Brandt Thomas, Marx Esther, Stephan Thomas, Bense Sandra, Dieterich Marianne
Department of Neurology, Ludwig-Maximilians University, Klinikum Grosshadern, 81377 Munich, Germany.
Ann N Y Acad Sci. 2003 Oct;1004:283-8. doi: 10.1196/annals.1303.025.
Findings of an earlier functional magnetic resonance imaging (fMRI) study that coherent motion stimulation of the right or left visual hemifield exhibited negative signal changes (deactivations) in the primary visual cortex and the lateral geniculate nucleus contralateral to the stimulated hemisphere were evaluated to determine the functional significance of this contralateral inhibition of the visual system. Fourteen subjects participated in a psychophysical study on the perception of single object motion (0.4 degrees /s) in one visual hemifield with or without concurrent coherent motion stimulation of the contralateral hemifield. Mean detection times for horizontal object motion (0.5 +/- 0.19 vs. 0.61 +/- 0.22 s) and vertical object motion (0.53 +/- 0.19 vs. 0.72 +/- 0.34 s) were significantly prolonged during concurrent motion pattern stimulation in the contralateral hemifield. These data support the interpretation that the deactivation of neuronal activity in the visual system found by fMRI is associated with a functional decrement in the sensitivity needed to perceive motion and may reflect transcallosal attentional shifts between the two hemispheres.
一项早期功能磁共振成像(fMRI)研究发现,对右侧或左侧视觉半视野进行连贯运动刺激时,在受刺激半球对侧的初级视觉皮层和外侧膝状体中会出现负信号变化(失活)。为了确定视觉系统这种对侧抑制的功能意义,对该研究结果进行了评估。14名受试者参与了一项心理物理学研究,该研究旨在探究在一个视觉半视野中,有无对侧半视野同时进行连贯运动刺激时,对单个物体运动(0.4度/秒)的感知情况。在对侧半视野同时进行运动模式刺激时,水平物体运动(0.5±0.19秒对0.61±0.22秒)和垂直物体运动(0.53±0.19秒对0.72±0.34秒)的平均检测时间显著延长。这些数据支持了这样一种解释,即fMRI发现的视觉系统中神经元活动的失活与感知运动所需的敏感性功能下降有关,并且可能反映了两个半球之间经胼胝体的注意力转移。