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Medical Imaging Techniques for Characterizing Cerebral Angioarchitecture

机译:医学成像技术表征脑血管结构

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摘要

There is a fundamental gap in how blood flow quantification can be accomplished in interventional digital subtraction angiography (DSA) to provide physicians with measurements to interpret the patient's vascular health. Continued existence of this gap represents an important problem because, until it is filled, physicians can only rely on qualitative information of intensity changes to understand blood flow variations caused by the intervention treatment.;The long-term goal is to transform DSA, the gold standard for qualitative blood flow assessment, into a fully automated quantitative measurement tool that can potentially aid clinical decision making in endovascular interventions. Current approaches focus on using signals from a single vessel to determine blood flow and have not been successful due to the slow frame rate.;It is our central hypothesis that a radically different flow quantification approach, using all the information from the entire image set concurrently to overcome the slow DSA frame rate, will provide reliable blood flow measurement in all vessels. The immediate objective is to create the proposed whole-tree DSA blood flow measurement method and to test its feasibility and accuracy. Success here would justify a future clinical trial of DSA-based flow measurement.;The results of our study will be used to determine whether our global approach can provide reliable flow quantification in a clinical situation. The approach is innovative, because it uses global information to reliably measurement the blood flow rate in DSA. The proposed research is significant, because it is expected to rapidly produce reliable flow measurements in all visible vessels to facilitate physician's understanding of patient's vascular status. The novel technique will gap the bridge between the large arteries and micro vessels, providing flow measurements in all visible vessels that can be used to study cerebral hemodynamics. Ultimately, such technique has the potential to alternate clinical decision making for better treatment prognosis to reduce healthcare cost in treating cerebral vascular diseases.
机译:在介入式数字减影血管造影(DSA)中如何完成血流量化以为医师提供解释患者血管健康的测量方法方面存在根本的差距。这种差距的持续存在是一个重要的问题,因为在填补之前,医生只能依靠强度变化的定性信息来了解由介入治疗引起的血流变化。长期目标是转变DSA,即金定性血流评估的标准,并纳入可以在血管内干预中做出临床决策的全自动定量测量工具。当前的方法侧重于使用来自单个血管的信号来确定血流,但由于帧速慢而未能成功。;我们的中心假设是,一种根本不同的流量量化方法,同时使用来自整个图像集的所有信息为了克服缓慢的DSA帧速率,将在所有血管中提供可靠的血流测量。近期目标是创建提出的全树DSA血流测量方法,并测试其可行性和准确性。这里的成功将证明未来基于DSA的流量测量的临床试验是正确的。我们的研究结果将用于确定我们的整体方法能否在临床情况下提供可靠的流量定量。该方法具有创新性,因为它使用全局信息来可靠地测量DSA中的血液流速。这项拟议的研究意义重大,因为它有望在所有可见血管中快速产生可靠的流量测量结果,以帮助医师了解患者的血管状况。这项新技术将在大动脉和微血管之间架起桥梁,在所有可见血管中提供流量测量结果,可用于研究脑血流动力学。最终,这种技术具有改变临床决策以更好地治疗预后,降低治疗脑血管疾病的医疗费用的潜力。

著录项

  • 作者

    Hsu, Chih-Yang.;

  • 作者单位

    University of Illinois at Chicago.;

  • 授予单位 University of Illinois at Chicago.;
  • 学科 Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遥感技术;
  • 关键词

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