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Long Field Of View MRA Using Continuous Table Motion

Long Field Of View MRA Using Continuous Table Motion
使用连续工作台运动的长视场 MRA
批准号:
6505997
负责人:
Stephen J Riederer
金额:
$36.13万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-09-01 至 2006-08-31

项目摘要

项目成果

Stephen J Riederer的其他基金

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中文摘要
翻译
描述(由申请人提供):我们建议开发MRI物理采集技术,射频线圈硬件,图像重建和信号处理方法,以允许在患者桌子连续运动期间进行MR数据。与目前固定的多站点方法相比,这种方法提高了时间效率,消除了站点之间的亮度不连续性。此外,实时图像重建的使用允许实时调整表速度,以匹配观察到的对比丸在患者特定基础上的传输。在下肢使用多个线圈的新方法将使采集时间减少两倍。该项目的长期目标是实现高分辨率全身MRI。该项目的总体假设是,高分辨率,动脉30期对比增强MR血管造影可以使用实时,患者特异性采集结合连续移动台进行。需要研究的具体项目有:
英文摘要
DESCRIPTION (provided by applicant): We propose to develop the MRI physics acquisition techniques, the RF coil hardware, and the image reconstruction and signal processing methods to allow MR data to be performed during continuous motion of the patient table. Compared to the current, fixed, multi-station approach this offers improved time efficiency and eliminates brightness discontinuities between stations. Further, the use of real-time image reconstruction permits the table velocity to be adjusted in real time to match the observed transit of the contrast bolus on a patient-specific basis. New approaches for use of multiple coils in the lower extremities will permit two-fold reduced acquisition time. The long term goal of the project is to allow high resolution whole body MRI. The overall hypothesis of this project is that high resolution, arterial phase 30 contrast-enhanced MR angiography can be performed using real-time, patient-specific acquisition in conjunction with a continuously moving table. Specific projects to be studied are: 1. MRI Data Acquisition During Continuous Table Motion. The specific technique for data acquisition and correction during continuous table motion will be developed. The tradeoffs between field of view, spatial and time resolution, and velocity will be studied. Phase encode orders will be optimized, and alteration of slab thickness and position during the scan will be studied. Correction algorithms will be developed for magnetic field inhomogeneities and gradient non-linearities. 2. Dual-Coil Imaging. To exploit the non-contiguous fields of view in imaging the legs, an approach using two distinct transmit and receive coils will be developed. By isolating the response of each coil from the other, it is possible to collect data from each leg separately and simultaneously using the same pulse sequence. This is expected to provide a two-fold reduction in acquisition time for given resolution without the processing and noise amplification factors associated with SENSE. 3. Peripheral Runoff Study 3D MRA. The techniques developed in Projects 1 and 2 will be adapted to imaging the peripheral vasculature. Initially, tracking of a test bolus down the legs using a rapid 2D mode will guide the selection of table velocity during the high resolution 3D scan. Eventually, tracking will be done in real-time using fluoroscopic triggering, real-time determination of the bolus front, and dynamic velocity control.
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