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采用复杂手指轻敲动作对人类颈脊髓进行的SSFSE序列功能磁共振成像

SSFSE sequence functional MRI of the human cervical spinal cord with complex finger tapping.

作者信息

Xie Chu-hai, Kong Kang-mei, Guan Ji-tian, Chen Ye-xi, He Jian-kang, Qi Wei-li, Wang Xin-jia, Shen Zhi-wei, Wu Ren-hua

机构信息

Department of Orthopedic Surgery, The Second Affiliated Hospital to Shantou University Medical College, Shantou, Guangdong 515041, China.

出版信息

Eur J Radiol. 2009 Apr;70(1):1-6. doi: 10.1016/j.ejrad.2008.01.003. Epub 2008 Mar 18.

Abstract

PURPOSE

Functional MR imaging of the human cervical spinal cord was carried out on volunteers during alternated rest and a complex finger tapping task, in order to detect image intensity changes arising from neuronal activity.

METHODS

Functional MR imaging data using single-shot fast spin-echo sequence (SSFSE) with echo time 42.4 ms on a 1.5 T GE Clinical System were acquired in eight subjects performing a complex finger tapping task. Cervical spinal cord activation was measured both in the sagittal and transverse imaging planes. Postprocessing was performed by AFNI (Analysis of Functional Neuroimages) software system.

RESULTS

Intensity changes (5.5-7.6%) were correlated with the time course of stimulation and were consistently detected in both sagittal and transverse imaging planes of the cervical spinal cord. The activated regions localized to the ipsilateral side of the spinal cord in agreement with the neural anatomy.

CONCLUSION

Functional MR imaging signals can be reliably detected with finger tapping activity in the human cervical spinal cord using a SSFSE sequence with 42.4 ms echo time. The anatomic location of neural activity correlates with the muscles used in the finger tapping task.

摘要

目的

在志愿者交替休息和进行复杂手指敲击任务期间,对其颈脊髓进行功能磁共振成像,以检测由神经元活动引起的图像强度变化。

方法

在1.5T通用电气临床系统上,使用回波时间为42.4ms的单次激发快速自旋回波序列(SSFSE),对8名执行复杂手指敲击任务的受试者采集功能磁共振成像数据。在矢状面和横断面成像平面上测量颈脊髓激活情况。通过AFNI(功能神经影像分析)软件系统进行后处理。

结果

强度变化(5.5 - 7.6%)与刺激时间过程相关,并且在颈脊髓的矢状面和横断面成像平面上均能持续检测到。激活区域定位于脊髓同侧,与神经解剖结构一致。

结论

使用回波时间为42.4ms的SSFSE序列,通过手指敲击活动能够可靠地检测到人类颈脊髓的功能磁共振成像信号。神经活动的解剖位置与手指敲击任务中使用的肌肉相关。

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