Zvyagintsev Mikhail, Nikolaev Andrey R, Thönnessen Heike, Sachs Olga, Dammers Jürgen, Mathiak Klaus
Department of Psychiatry and Psychotherapy, University Hospital Aachen, RWTH Aachen University, 52074 Aachen, Germany.
Exp Brain Res. 2009 Sep;198(2-3):391-402. doi: 10.1007/s00221-009-1830-5. Epub 2009 May 17.
We investigated the brain responses to the transitions from the static to moving audiovisual stimuli using magnetoencephalography. The spatially congruent auditory and visual stimuli moved in the same direction whereas the incongruent stimuli moved in the opposite directions. Using dipole modeling we found that the static-to-moving transitions evoked a neural response in the primary auditory cortex bilaterally. The response started about 100 ms after the motion onset from a negative component (mvN1) and lasted during the entire interval of the stimulus motion. The mvN1 component was similar to the classical auditory N1 response to the static sound, but had smaller amplitude and later latency. The coordinates of the mvN1 and N1 dipoles in the primary auditory cortex were also similar. The amplitude of the auditory response to the moving stimuli appears to be sensitive to spatial congruency of the audiovisual motion; it was larger in the incongruent than congruent condition. This is evidence that the moving visual stimuli modulate the early sensory activity in the primary auditory cortex. Such early audiovisual integration may be specific for motion processing.
我们使用脑磁图研究了大脑对从静态视听刺激到动态视听刺激转换的反应。空间上一致的听觉和视觉刺激朝相同方向移动,而非一致的刺激朝相反方向移动。使用偶极子模型,我们发现从静态到动态的转换在双侧初级听觉皮层诱发了神经反应。该反应在运动开始后约100毫秒从一个负成分(mvN1)开始,并在刺激运动的整个间隔期间持续。mvN1成分类似于对静态声音的经典听觉N1反应,但幅度较小且潜伏期较晚。初级听觉皮层中mvN1和N1偶极子的坐标也相似。对动态刺激的听觉反应幅度似乎对视听运动的空间一致性敏感;在不一致条件下比一致条件下更大。这证明动态视觉刺激调节初级听觉皮层中的早期感觉活动。这种早期视听整合可能对运动处理具有特异性。