Peyrin Carole, Chokron Sylvie, Guyader Nathalie, Gout Olivier, Moret Jacques, Marendaz Christian
Laboratoire de Psychologie et NeuroCognition, UMR 5105-CNRS/Université Pierre Mendès-France, BP 47, 38040 Grenoble Cedex 09, France.
Brain Res. 2006 Feb 16;1073-1074:1-10. doi: 10.1016/j.brainres.2005.12.051. Epub 2006 Jan 27.
We examined the neural correlates of spatial frequency (SF) processing through a gender and neuropsychological approach, using a recognition task of filtered (either in low spatial frequencies/LSF or high spatial frequencies/HSF) natural scene images. Experiment 1 provides evidence for hemispheric specialization in SF processing in men (the right hemisphere is predominantly involved in LSF analysis and the left in HSF analysis) but not in women. Experiment 2 aims to investigate the role of the right occipito-temporal cortex in LSF processing with a neurological female patient who had a focal lesion of this region due to an embolization of an arterioveinous malformation. This study was conducted 1 week before and 6 months after the surgical intervention. As expected, after the embolization, LSF scene recognition was more impaired than HSF scene recognition. These data support the hypothesis that the right occipito-temporal cortex might be preferentially specialized for LSF information processing and more generally suggest a hemispheric specialization in SF processing in females, although it is difficult to demonstrate in healthy women.
我们通过性别和神经心理学方法,使用经过滤波处理(低空间频率/LSF或高空间频率/HSF)的自然场景图像识别任务,研究了空间频率(SF)处理的神经关联。实验1为男性在SF处理中的半球特化提供了证据(右半球主要参与LSF分析,左半球参与HSF分析),而女性则不然。实验2旨在研究一名患有动静脉畸形栓塞导致该区域局灶性病变的神经学女性患者中,右侧枕颞叶皮质在LSF处理中的作用。这项研究在手术干预前1周和术后6个月进行。正如预期的那样,栓塞后,LSF场景识别比HSF场景识别受损更严重。这些数据支持了这样一种假设,即右侧枕颞叶皮质可能优先专门用于LSF信息处理,并且更普遍地表明女性在SF处理中存在半球特化,尽管在健康女性中难以证明这一点。