Bittar R G, Ptito M, Faubert J, Dumoulin S O, Ptito A
Montreal Neurological Institute, McGill University, Montreal, Canada.
Neuroimage. 1999 Sep;10(3 Pt 1):339-46. doi: 10.1006/nimg.1999.0474.
We used functional magnetic resonance imaging (fMRI) to investigate the neural substrates mediating residual vision in the "blind" hemifield of hemispherectomized patients. The visual stimuli were semicircular gratings moving in opposite directions on a dynamic random-dot background. They were specifically constructed to eliminate intra- and extraocular light scatter and optimize the activation of extrastriate cortical areas and their subcortical relays. Multislice T2*-weighted gradient echo (GE) echoplanar imaging (EPI) images (TR/TE = 4 s/45 ms, flip angle 90 degrees ) were acquired during activation and baseline visual stimulation. An activation minus baseline subtraction was performed, and the acquired t statistic map transformed into the stereotaxic coordinate space of Talairach and Tournoux. In seven normal control subjects, right hemifield stimulation produced significant activation foci in contralateral V1/V2, V3/V3A, VP, and V5 (MT). Significant activation was also produced in homologous regions of the right occipital lobe with left hemifield stimulation. Stimulation of the intact hemifield in hemispherectomized patients resulted in activation of similar areas exclusively within the contralateral hemisphere. Stimulation of the anopic hemifield produced statistically significant activation in the ipsilateral occipital lobe (putative area V5 or MT) and areas V3/V3A in the only subject with blindsight. We conclude that the remaining hemisphere may contribute to residual visual functions in the blind hemifield of hemispherectomized patients, possibly through the collicular-pulvinar route since the activated areas are known to receive their afferents from these subcortical nuclei.
我们使用功能磁共振成像(fMRI)来研究介导半球切除患者“盲”半视野残余视觉的神经基质。视觉刺激是在动态随机点背景上沿相反方向移动的半圆形光栅。它们经过特殊构建,以消除眼内和眼外的光散射,并优化纹外皮层区域及其皮层下中继的激活。在激活和基线视觉刺激期间采集多层T2 *加权梯度回波(GE)回波平面成像(EPI)图像(TR/TE = 4 s/45 ms,翻转角90度)。进行激活减去基线的减法运算,并将获取的t统计量图转换为Talairach和Tournoux的立体定向坐标空间。在七名正常对照受试者中,右半视野刺激在对侧V1/V2、V3/V3A、VP和V5(MT)产生了显著的激活灶。左半视野刺激在右枕叶的同源区域也产生了显著激活。刺激半球切除患者的完整半视野仅在对侧半球内导致类似区域的激活。刺激无视力半视野在唯一有盲视的受试者的同侧枕叶(假定区域V5或MT)和V3/V3A区域产生了具有统计学意义的激活。我们得出结论,剩余的半球可能通过丘系-丘脑途径对半球切除患者盲半视野的残余视觉功能有贡献,因为已知激活区域从这些皮层下核接收传入信号。