首页> 外文OA文献 >Arterial spin labelling magnetic resonance imaging of the brain: techniques and development
【2h】

Arterial spin labelling magnetic resonance imaging of the brain: techniques and development

机译:大脑的动脉自旋标记磁共振成像:技术与发展

摘要

This thesis centres on the development of arterial spin labelling (ASL) MRI, a non-invasive technique to image cerebral perfusion. In the first chapter I explain the principles of cerebral blood flow (CBF) quantification using ASL beginning with the original implementation through to the most recent advances. I proceed to describe the established theory behind the key additional MRI contrast mechanisms and techniques that underpin the novel experiments described in this thesis (T2 and T1 relaxation, diffusion imaging and half-Fourier acquisition and reconstruction). ududIn Chapter 2 I describe work undertaken to sample the transverse relaxation of the ASL perfusion-weighted and control images acquired with and without vascular crusher gradients at a range of post-labelling delay times and tagging durations, to estimate the intra-vascular, intra-cellular and extra-cellular distribution of labelled water in the rat cortex. The results provide evidence for rapid exchange of labelled water into the intra-cellular space relative to the transit-time through the vascular bed, and provide a more solid foundation for CBF quantification using ASL techniques. ududIn Chapter 3 the performance of image de-noising techniques for reducing errors in ASL CBF and arterial transit time estimates is investigated. I show that noise reduction methods can suppress random and systematic errors, improving both the precision and accuracy of CBF measurements and the precision of transit time maps. ududIn Chapter 4 I present the first in-vivo demonstration of Hadamard-encoded continuous ASL (H-CASL); an efficient method of imaging small volumes of labelled blood water in the brain at multiple post labelling delay times. I present evidence that H-CASL is viable for in-vivo application and can improve the precision of δa estimation in 2/3 of the imaging time required for standard multi post labelling delay continuous ASL.
机译:本论文的重点是动脉自旋标记(ASL)MRI的发展,这是一种对脑灌注进行成像的非侵入性技术。在第一章中,我将解释从ASL最初的实施到最新进展的使用ASL进行脑血流量(CBF)量化的原理。我将继续介绍在本论文中描述的新颖实验(T2和T1弛豫,扩散成像以及半傅立叶采集和重建)基础的关键附加MRI对比机制和技术背后的既定理论。 ud ud在第二章中,我描述了在标记后的延迟时间和标记持续时间的范围内,对在有和没有血管破碎器梯度的情况下采集的ASL灌注加权图像和对照图像的横向弛豫进行采样的方法,以估计血管内,大鼠皮层中标记水的细胞内和细胞外分布。结果提供了相对于通过血管床的穿越时间将标记的水快速交换到细胞内空间的证据,并为使用ASL技术进行CBF定量化提供了更坚实的基础。 ud ud在第3章中,研究了用于减少ASL CBF和动脉渡越时间估计误差的图像降噪技术的性能。我证明了降噪方法可以抑制随机误差和系统误差,从而提高了CBF测量的准确性和准确性以及运输时间图的准确性。 ud ud在第4章中,我将首次演示Hadamard编码的连续ASL(H-CASL);一种在多个标记后延迟时间对大脑中少量标记血水进行成像的有效方法。我提供的证据表明,H-CASL在体内应用中是可行的,并且可以在标准多后标记延迟连续ASL所需成像时间的2/3中提高δa估计的精度。

著录项

  • 作者

    Wells J.A.;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号