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Novel methods in biomedical image acquisition and analysis

机译:生物医学图像采集和分析的新方法

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摘要

Accurate biomedical image acquisition and subsequent analysis are crucial for correctly diagnosing a pathology. This thesis specifically focuses on two different types of biomed- ical imaging techniques - neuro and ophthalmic imaging. The main contribution of this dissertation to neuroimaging is the proposition of a new cortical biomarker, derived from structural Magnetic Resonance Images, and a new analysis methodology that could lead to earlier and better accuracy in distinguishing between healthy subjects and ones suffering from neurodegenerative diseases, such as Alzheimer’s. In the slowly-progressing Alzheimer’s disease, changes in the brain can begin to take place as early as ten years before any clinical symptoms will begin to appear. Early diagnosis of this debilitating diseases can significantly improve the chances of a speedy and successful recovery. In ophthalmic imaging, Optical Coherence Tomography (OCT) is rapidly emerging as the preferred modality in imaging and subsequently diagnosing diseases such as glaucoma and age-related macular degeneration. While OCT is starting to gain popularity among ophthalmologists, it still suffers from a number of draw-backs, including long acquisition times and consequential motion artifacts. The main contribution of this thesis to ophthalmic imaging is to propose several new OCT scan patterns that are compatible with commercial OCT hardware. We show that these scan patterns can significantly reduce the overall scan time, limit motion artifacts, and reduce speckle noise without degrading the quality of the resulting images in terms of clinically relevant morphometric measurements. The acquisition methods presented in this thesis could lead to improved diagnostic power of OCT.
机译:准确的生物医学图像采集和后续分析对于正确诊断病理至关重要。本文专门研究了两种不同类型的生物医学成像技术-神经成像和眼科成像。本论文对神经影像学的主要贡献是提出了一种新的皮质生物标志物,该标志物来自于结构磁共振图像,以及一种新的分析方法,可以更早,更好地区分健康受试者和神经退行性疾病患者,例如作为老年痴呆症。在缓慢发展的阿尔茨海默氏病中,大脑的变化最早可以在任何临床症状开始出现的十年前就开始发生。对这种使人衰弱的疾病的早期诊断可以显着提高迅速而成功地康复的机会。在眼科成像中,光学相干断层扫描(OCT)迅速成为成像和随后诊断疾病的首选方式,例如青光眼和与年龄相关的黄斑变性。尽管OCT在眼科医生中开始流行,但是它仍然存在许多缺点,包括获取时间长和随之而来的运动伪影。本文对眼科成像的主要贡献是提出了几种与商业OCT硬件兼容的新OCT扫描模式。我们表明,这些扫描模式可以在不降低临床相关形态测量结果质量的情况下,显着减少总体扫描时间,限制运动伪像并减少斑点噪声。本文提出的采集方法可以提高OCT的诊断能力。

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    Lebed Evgeniy;

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