Niigata University of Health and Welfare, Department of Physical Therapy, 1398 Shimami-cho, Kita-ku, 950-3198 Niigata, Japan.
Clin Neurophysiol. 2010 Apr;121(4):588-93. doi: 10.1016/j.clinph.2009.12.022. Epub 2010 Jan 20.
Magnetoencephalography (MEG) recordings were performed to investigate the cortical activation following tactile-on and tactile-off stimulation.
We used a 306-ch whole-head MEG system and a tactile stimulator driven by a piezoelectric actuator. Tactile stimuli were applied to the tip of right index finger. The interstimulus interval was set at 2000 ms, which included a constant stimulus of 1000 ms duration.
Prominent somatosensory evoked magnetic fields were recorded from the contralateral hemisphere at 57.5 ms and 133.0 ms after the onset of tactile-on stimulation and at 58.2 ms and 138.5 ms after the onset of tactile-off stimulation. All corresponding equivalent current dipoles (ECDs) were located in the primary somatosensory cortex (SI). Moreover, long-latency responses (168.7 ms after tactile-on stimulation, 169.8 ms after tactile-off stimulation) were detected from the ipsilateral hemisphere. The ECDs of these signals were identified in the secondary somatosensory cortex (SII).
The somatosensory evoked magnetic fields waveforms elicited by the two tactile stimuli (tactile-on and tactile-off stimuli) with a mechanical stimulator were strikingly similar. These mechanical stimuli elicited both contralateral SI and ipsilateral SII activities.
Tactile stimulation with a mechanical stimulator provides new possibilities for experimental designs in studies of the human mechanoreceptor system.
通过脑磁图(MEG)记录来研究触觉刺激开启和关闭后的皮层激活情况。
我们使用了一个 306 通道全头 MEG 系统和一个由压电致动器驱动的触觉刺激器。触觉刺激施加在右手食指指尖。刺激间隔设置为 2000 毫秒,其中包括持续时间为 1000 毫秒的恒定刺激。
在触觉刺激开启后 57.5 毫秒和 133.0 毫秒,以及触觉刺激关闭后 58.2 毫秒和 138.5 毫秒,从对侧半球记录到明显的体感诱发电磁场。所有相应的等效电流偶极子(ECD)均位于初级体感皮层(SI)中。此外,还从同侧半球检测到长潜伏期反应(触觉刺激开启后 168.7 毫秒,触觉刺激关闭后 169.8 毫秒)。这些信号的 ECD 被确定在次级体感皮层(SII)中。
两种机械刺激(触觉开启和触觉关闭刺激)诱发的体感诱发电磁场波形非常相似。这些机械刺激引发了对侧 SI 和同侧 SII 的活动。
机械刺激器的触觉刺激为人类机械感受器系统研究的实验设计提供了新的可能性。