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猕猴后顶叶皮层在抓握过程中局部场电位和单个神经元的方向和物体选择性比较

Comparison of direction and object selectivity of local field potentials and single units in macaque posterior parietal cortex during prehension.

作者信息

Asher Itay, Stark Eran, Abeles Moshe, Prut Yifat

机构信息

Dept. of Physiology, Hadassah Medical School, The Hebrew University of Jerusalem 91120, Israel.

出版信息

J Neurophysiol. 2007 May;97(5):3684-95. doi: 10.1152/jn.00886.2006. Epub 2007 Mar 21.

Abstract

Recent studies have shown that the local field potential (LFP) can provide a simple method for obtaining an accurate measure of reaching and saccade behaviors. However, it is not clear whether this signal is equally informative with respect to more complex movements. Here we recorded LFPs and single units (SUs) from different areas in the posterior parietal cortex of macaques during a prehension task and compared LFP selectivity with SU selectivity. We found that parietal LFPs were often selective to target direction or object and that percentages of selective LFPs were similar to percentages of selective SUs. Nevertheless, SUs were more informative than LFPs in several respects. Preferred directions and objects of LFPs usually deviated from a uniform distribution, unlike preferences of SUs. Furthermore, preferences of LFPs did not reflect preferences of SUs even when the two signals were recorded simultaneously via the same electrode. Additionally, selectivity of movement-evoked LFPs appeared only after movement onset, whereas SUs frequently showed premovement selectivity. Spectral analysis revealed a lower signal-to-noise ratio of the LFP signal. Different frequency bands derived from a single LFP site showed inconsistent preferences. Significant relations with target parameters were found for all tested bands of LFP, but effects in the fast (gamma) band exhibited properties that were consistent with contamination of the LFP by residual spiking activity. Taken together, our results suggest that the LFP provides a simple method for extracting ample movement-related information. However, some of its properties make it less adequate for predicting rapidly changing movements.

摘要

最近的研究表明,局部场电位(LFP)可以提供一种简单的方法来准确测量伸手和扫视行为。然而,目前尚不清楚该信号对于更复杂的运动是否同样具有信息量。在这里,我们在抓握任务期间记录了猕猴后顶叶皮层不同区域的LFP和单个神经元(SU),并比较了LFP选择性与SU选择性。我们发现,顶叶LFP通常对目标方向或物体具有选择性,并且选择性LFP的百分比与选择性SU的百分比相似。然而,在几个方面,SU比LFP更具信息量。与SU的偏好不同,LFP的偏好方向和物体通常偏离均匀分布。此外,即使通过同一电极同时记录这两种信号,LFP的偏好也不能反映SU的偏好。此外,运动诱发的LFP选择性仅在运动开始后才出现,而SU经常表现出运动前的选择性。频谱分析显示LFP信号的信噪比更低。从单个LFP位点导出的不同频段显示出不一致的偏好。在所有测试的LFP频段中都发现了与目标参数的显著关系,但快速(γ)频段的效应表现出与残余尖峰活动对LFP的污染一致的特性。综上所述,我们的结果表明,LFP提供了一种提取大量运动相关信息的简单方法。然而,它的一些特性使其不太适合预测快速变化的运动。

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