...
首页> 外文期刊>Data in Brief >Parameterized hemodynamic response function data of healthy individuals obtained from resting-state functional MRI in a 7T MRI scanner
【24h】

Parameterized hemodynamic response function data of healthy individuals obtained from resting-state functional MRI in a 7T MRI scanner

机译:从7T MRI扫描仪的静息状态功能MRI获得的健康个体的参数化血流动力学反应功能数据

获取原文

摘要

Functional magnetic resonance imaging (fMRI), being an indirect measure of brain activity, is mathematically defined as a convolution of the unmeasured latent neural signal and the hemodynamic response function (HRF). The HRF is known to vary across the brain and across individuals, and it is modulated by neural as well as non-neural factors. Three parameters characterize the shape of the HRF, which is obtained by performing deconvolution on resting-state fMRI data: response height, time-to-peak and full-width at half-max. The data provided here, obtained from 47 healthy adults, contains these three HRF parameters at every voxel in the brain, as well as HRF parameters from the default-mode network (DMN). In addition, we have provided functional connectivity (FC) data from the same DMN regions, obtained for two cases: data with deconvolution (HRF variability minimized) and data with no deconvolution (HRF variability corrupted). This would enable researchers to compare regional changes in HRF with corresponding FC differences, to assess the impact of HRF variability on FC. Importantly, the data was obtained in a 7T MRI scanner. While most fMRI studies are conducted at lower field strengths, like 3T, ours is the first study to report HRF data obtained at 7T. FMRI data at ultra-high fields contains larger contributions from small vessels, consequently HRF variability is lower for small vessels at higher field strengths. This implies that findings made from this data would be more conservative than from data acquired at lower fields, such as 3T. Results obtained with this data and further interpretations are available in our recent research study (Rangaprakash et al., in press) [1]. This is a valuable dataset for studying HRF variability in conjunction with FC, and for developing the HRF profile in healthy individuals, which would have direct implications for fMRI data analysis, especially resting-state connectivity modeling. This is the first public HRF data at 7T.
机译:功能性磁共振成像(fMRI)是大脑活动的一种间接度量,在数学上定义为未测量的潜伏神经信号和血液动力学响应函数(HRF)的卷积。众所周知,HRF在大脑和个体之间会发生变化,并且会受到神经以及非神经因素的调节。通过对静止状态fMRI数据进行反卷积获得的三个参数表征了HRF的形状:响应高度,峰峰值时间和半峰全宽。此处提供的数据来自47位健康成年人,其中包含大脑每个体素上的这三个HRF参数以及默认模式网络(DMN)的HRF参数。此外,我们提供了来自同一DMN区域的功能连接(FC)数据,该数据是针对以下两种情况获得的:解卷积的数据(最小化HRF可变性)和不解卷积的数据(HRF可变性已损坏)。这将使研究人员能够比较HRF的区域变化和相应的FC差异,以评估HRF变异性对FC的影响。重要的是,数据是在7T MRI扫描仪中获得的。尽管大多数功能磁共振成像研究都是在较低的场强下进行的,例如3T,但我们的研究是第一个报告在7T获得的HRF数据的研究。超高场的FMRI数据包含来自小血管的较大贡献,因此,对于具有较高场强的小血管,HRF变异性较低。这意味着从这些数据中获得的发现将比从较低领域(例如3T)获得的数据更为保守。利用这些数据获得的结果和进一步的解释可在我们最近的研究中获得(Rangaprakash等人,印刷中)[1]。这是用于与FC一起研究HRF变异性以及在健康个体中开发HRF谱图的有价值的数据集,这将直接对fMRI数据分析(尤其是静止状态连通性建模)产生影响。这是7T的第一个公开HRF数据。

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