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DEFINING THE ISCHEMIC PENUMBRA WITH MAGNETIC RESONANCE OXYGEN METABOLISM

DEFINING THE ISCHEMIC PENUMBRA WITH MAGNETIC RESONANCE OXYGEN METABOLISM
用磁共振氧代谢定义缺血半暗带
批准号:
8663967
负责人:
Andria Lee Ford
金额:
$17.71万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-06-01 至 2016-05-31

项目摘要

项目成果

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中文摘要
翻译
描述(由申请人提供):候选人是华盛顿大学医学博士训练的中风神经学家和杜克大学本科训练的生物医学工程师,长期渴望发展和发展一个独立的研究项目,研究新的成像方式来描绘急性缺血性中风患者的活脑组织。凭借这项为期5年的职业发展奖,她计划收集必要的工具和技能,成为急性缺血性卒中患者病理生理学专家,以找到可以定义缺血性半暗带的成像特征。她的研究和职业规划概述了她将如何完成她的短期目标,以完成拟议的目标,学习特定的神经成像技能。此外,她还定义了在向独立过渡的过程中她将采取的步骤。职业发展计划将由Jin-Moo Lee医学博士,临床科学家,中风专家和脑血管部主任共同指导,他在中风研究方面拥有丰富的经验,以及林伟利博士,一位经验丰富的MR物理学家,他的实验室专注于MRI的创新临床应用-这一独特的合并使候选人成为急性中风成像领域成功的独立研究者。这位候选人已经在华盛顿大学召集了几位额外的顾问和顾问,他们在脑血流和代谢、神经放射学和生物统计学方面具有专业知识。此外,神经病学主席David Holtzman博士对她的项目和职业目标表示全力支持。总之,她有一个由导师和合作者组成的团队,他们对她走向独立的过渡非常投入。鉴于她在生物医学工程方面的背景以及她对一流学术机构的以患者为导向的中风研究的热情,候选人选择了领导一个理想的项目。华盛顿大学医学院每年都成功培养出许多K奖获得者。在过去的十年里,神经内科培养了20多名成功的K奖获得者。华盛顿大学以其面向患者的生物脑成像研究而闻名于世,将为她感兴趣的研究领域提供一个出色的环境,并提供大量资源支持成像基础设施。华盛顿大学获得了美国国立卫生研究院资助的急性中风转化研究专业项目(SPOTRIAS),该项目将为候选人的研究提供必要的资源支持。这位候选人正处于她早期职业生涯的关键时期,最近刚从中风研究员过渡到初级教员。她在未来5年的成功将取决于保护时间,以获得一对一指导、正式课程、非正式研讨会、会议旅行的好处,以及重要的是,在该资助提案中执行研究的时间。目前,一小部分脑卒中患者在tPA短窗口关闭后因住院时间延迟而接受急性干预(目前tPA在脑卒中发作后4.5小时给予)。因此,中风仍然是美国和全世界致残的主要原因。虽然基于人群的研究表明静脉注射tPA的治疗时间窗是固定的,但实际的治疗时间窗可能因个体而异,这取决于各种生理变量,如侧支血流或预先存在的合共病。一种能够描绘理论上的缺血半暗带的成像方式对于个体化治疗窗口是非常宝贵的。损伤的两个阈值与此目的直接相关:一个定义不可逆损伤组织,另一个描述可逆损伤组织(后者是治疗的目标)。虽然很多人都关注MR弥散(DWI)和灌注(PWI)加权成像在这方面的应用,但一个局限性是组织损伤的阈值取决于中风发作和成像之间的时间间隔。来自正电子发射断层扫描(PET)研究的几条证据表明,脑氧利用代谢率(cmor2)的测量可以以时不变的方式识别有梗死风险的活组织。虽然PET目前是可用的,但几个操作障碍限制了它在急性中风中的应用,例如需要现场回旋加速器。我们最近开发了一种磁共振成像方法,能够测量氧代谢指数(MR- omi),这是一个与CMRO2密切相关的参数。在这个应用中,我们建议利用MR-OMI来确定在急性缺血性脑卒中患者群体中识别可逆性和不可逆性脑组织损伤的两个阈值。我们将确定这些阈值的预测值,并与其他经过充分研究的磁共振衍生指数进行比较。此外,我们将检查可能改变这些损伤阈值的变量,包括成像时间、组织类型(灰质与白质)和基线临床特征。
英文摘要
DESCRIPTION (provided by applicant): The candidate is an MD-trained stroke neurologist from Washington University and an undergraduate- trained biomedical engineer from Duke University with long-term aspirations to develop and grow an independent research program investigating novel imaging modalities to delineate viable brain tissue in acute ischemic stroke patients. With this 5 year career development award, she plans to gather the tools and skill- set necessary to become an expert in the pathophysiology of acute ischemic stroke patients to find an imaging signature that can define the ischemic penumbra. Her research and career plans outline how she will accomplish her short term goals to complete the proposed aims, learning specific neuro-imaging skill-sets. In addition, she defines steps that she will take in the transition to independence. The career development plan will be co-mentored by Jin-Moo Lee, MD, PhD, a clinician-scientist, stroke expert, and Director of Cerebrovascular Division who has extensive experience in stroke research and Weili Lin, PhD, a seasoned MR physicist whose lab focuses on innovative clinical applications of MRI - a unique merger allowing the candidate to become a successful independent investigator in the field of acute stroke imaging. The candidate has assembled several additional consultants and advisors at Washington University with expertise in cerebral blood flow and metabolism, neuroradiology, and biostatistics. In addition, Dr. David Holtzman, the Chairman of Neurology, expresses his full support for her project and career goals. All together, she has a team of mentors and collaborators who are deeply committed and invested in her transition towards independence. The candidate has chosen to lead an ideal project given her background in biomedical engineering and her passion for patient-oriented stroke research at a premier academic institution. Washington University School of Medicine successfully trains numerous K awardees every year. Over the past decade, the Department of Neurology fostered over 20 successful K awardees. World-renowned for its patient-oriented biological brain imaging research, Washington University will provide an outstanding environment for her research field of interest with tremendous resources supporting the imaging infrastructure. Washington University was awarded the NIH-funded SPOTRIAS (Specialized Program of Translational Research in Acute Stroke) grant which will provide resources necessary to support several aspects of the candidate's proposed studies. The candidate is at a crucial period in her early career, recently transitioning from stroke fellow to junior faculty. Her success over the next 5 years will depend on protected time to gain the benefits of one-on-one mentoring, formal coursework, informal seminars, travel to conferences, and importantly, time to perform the studies within this grant proposal. Currently, a small percentage of stroke patients receive acute intervention due to delayed hospital presentation after the short tPA window has closed (currently tPA is administered up to 4.5 hours after stroke onset). Thus, stroke continues to be the leading cause of disability in the United States and worldwide. While population-based studies indicate that the therapeutic time-window for IV tPA is fixed, it is likely that the actual therapeutic time-window varies among individuals, depending on a variety of physiological variables, such as collateral flow or pre-existing co-morbidities. An imaging modality capable of delineating the theoretical ischemic penumbra would be invaluable for individualizing therapeutic windows. Two thresholds of injury are directly relevant for this purpose: one which defines irreversibly injured tissue, and another which delineates reversibly injured tissue (the latter is the target for therapy). While much attention has focused on the utility of MR diffusion (DWI) and perfusion (PWI) weighted imaging for this purpose, one limitation has been that thresholds for tissue injury are dependent on the time interval between stroke onset and imaging. Several lines of evidence derived from positron emission tomography (PET) studies suggest that measures of cerebral metabolic rate of oxygen utilization (CMRO2) may identify viable tissue at risk for infarction in a time-invariant manner. Although PET is currently available, several operational hurdles have limited its utility in acute stroke, such as the need for an onsite cyclotron. We have recently developed an MR imaging approach capable of measuring oxygen metabolic index (MR-OMI), a parameter closely related to CMRO2. In this application, we propose to utilize MR-OMI to determine the two threshold values that identify reversibly and irreversibly injured brain tissue in a population of acute ischemic stroke patients. We will determine the predictive values of these thresholds, compared to other well-studied MR-derived indices. Additionally, we will examine variables that may modify these thresholds of injury, including time-to-imaging, tissue type (gray vs. white matter), and baseline clinical characteristics.
期刊论文(0)
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科研奖励(0)
会议论文
MR-Derived Cerebral Blood Flow and Oxygen Metabolism to Stratify Stroke Risk in Pediatric Sickle Cell Disease
  • 批准号:
    9122484
  • 项目类别:
  • 资助金额:
    $53.49万
  • 财政年份:
    2015
  • 负责人:
    Andria Lee Ford
  • 依托单位:
DEFINING THE ISCHEMIC PENUMBRA WITH MAGNETIC RESONANCE OXYGEN METABOLISM
  • 批准号:
    8470725
  • 项目类别:
  • 资助金额:
    $17.71万
  • 财政年份:
    2011
  • 负责人:
    Andria Lee Ford
  • 依托单位:
DEFINING THE ISCHEMIC PENUMBRA WITH MAGNETIC RESONANCE OXYGEN METABOLISM
  • 批准号:
    8266545
  • 项目类别:
  • 资助金额:
    $17.71万
  • 财政年份:
    2011
  • 负责人:
    Andria Lee Ford
  • 依托单位:
DEFINING THE ISCHEMIC PENUMBRA WITH MAGNETIC RESONANCE OXYGEN METABOLISM
  • 批准号:
    8190034
  • 项目类别:
  • 资助金额:
    $16.41万
  • 财政年份:
    2011
  • 负责人:
    Andria Lee Ford
  • 依托单位:
海外基金