首页> 外文期刊>Medical Physics >Fast multiresolution data acquisition for magnetic particle imaging using adaptive feature detection
【24h】

Fast multiresolution data acquisition for magnetic particle imaging using adaptive feature detection

机译:使用自适应特征检测的磁粒子成像快速多分辨率数据采集

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose Magnetic particle imaging is a tomographic imaging modality capable of determining the distribution of magnetic nanoparticles with high temporal resolution. The spatial resolution of magnetic particle imaging is influenced by the gradient strength of the selection field used for spatial encoding. By increasing the gradient strength, the spatial resolution is improved, but at the same time the imaging volume decreases. For a high‐resolution image of an extended field‐of‐view, a multipatch approach can be used by shifting the sampling trajectory in space. As the total imaging timescales with the number of patches, the downside of the multipatch method is the degradation of the temporal resolution. Methods The purpose of this work was to develop a scanning procedure incorporating the advantages of imaging at multiple gradient strengths. A low‐resolution overview scan is performed at the beginning followed by a small number of high‐resolution scans at adaptively detected locations extracted from the low‐resolution scan. Results By combining all data during image reconstruction, it is possible to obtain a large field‐of‐view image of anisotropic spatial resolution. It is measured in a fraction of time compared to a fully sampled high‐resolution field of view image. Conclusions Magnetic particle imaging is a flexible imaging method allowing to rapidly scan small volumes. When scaling magnetic particle imaging from small animal to human applications, it will be essential to keep the acquisition time low while still capturing larger volumes at high resolution. With our proposed adaptive multigradient imaging sequence, it is possible to capture a large field of view while keeping both the temporal and the spatial resolution high.
机译:目的磁性粒子成像是能够确定具有高时间分辨率的磁性纳米粒子的分布的断层摄影成像模态。磁性粒子成像的空间分辨率受用于空间编码的选择场的梯度强度的影响。通过增加梯度强度,改善了空间分辨率,但同时成像体积减小。对于扩展视野的高分辨率图像,可以通过在空间中转换采样轨迹来使用多级方法。作为具有斑块数量的总成像时间数,多级方法的缺点是时间分辨率的劣化。方法本作品的目的是开发一种扫描程序,包括以多种梯度强度成像的优点。在开始时执行低分辨率概述扫描,然后在从低分辨率扫描中提取的自适应检测到位置处少量高分辨率扫描。通过将所有数据组合在图像重构期间,可以获得各向异性空间分辨率的大视野图像。与完全采样的高分辨率场景相比,它在一小部分时间测量。结论磁性粒子成像是一种柔性成像方法,允许快速扫描小体积。当将从小动物缩放到人类应用的磁性粒子成像时,将采集时间保持低,同时仍然在高分辨率下捕获更大的卷。利用我们所提出的自适应多元图成像序列,可以在保持时间和空间分辨率高的同时捕获大视场。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

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