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平行眼跳编程的神经基础:一项 fMRI 研究。

The neural basis of parallel saccade programming: an fMRI study.

机构信息

University of London, Egham, Surrey, UK.

出版信息

J Cogn Neurosci. 2011 Nov;23(11):3669-80. doi: 10.1162/jocn_a_00048. Epub 2011 May 12.

Abstract

The neural basis of parallel saccade programming was examined in an event-related fMRI study using a variation of the double-step saccade paradigm. Two double-step conditions were used: one enabled the second saccade to be partially programmed in parallel with the first saccade while in a second condition both saccades had to be prepared serially. The intersaccadic interval, observed in the parallel programming (PP) condition, was significantly reduced compared with latency in the serial programming (SP) condition and also to the latency of single saccades in control conditions. The fMRI analysis revealed greater activity (BOLD response) in the frontal and parietal eye fields for the PP condition compared with the SP double-step condition and when compared with the single-saccade control conditions. By contrast, activity in the supplementary eye fields was greater for the double-step condition than the single-step condition but did not distinguish between the PP and SP requirements. The role of the frontal eye fields in PP may be related to the advanced temporal preparation and increased salience of the second saccade goal that may mediate activity in other downstream structures, such as the superior colliculus. The parietal lobes may be involved in the preparation for spatial remapping, which is required in double-step conditions. The supplementary eye fields appear to have a more general role in planning saccade sequences that may be related to error monitoring and the control over the execution of the correct sequence of responses.

摘要

我们通过一项使用双步扫视范式变体的事件相关 fMRI 研究来考察平行扫视编程的神经基础。使用了两种双步条件:一种条件允许第二个扫视与第一个扫视并行部分编程,而在第二种条件下,两个扫视都必须串行准备。在并行编程(PP)条件下观察到的扫视间间隔(intersaccadic interval)与串行编程(SP)条件下的潜伏期相比显著缩短,并且与对照条件下单次扫视的潜伏期相比也显著缩短。fMRI 分析显示,与 SP 双步条件相比,PP 条件下的额眼区和顶眼区的活动(BOLD 反应)更大,与单次扫视对照条件相比也是如此。相比之下,对于双步条件,补充眼区的活动大于单步条件,但无法区分 PP 和 SP 的要求。额眼区在 PP 中的作用可能与第二个扫视目标的提前时间准备和增加的显著度有关,这可能介导了其他下游结构(如上丘)的活动。顶叶可能参与了空间重映射的准备,这在双步条件下是必需的。补充眼区似乎在规划扫视序列方面具有更普遍的作用,这可能与错误监测和对正确反应序列的执行控制有关。

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