Use of Real Time MRI for Evaluation of Regional Myocardial Function
Use of Real Time MRI for Evaluation of Regional Myocardial Function
批准号:
8891198
负责人:
Francisco J Contijoch
金额:
$0.34万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-07-01 至 2015-07-31
关键词:
AccelerationAcute myocardial infarctionAddressAlgorithmsAnimalsBiochemistryCessation of lifeCollagenDataData SetDevelopmentDobutamineError SourcesEvaluationFamily suidaeFrequenciesGoalsGoldHealthHeart failureHistologyHospitalsImageImaging TechniquesInfarctionInfusion proceduresMagnetic Resonance ImagingMeasurementMeasuresMechanicsMethodsModelingModificationMorphologic artifactsMotionMyocardialNatureNoisePatientsPerformancePhysiologic intraventricular pressurePhysiologicalPilot ProjectsPrevention therapyProcessPropertyResolutionRiskSamplingSignal TransductionStem cellsSturnus vulgarisTechniquesTestingThickTimeValidationVentricularVentricular RemodelingVisitWorkbasedensitydesigndetectorheart motionimage reconstructionimprovedin vivomenmortalitynovelpressurepreventreconstructionregional differencesuccesstemporal measurement
中文摘要
描述(由申请人提供):心力衰竭是美国270,000例死亡和340万年医院就诊的原因。1999年(31.7%)至2008年(29.6%),心力衰竭风险调整后的1年死亡率基本保持不变,尽管急性心肌梗死相关死亡率显著下降(男性每年10.7%)。最近尝试通过新的药理学、干细胞和机械疗法来预防梗死后心力衰竭,在动物研究中显示出希望,但随后的患者研究显示成功非常有限。这可能部分归因于缺乏高空间分辨率的方法来评估梗死和后续治疗对局部收缩功能和心肌健康的影响。目前确定收缩功能的金标准方法包括压力-容积环和通过MRI测量应变。尽管MRI可以以高空间分辨率对LV功能和应变成像,但是它是多次激发、多次心跳采集,其太慢而不能测量心肌工作中的逐搏变化。本项目的目标是开发实时MRI方法来测量梗死发展过程中的局部心肌工作密度和Frank-Starling关系,并在猪模型中使用常规MRI和生物化学验证这些结果。为了实现这一目标,(1)rt-MRI方法将得到改进和优化。压缩感知将进一步改善目前的亚奈奎斯特图像重建算法,我们已经实现。此外,修改k空间采样轨迹将改善伪影不相干性和算法性能。然后,(2)验证心肌功能的区域估计。所提出的方法跟踪心肌壁增厚和区域工作密度和Frank-Starling关系。将使用SPAMM标记的图像和心室运动的传统CINE成像生成可比值。最后,(3)将使用初始的一系列幼年猪研究将观察到的基于rt-MRI的功能变化与组织学试验相关联。这将决定所提出的方法的空间分辨率和时间精度。该提案开发了一种方法,允许在体内和纵向评价梗死后心室重构。这种方法是必要的先进的设计和评价新的治疗方法,以预防梗死引起的心力衰竭。
英文摘要
DESCRIPTION (provided by applicant): Heart failure is the cause of 270,000 deaths in the U.S. and 3.4 million annual hospital visits. The risk-adjusted 1-year mortality of heart failure ha remained essentially unchanged between 1999 (31.7%) and 2008 (29.6%), despite a significant decrease in mortality associated with acute myocardial infarction (10.7% per year for men). Recent attempts to prevent post-infarction heart failure through novel pharmacologic, stem cell, and mechanical therapies have shown promise in animal studies but subsequent studies in patients showed very limited success. This can be partly attributed to the lack of high spatial resolution methods to evaluate the consequences of infarction and subsequent therapy on regional contractile function and myocardial health. Current gold-standard approaches to determine contractile function include pressure-volume loops and strain measurement via MRI. Although MRI can image LV function and strain with high spatial resolution, it is a multi- shot, multiple heartbeat acquisition that is too slow to measure beat-to-beat changes in myocardial work. The goal of this project is to develop real-time MRI methods to measure regional myocardial work density and Frank-Starling relations during infarct development and validate these results with conventional MRI and biochemistry in a porcine model. To achieve this goal, (1) the rt-MRI approach will be improved and optimized. Compressed sensing will further improve the current sub-Nyquist image reconstruction algorithm we have implemented. In addition, modification of the k-space sampling trajectory will improve artifact incoherence and algorithm performance. Then, (2) validation of regional estimates of myocardial function will be performed. The proposed method tracks myocardial wall thickening and regional work density and Frank-Starling relations. SPAMM-tagged images and conventional CINE imaging of ventricular motion will be used to generate comparable values. Finally, (3) an initial serial infart swine study will be used to correlate observed rt-MRI based changes in function to histological testing. This will determine the spatial resolution and temporal accuracy of the proposed method. The proposal develops a method to allow for in-vivo and longitudinal evaluation of post-infarction ventricular remodeling. Such a method is necessary for advanced design and evaluation of novel therapies for prevention of infarct-induced heart failure.
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会议论文
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海外基金