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利用脑磁稳态响应精确定位躯体感觉手区。

Precise mapping of the somatotopic hand area using neuromagnetic steady-state responses.

机构信息

Rotman Research Institute, Baycrest Centre, Toronto, ON, Canada.

出版信息

Brain Res. 2012 May 21;1455:28-39. doi: 10.1016/j.brainres.2012.02.038. Epub 2012 Feb 22.

Abstract

The body surface is represented in somatotopically organized maps in the primary somatosensory cortex. Estimating the size of the hand area with neuromagnetic source analysis has been used as a metric for monitoring neuroplastic changes related to training, learning, and brain injury. Commonly, results were significant as group statistics only because source localization accuracy was limited by factors such as residual noise and head motion. In this study we aimed to develop a robust method for obtaining the somatotopic map of the hand area in individuals using the bootstrap framework. Furthermore, a comprehensive analysis of the different factors affecting the accuracy of the obtained maps was provided. We applied vibrotactile touch stimuli to the tip of the index finger or the ring finger of the right hand and recorded the 22-Hz steady-state response using MEG. Single equivalent dipole sources were localized in contralateral left somatosensory cortex. Bootstrap resampling revealed the confidence intervals for the source coordinates using a single block of 5 min MEG recording. Residual noise in the averaged evoked response predominantly affected source localization, and the related confidence interval was reciprocally related to the signal-to-noise ratio. Apparently, head movements within a block of MEG recording contributed less to the variability of source localization in cooperative volunteers. The results of the current study indicate that significant separations of index finger and ring finger representations along the somatotopic map can be revealed in an individual using bootstrap framework.

摘要

体表在初级体感皮层中以躯体定位组织图的形式呈现。使用磁共振源分析来估计手区的大小,已被用作监测与训练、学习和脑损伤相关的神经可塑性变化的指标。通常,结果仅作为组统计数据是显著的,因为源定位准确性受到残留噪声和头部运动等因素的限制。在这项研究中,我们旨在使用自举框架为个体获得手区躯体定位图开发一种稳健的方法。此外,还提供了对影响获得的图谱准确性的不同因素的全面分析。我们使用 MEG 记录向右手食指或无名指指尖施加振动触觉刺激,并记录 22 Hz 稳态响应。单等效偶极子源在对侧左体感皮层中定位。使用 5 分钟的 MEG 记录的单个块进行自举重采样,以显示源坐标的置信区间。平均诱发反应中的残余噪声主要影响源定位,相关置信区间与信噪比成反比。显然,在 MEG 记录的单个块内的头部运动对源定位的可变性贡献较小。本研究的结果表明,使用自举框架可以在个体中揭示索引手指和环指表示沿着躯体定位图的显著分离。

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