听觉注意的右半球优势及其受眼位的调节:一项事件相关功能磁共振成像研究。
Right hemisphere dominance for auditory attention and its modulation by eye position: an event related fMRI study.
作者信息
Petit Laurent, Simon Grégory, Joliot Marc, Andersson Frédéric, Bertin Thomas, Zago Laure, Mellet Emmanuel, Tzourio-Mazoyer Nathalie
机构信息
Groupe d'Imagerie Neurofonctionnelle, UMR 6194 CNRS - CEA - University of Caen and University Paris Descartes, GIP Cyceron, Bd. H. Becquerel, BP 5229, 14074 Caen Cedex, France.
出版信息
Restor Neurol Neurosci. 2007;25(3-4):211-25.
PURPOSE
Previous neuroimaging studies of oddball tasks and other paradigms measuring attention processes support right hemisphere dominance for attentional processes. Using an auditory selective attention task, we studied the functional asymmetry of the human brain in response to attended or unattended deviant tones. Secondly, we examined whether a congruency or a discrepancy between audio-spatial and visuo-spatial cued attentional resources may influence the activity elicited by an auditory selective attention task.
METHODS
We used event-related functional magnetic resonance imaging (fMRI) to study healthy adults as they performed an auditory oddball task in which a spatial-cued instruction indicated the ear to attend a monaural deviant tone. We addressed the question of congruency/discrepancy between attentional resources by using three different eye positions during the performance of the auditory oddball task.
RESULTS
Relative to standard tones, both attended and unattended deviant tones (DTs) presented to either ear elicit the activation of a widespread bilaterally distributed cortical and subcortical network. A subset of this network, essentially frontal and temporal areas, showed not only greater right than left activity but an enhancement of this rightward asymmetry in response to attended DTs. The only cortical region that showed a leftward asymmetry in response to attended DTs overlapped Heschl gyrus and planum temporale, unmasking a left hemisphere preference of both primary and secondary auditory cortex for processing simple attended monaural stimuli. Questioning the impact of eye position during auditory oddball task, we observed a lesser activity in right integrative crossmodal areas (superior temporal sulcus, opercular part of the inferior frontal gyrus, pre-SMA) when the eye positions were contralateral to detected DTs. These regions may be tuned to best respond when both visuo-spatial and audio-spatial attentional resources work together.
CONCLUSION
These results support the assumption that the right hemisphere is preferentially engaged in processing audio-spatial attentional resources and underline the interest to study the crossmodal integration of attentional resources by the mean of the detection of DTs in different eye positions.
目的
先前针对异常球任务及其他测量注意力过程的范式进行的神经影像学研究支持注意力过程存在右半球优势。我们使用一项听觉选择性注意力任务,研究了人类大脑对被关注或未被关注的异常音调的功能不对称性。其次,我们考察了音频空间和视觉空间提示的注意力资源之间的一致性或差异是否会影响听觉选择性注意力任务引发的活动。
方法
我们使用事件相关功能磁共振成像(fMRI)来研究健康成年人在执行听觉异常球任务时的情况,在该任务中,空间提示指令指明要关注单耳异常音调的耳朵。我们通过在听觉异常球任务执行过程中使用三种不同的眼睛位置来探讨注意力资源之间的一致性/差异问题。
结果
相对于标准音调,呈现给任一耳朵的被关注和未被关注的异常音调(DTs)都会引发广泛的双侧分布的皮质和皮质下网络的激活。该网络的一个子集,主要是额叶和颞叶区域,不仅显示出右侧比左侧的活动更强,而且在对被关注的DTs做出反应时,这种右侧不对称性增强。唯一对被关注的DTs表现出左侧不对称的皮质区域与颞横回和颞平面重叠,揭示了初级和次级听觉皮层在处理简单的被关注单耳刺激时对左半球的偏好。在质疑听觉异常球任务期间眼睛位置的影响时,我们观察到当眼睛位置与检测到的DTs对侧时,右侧整合跨模态区域(颞上沟、额下回的岛盖部、前辅助运动区)活动较少。当视觉空间和音频空间注意力资源协同工作时,这些区域可能会被调整到最佳反应状态。
结论
这些结果支持了右半球优先参与处理音频空间注意力资源的假设,并强调了通过检测不同眼睛位置的DTs来研究注意力资源跨模态整合的意义。