Department of Brain and Cognitive Engineering, Korea University, Seoul, 136-713, Republic of Korea.
Brain Res. 2013 Apr 4;1504:47-57. doi: 10.1016/j.brainres.2013.02.003. Epub 2013 Feb 8.
In the human mechanosensation system, rapidly adapting afferents project sensory signals of flutter (5-50Hz) to the contralateral primary somatosensory cortex (S1) and bilateral secondary somatosensory cortex (S2) whereas Pacinian afferents project sensory signals of vibration (50-400Hz) to bilateral S2. However, it remains largely unknown how somatosensory cortical activity changes as a function of vibrotactile frequency. This functional magnetic resonance imaging (fMRI) study investigated frequency dependency of somatosensory cortical activity in humans by applying vibrotactile stimulation with various frequencies (20-200Hz) to the index finger. We found more frequency-dependent voxels in the upper bank of the lateral sulcus (LS) of S2 than in S1 and the posterior parietal cortex of S2. Our statistical spatial clustering analysis showed that two groups of positively or negatively frequency-dependent voxels formed distinct clusters, most clearly in the LS. Using a cortical separability index, we reaffirmed that somatosensory cortical activity was most separable at 50Hz, previously known to demarcate flutter and vibration. Our results suggest that the LS (S2) may play an important role in processing vibrotactile frequency information and that the somatosensory cortex may include spatially localized neural assemblies specialized to higher or lower vibrotactile frequency.
在人类机械感觉系统中,快速适应传入纤维将颤动(5-50Hz)的感觉信号投射到对侧初级体感皮层(S1)和双侧次级体感皮层(S2),而Pacinian 传入纤维则将振动(50-400Hz)的感觉信号投射到双侧 S2。然而,感觉皮层活动如何随振动频率而变化在很大程度上仍不清楚。这项功能性磁共振成像(fMRI)研究通过用各种频率(20-200Hz)的振动刺激食指,研究了人类体感皮层活动的频率依赖性。我们发现 S2 的外侧沟(LS)上区的频率依赖性体素比 S1 和 S2 的后顶叶皮层多。我们的统计空间聚类分析表明,两组正或负频率依赖性体素形成了不同的聚类,在 LS 中最为明显。使用皮质可分离性指数,我们再次证实,体感皮层活动在 50Hz 时最可分离,这一频率先前被认为是区分颤动和振动的界限。我们的结果表明,LS(S2)可能在处理振动频率信息方面发挥重要作用,并且体感皮层可能包括专门用于更高或更低振动频率的空间局部化神经组件。