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首页> 外文期刊>NeuroImage >Temporally-structured acquisition of multidimensional optical imaging data facilitates visualization of elusive cortical representations in the behaving monkey
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Temporally-structured acquisition of multidimensional optical imaging data facilitates visualization of elusive cortical representations in the behaving monkey

机译:临时结构化多维光学成像数据的采集有助于可视化行为猴中难以捉摸的皮质表示

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摘要

Fundamental understanding of higher cognitive functions can greatly benefit from imaging of cortical activity with high spatiotemporal resolution in the behaving non-human primate. To achieve rapid imaging of high-resolution dynamics of cortical representations of spontaneous and evoked activity, we designed a novel data acquisition protocol for sensory stimulation by rapidly interleaving multiple stimuli in continuous sessions of optical imaging with voltage-sensitive dyes. We also tested a new algorithm for the "temporally structured component analysis" (TSCA) of a multidimensional time series that was developed for our new data acquisition protocol, but was tested only on simulated data (Blumenfeld, 2010). In addition to the raw data, the algorithm incorporates prior knowledge about the temporal structure of the data as well as input from other information. Here we showed that TSCA can successfully separate functional signal components from other signals referred to as noise. Imaging of responses to multiple visual stimuli, utilizing voltage-sensitive dyes, was performed on the visual cortex of awake monkeys. Multiple cortical representations, including orientation and ocular dominance maps as well as the hitherto elusive retinotopic representation of orientation stimuli, were extracted in only 10. s of imaging, approximately two orders of magnitude faster than accomplished by conventional methods. Since the approach is rather general, other imaging techniques may also benefit from the same stimulation protocol. This methodology can thus facilitate rapid optical imaging explorations in monkeys, rodents and other species with a versatility and speed that were not feasible before.
机译:对高认知功能的基本理解可以极大地受益于表现出非人类灵长类动物时空分辨率高的皮质活动的成像。为了实现对自发性和诱发性活动的皮层表现的高分辨率动力学的快速成像,我们设计了一种新的数据采集协议,通过在电压成像的连续会话中用电压敏感染料快速交错多个刺激来进行感官刺激。我们还测试了针对多维时间序列的“临时结构成分分析”(TSCA)的新算法,该算法是针对我们的新数据采集协议开发的,但仅在模拟数据上进行了测试(Blumenfeld,2010年)。除原始数据外,该算法还包含有关数据的时间结构以及来自其他信息的输入的先验知识。在这里,我们证明了TSCA可以成功地将功能信号分量与其他信号(称为噪声)分开。在觉醒的猴子的视觉皮层上利用电压敏感染料对多种视觉刺激的反应进行成像。仅在10 s的成像中就提取了多个皮质表示,包括方向和眼部优势图以及迄今难以捉摸的视网膜原位表示,仅比成像方法快了两个数量级。由于该方法相当笼统,因此其他成像技术也可能会受益于相同的刺激方案。因此,这种方法可以以前所未有的多功能性和速度促进对猴子,啮齿动物和其他物种的快速光学成像探索。

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