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Novel X-ray Imaging of Carotid Plaque Microstructure

Novel X-ray Imaging of Carotid Plaque Microstructure
颈动脉斑块微结构的新型 X 射线成像
批准号:
0854430
负责人:
Mark Anastasio
金额:
$0.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-05-01 至 2011-05-31

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中文摘要
翻译
迫切需要开发用于在体内成像颈动脉斑块的改进技术。斑块的不稳定性是导致中风的急性血栓栓塞事件的前兆,并且这种不稳定性与斑块的微结构特征有关。然而,没有一种可用的非侵入性成像技术可以提供关于体内斑块微观结构的全面信息。该提案的广泛研究目标是开发和定量评估一种新的X射线成像方法,称为多图像放射摄影(MIR),用于表征颈动脉斑块的微观结构。与简单测量X射线吸收的传统射线照相方法不同,MIR产生两个额外的图像,测量组织的折射和超小角散射(USAXS)特性。将严格确立MIR用于识别易损斑块的多重对比机制的有效性。这将是第一个工作,开发和系统地研究一个非干涉的X射线相衬模式成像颈动脉斑块的微观结构。这种创新的成像方法可以极大地促进高危斑块的识别,这是一个具有极高科学和临床意义的及时问题。所提出的研究的智力价值产生于一个新的X射线成像模式和它们的应用程序的斑块成像的重要问题的图像形成算法的开发和完善。此外,新的X射线对比机制,可以有效地表征斑块的微观结构进行了系统的研究。为了完成这项研究,他们的跨学科研究团队采用了物理学和生物医学工程和成像科学的基本原理。 该项目有几个广泛的影响,将为生物医学科学和社会带来重要利益。开发一种可以揭示斑块微观结构的非侵入性成像方法,这是该提案的广泛科学目标,将对临床和基础科学研究具有巨大价值。可以前瞻性地识别易于斑块破裂的患者。这将允许定制治疗以避免血栓栓塞事件。此外,表征斑块微观结构的能力将有助于理解疾病进展的病理生理机制,这将加速斑块稳定的各种疗法的发展。将这项研究与拟议的教育活动相结合,将有助于吸引学生进入日益重要的生物医学工程和生物医学成像领域,并大大提高他们的教育机会。
英文摘要
0854430AnastasioThere is an urgent need for the development of improved techniques for imaging carotid plaques in vivo. Plaque instability is a precursor of acute thromboembolic events that lead to strokes, and this instability is related to the microstructural characteristics of the plaque. However, none of the available noninvasive imaging techniques can provide comprehensive information regarding plaque microstructure in vivo. The broad research objective of this proposal is to develop and quantitatively evaluate a novel X-ray imaging method, called multiple-image radiography (MIR), for characterizing carotid plaque microstructure. Unlike conventional radiographic methods that simply measure X-ray absorption, MIR produces two additional images that measure the refractive and ultra-small-angle scattering (USAXS) properties of tissue. The effectiveness of the multiple contrast mechanisms employed by MIR for identifying vulnerable plaques will be rigorously established. This will be the first work to develop and systematically investigate a non-interferometric X-ray phase-contrast modality for imaging carotid plaque microstructure. This innovative imaging method could greatly facilitate identification of high-risk plaques, which is a timely problem with extremely high scientific and clinical significance. The intellectual merit of the proposed research arises from the development and refinement of image formation algorithms for a new X-ray imaging modality and their application to the important problem of plaque imaging. Additionally, novel X-ray contrast mechanisms that can effectively characterize plaque microstructure are systematically investigated. To accomplish this research, a combination of physics and fundamental principles of biomedical engineering and imaging science are employed by their interdisciplinary research team. There are several broad impacts of the project that will yield important benefits to both biomedical science and society. The development of a noninvasive imaging method that could reveal plaque microstructure, which is the broad scientific goal of this proposal, would have tremendous value for both clinical and basic science studies. Patients who are prone to plaque rupture could be identified prospectively. This would permit tailoring of treatments to avoid thromboembolic events. Additionally, the ability to characterize plaque microstructure would facilitate an understanding of pathophysiological mechanisms that underlie the progression of the disease, which would accelerate the development of various therapies for plaque stabilization. The integration of this research with the proposed educational activities will help attract students to the increasingly important fields of biomedical engineering and biomedical imaging and enhance greatly their educational opportunities.
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