...
首页> 外文期刊>NeuroImage >7T-fMRI: Faster temporal resolution yields optimal BOLD sensitivity for functional network imaging specifically at high spatial resolution
【24h】

7T-fMRI: Faster temporal resolution yields optimal BOLD sensitivity for functional network imaging specifically at high spatial resolution

机译:7T-FMRI:更快的时间分辨率对于专为高空间分辨率的功能网络成像而产生最佳粗体敏感性

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Abstract Recent developments in accelerated imaging methods allow faster acquisition of high spatial resolution images. This could improve the applications of functional magnetic resonance imaging at 7 Tesla (7T-fMRI), such as neurosurgical planning and Brain Computer Interfaces (BCIs). However, increasing the spatial and temporal resolution will both lead to signal-to-noise ratio (SNR) losses due to decreased net magnetization per voxel and T 1 -relaxation effect, respectively. This could potentially offset the SNR efficiency gains made with increasing temporal resolution. We investigated the effects of varying spatial and temporal resolution on fMRI sensitivity measures and their implications on fMRI-based BCI simulations. We compared temporal signal-to-noise ratio (tSNR), observed percent signal change (%? S ), volumes of significant activation, Z -scores and decoding performance of linear classifiers commonly used in BCIs across a range of spatial and temporal resolution images acquired during an ankle-tapping task. Our results revealed an average increase of 22% in %? S ( p= 0.006) and 9% in decoding performance ( p =0.015) with temporal resolution only at the highest spatial resolution of 1.5×1.5×1.5mm 3 , despite a 29% decrease in tSNR ( p 0.001) and plateaued Z -scores. Further, the volume of significant activation was indifferent ( p >0.05) across spatial resolution specifically at the highest temporal resolution of 500ms. These results demonstrate that the overall BOLD sensitivity can be increased significantly with temporal resolution, granted an adequately high spatial resolution with minimal physiological noise level. This shows the feasibility of diffuse motor-network imaging at high spatial and temporal resolution with robust BOLD sensitivity with 7T-fMRI. Importantly, we show that this sensitivity improvement could be extended to an fMRI application such as BCIs. Graphical abstract Display Omitted Highlights ? Observed BOLD contrast increases with shorter TR only at high spatial resolution. ? Decoding performance increases with shorter TR only at high spatial resolution. ? These occur despite the decrease in tSNR. ? Faster TRs reduce physiological noise, undersampling effect and increase SNR efficiency. ? Higher temporal resolution improves BOLD sensitivity, only at high spatial resolution.
机译:摘要加速成像方法的最新进程允许更快地采集高空间分辨率图像。这可以改善7特斯拉(7T-FMRI)的功能磁共振成像的应用,例如神经外科规划和脑电脑界面(BCI)。然而,由于每种体素和T 1-- -Relaxation效应的净磁化降低,增加空间和时间分辨率将导致信噪比(SNR)损耗。这可能妨碍利用越来越多的时间分辨率所产生的SNR效率提升。我们调查了不同空间和时间分辨率对FMRI敏感度措施的影响及其对基于FMRI的BCI模拟的影响。我们比较了时间信噪比(TSNR),观察到百分比信号变化(%Δs),显着激活的卷,z-ocores和在BCIS中通常使用的线性分类器的解码性能,在一系列空间和时间分辨率图像中在脚踝攻丝任务期间获得。我们的结果显示平均增长22%以%? S(P = 0.006)和9%的解码性能(P = 0.015),只有在1.5×1.5×1.5mm 3的最高空间分辨率下的时间分辨率,尽管TSNR降低了29%(P 0.001)并有奏纹的Z - 得分。此外,在最高时间分辨率为500ms的最高时间分辨率,显着活化的体积在空间分辨率上无难以置词(p> 0.05)。这些结果表明,全面大胆的灵敏度可以随时间分辨率显着提高,具有充分高的空间分辨率,生理噪音水平最小。这表明,具有稳健的大胆灵敏度,具有7T-FMRI的高空间和时间分辨率,漫射电动机网络成像的可行性。重要的是,我们表明这种敏感性改进可以扩展到FMRI应用,例如BCI。图形抽象显示省略了亮点?观察到的粗体对比度仅在高空间分辨率下较短。还是解码性能随着高空间分辨率的较短TR而增加。还是尽管TSNR减少,但这些可能发生。还是更快的TRS降低生理噪声,欠采样效果并提高SNR效率。还是较高的时间分辨率提高了大胆的灵敏度,只能在高空间分辨率下。

著录项

  • 来源
    《NeuroImage》 |2018年第2018期|共16页
  • 作者单位

    Melbourne Brain Centre Imaging Unit Department of Anatomy and Neuroscience The University of;

    Vascular Bionics Laboratory Melbourne Brain Centre Department of Medicine The University of;

    Melbourne Brain Centre Imaging Unit Department of Anatomy and Neuroscience The University of;

    Melbourne Brain Centre Imaging Unit Department of Anatomy and Neuroscience The University of;

    Department of Electrical and Computer Systems Engineering Monash University;

    Melbourne Brain Centre Imaging Unit Department of Anatomy and Neuroscience The University of;

    Melbourne Brain Centre Imaging Unit Department of Anatomy and Neuroscience The University of;

    Vascular Bionics Laboratory Melbourne Brain Centre Department of Medicine The University of;

    Melbourne Brain Centre Imaging Unit Department of Anatomy and Neuroscience The University of;

    Vascular Bionics Laboratory Melbourne Brain Centre Department of Medicine The University of;

    Departments of Medicine and Neurology Melbourne Brain Centre at The Royal Melbourne Hospital The;

    Vascular Bionics Laboratory Melbourne Brain Centre Department of Medicine The University of;

    Melbourne Brain Centre Imaging Unit Department of Anatomy and Neuroscience The University of;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 诊断学;
  • 关键词

    7T; fMRI; sensitivity; temporal resolution; Classification; BCI; Physiological noise;

    机译:7T;FMRI;敏感性;时间分辨率;分类;BCI;生理噪音;

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