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首页> 外文期刊>NeuroImage >Functional reorganization in rat somatosensory cortex assessed by fMRI: elastic image registration based on structural landmarks in fMRI images and application to spinal cord injured rats.
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Functional reorganization in rat somatosensory cortex assessed by fMRI: elastic image registration based on structural landmarks in fMRI images and application to spinal cord injured rats.

机译:通过fMRI评估大鼠体感皮层的功能重组:基于fMRI图像中结构性标志的弹性图像配准并应用于脊髓损伤的大鼠。

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The accuracy at which changes in cortical functional topology can be assessed by functional MRI (fMRI) depends on the quality of the reference coordinate system used for comparison of data sets obtained in different imaging sessions. Current procedures comprise an overlay of activation clusters on registered high-resolution anatomical images. Yet, fMRI images are frequently distorted due to susceptibility artifacts, which are prominent in rodent studies due to the small dimensions involved and high magnetic field strengths used. Therefore, a procedure for co-registration of activation maps has been developed based on anatomical landmarks defined on fMR echo planar images (EPI) themselves. Validation studies in control rats revealed that the centers of activated areas in somatosensory cortex S1, evoked through sensory forepaw stimulation fell within an area of 1 x 1 mm(2) in agreement with known electrophysiological coordinates. The technique was applied to detect changes in activation patterns in rats following smaller unilateral spinal cord injuries (SCI) in their cervical segments (C3/C4) 12 weeks after lesion. Despite of an almost complete behavioral recovery, fMRI responses remained altered in SCI animals with both significantly reduced fMRI signal amplitude and reduced latency to reach the peak response. Moreover, in SCI animals the activated S1 area corresponding to the contralesional forepaw was significantly enlarged and the center-of-mass for the ipsilesional paw was shifted rostrally. The mapping technique described combined with the temporal analysis of the BOLD response enabled a noninvasive quantitative characterization of cortical functional reorganization following SCI in rats.
机译:可以通过功能MRI(fMRI)评估皮质功能拓扑变化的准确性取决于用于比较在不同成像阶段获得的数据集的参考坐标系的质量。当前的程序包括激活簇在配准的高分辨率解剖图像上的覆盖。然而,由于易受伪影的影响,fMRI图像经常失真,由于所涉及的尺寸小和使用的磁场强度高,在啮齿类动物研究中这些伪影很明显。因此,已经基于fMR回波平面图像(EPI)本身定义的解剖界标开发了激活图的共配准程序。在对照大鼠中的验证研究表明,通过感觉前爪刺激诱发的体感皮层S1激活区域的中心落在1 x 1 mm(2)的区域内,与已知的电生理坐标一致。该技术用于检测病损后12周的大鼠颈段(C3 / C4)较小的单侧脊髓损伤(SCI)后大鼠的激活模式变化。尽管行为恢复几乎完全,但在SCI动物中fMRI反应仍然发生了变化,fMRI信号幅度显着降低,到达峰值响应的潜伏期缩短。此外,在SCI动物中,对应于对侧前爪的激活的S1区域显着增大,同侧爪的质心向后移位。所描述的映射技术与BOLD响应的时间分析相结合,能够对大鼠SCI后的皮质功能重组进行无创定量表征。

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