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Computer-Aided Diagnosis System for Retinal Diseases in Medical Imaging

机译:医学影像中视网膜疾病的计算机辅助诊断系统

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Bordering on important domains - engineering, medicine and informatics, involving not only knowledge regarding the biosystems structure and functionality, but also knowledge and skills from technical and IT systems, the paper presents the results of some researches on biological human visual structures concerning the diagnosis of visual diseases, namely the macular ones. This highly important transdisciplinary topic combines aspects from biosystems (human visual system), image acquisition and processing (medical imaging), artificial intelligence techniques (neural networks) and information management (databases). Starting from classical or digital retina images, using neural networks image recognition algorithms, the Computer-Aided Diagnosis (CADx) system identifies macular diseases with high precision. Images are stored in databases together with patient personal details and treatments and diagnosis information. The software includes image processing modules, databases and artificial neural networks that can be trained for recognizing images of new diseases or for improving sensitivity and specificity of the system. The Computer-Aided Diagnosis reduces the doctor's level of incertitude regarding some diseases, improves the initial and evolutional identification precision of disease, allows monitoring the health status of the patient during new treatment methods, stores images in digital format and generates diagnoses databases that can be explored in research, medical practice and specialized teaching. Using such a system increases the quality and accessibility of medical services,
机译:毗邻重要领域-工程,医学和信息学,不仅涉及有关生物系统结构和功能的知识,而且涉及来自技术和IT系统的知识和技能,本文介绍了有关人类人类视觉结构的一些研究成果,这些研究涉及对人类系统的诊断。视觉疾病,即黄斑部疾病。这个非常重要的跨学科主题结合了生物系统(人类视觉系统),图像采集和处理(医学成像),人工智能技术(神经网络)和信息管理(数据库)等方面。从经典或数字视网膜图像开始,使用神经网络图像识别算法,计算机辅助诊断(CADx)系统可以高精度地识别黄斑疾病。图像与患者的个人详细信息以及治疗和诊断信息一起存储在数据库中。该软件包括图像处理模块,数据库和人工神经网络,可以对其进行训练以识别新疾病的图像或提高系统的敏感性和特异性。计算机辅助诊断降低了医生对某些疾病的不确定性,提高了疾病的初始和进化识别精度,可以在新的治疗方法中监视患者的健康状况,以数字格式存储图像并生成可以在研究,医学实践和专业教学中进行探索。使用这样的系统可以提高医疗服务的质量和可访问性,

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