New reconstruction tools in acute stroke: time-, contrast material-, and dose-saving together with better diagnostic value
New reconstruction tools in acute stroke: time-, contrast material-, and dose-saving together with better diagnostic value
批准号:
316480087
负责人:
Professor Dr. Adrian Ringelstein
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2016
资助国家:
德国
项目状态:
已结题
起止时间:
2015-12-31 至 2019-12-31
中文摘要
这项研究旨在开发一种重建算法,该算法能够从单个双能量CTA计算关于急性卒中的必要和附加信息。这可能会节省时间、辐射剂量和造影剂,并可能对中风患者的急性治疗产生很大影响。我们计划三个步骤(里程碑)来实现这一目标:首先,我们不需要建立SAVE诊断协议,因为我们已经有了它。但我们需要在这项研究的第一阶段获得预期的数据。我们将前瞻性地收集将在3个月的临床常规中获得的数据,包括标准的双能量CTA。根据德国对中风患者的指导方针,将对大脑进行额外的本地CT扫描。扫描和周围的程序与我们的标准治疗相同。这项研究对S的治疗或治疗决策没有任何影响。第二,我们将根据定期获得的CT数据重建虚拟图像:我们使用这些数据重建能够排除颅内出血的虚拟原生CT扫描。此外,我们将尝试开发一种算法,能够可视化对比剂在脑实质缺血和非缺血区域的分布。这些数据集可能能够在急性期可视化急性卒中,并将是急性卒中成像的巨大进步。这将额外节省造影剂和辐射剂量,在这种紧急情况下,还可以缩短从诊断到治疗之间的时间。建立一种新的诊断程序:最终目标是为急性中风患者建立一种新的诊断程序。绝对必要的是,这项研究永远不会影响诊断和治疗的指导原则。为了评估诊断的准确性,我们需要至少100个数据集,这些数据集将在两年内预计获得。这种前瞻性的数据采集不会是随机的,因为在伦理上没有可接受的诊断或治疗替代方案。
英文摘要
This study aimes to develop an reconstruction algorithm that is able to calculate the necessary and additional information about an acute stroke from a single dual energy CTA. This may lead to a time-, radiation dose- and contrast material saving and could have a high impact on the acute treatment of stroke patients. We plan three steps (milestones) to reach this aim:First we do not need to establish a save diagnostic protocoll because we have it already. But we need to acquire the data propectively in this first phase of the study. We will prospectively collect the data that will be acquired during clinical routine for 3 months including a standard Dual-Energy CTA. According to the german guidelines for stroke patients an additional native CT scan of the brain will be done. The scan and the procedures around are equal to our standard treatment. The study does not have any impact on pateint´s treatment or therapeutic decisions.Second we will reconstruct virtual images out of the regularly acquired CT data: We use the data to reconstruct virtual native CT scans that will be able to exclude an intracranial bleeding. Additionally we will try to develop an algorithm that is able to visualize the distribution of the contrat material in the ischemic and non-ischemic areas of the brain parenchyma. These datasets might be able to visualize the acute stroke during the acute phase and would be an enormous step forward in acute stroke imaging. this would additionally save contrast material and radiation dose and -in this emergency setting- also shorten the time from between diagnostics and therapy.Establishing a new diagnostic procedure:The last aim is to establish a new diagnostic procedure for acute stroke patients. It is absolutely necessary that this study will never have an impact on the guideline accordance of diagnostic and treatment. For evaluating the diagnostic accurancy we need at least 100 datasets that will be acquired over 2 years propectively. This prosepctive data acquisition will not be randomised because there is no ethically acceptable diagnostic or therapeutical alternative.
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