口腔/喉咙粘膜,并监测ala诱导的原卟啉- ix形成,用于光动力治疗宫颈上皮内瘤变。该方法可实现低成本、便携、简便的临床光学影像采集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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