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情景记忆和工作记忆过程中的成像与神经建模

Imaging and neural modelling in episodic and working memory processes.

作者信息

Krause J B, Taylor J G, Schmidt D, Hautzel H, Mottaghy F M, Müller-Gärtner H W

机构信息

Department of Nuclear Medicine (KME), Research Centre Jülich, Germany.

出版信息

Neural Netw. 2000 Oct-Nov;13(8-9):847-59. doi: 10.1016/s0893-6080(00)00068-x.

Abstract

Neuroimaging studies using positron emission tomography (PET) and functional magnetic resonance imaging (fMRI) have revealed the involvement of distributed brain regions in memory processes mainly by the use of subtraction strategy based data analyses. Covariance analysis based data analysis strategies have been introduced more recently which allow functional interactions between brain regions of a neuronal network to be assessed. This contribution focuses on studies aiming to (1) establish the functional topography of episodic and working memory processes in young and old normal volunteers, (2) to assess functional interactions between modules of networks of brain regions by means of covariance based analyses and systems level modelling, (3) to characterise the temporal dynamics by the use of magnetoencephalography (MEG) and (4) to relate neuroimaging data to the underpinning neural networks. Male normal young and old volunteers without neurological or psychiatric illness participated in neuroimaging studies (PET, fMRI, MEG). Studies were approved by the ethical committee and federal authorities. Our results in young volunteers show distributed brain areas that are involved in memory processes (episodic and working memory) and show much of an overlap with respect to the network components. Systems level modelling analyses support the hypothesis of bihemispheric, asymmetric networks subserving memory processes and revealed both similarities in general and differences in the interactions between brain regions during episodic encoding and retrieval as well as working memory. Changes in memory function with ageing are evident from functional topographic studies in old volunteers activating more brain regions as compared to young volunteers. There are more and stronger influences of prefrontal regions in elderly volunteers comparing the functional models between old and young subjects. We discuss the way that the systems level models of the PET and fMRI results have implications for the underlying neural network functioning of the brain. This is done by developing simplifying assumptions, which lead from the equations describing the activities of the coupled neural modules to the systems level model equations. The resulting implications for the neural interactions are then discussed, in terms of a set of synaptically coupled neural modules. Finally, we consider how a similar analysis could be extended from the spatial to the temporal domain thus including the EEG and MEG results. The implication of preliminary MEG results presented here for the temporality arising in the interaction between the coupled neural modules in a working memory paradigm is discussed in terms of the previously developed neural network models arising from the PET and fMRI data.

摘要

使用正电子发射断层扫描(PET)和功能磁共振成像(fMRI)的神经影像学研究主要通过基于减法策略的数据分析揭示了分布式脑区参与记忆过程。最近引入了基于协方差分析的数据分析策略,其能够评估神经网络脑区之间的功能相互作用。本论文着重于旨在以下方面的研究:(1)在年轻和老年正常志愿者中建立情景记忆和工作记忆过程的功能地形图;(2)通过基于协方差的分析和系统水平建模评估脑区网络模块之间的功能相互作用;(3)利用脑磁图(MEG)表征时间动态变化;(4)将神经影像学数据与基础神经网络联系起来。无神经或精神疾病的男性年轻和老年正常志愿者参与了神经影像学研究(PET、fMRI、MEG)。研究获得了伦理委员会和联邦当局的批准。我们在年轻志愿者中的研究结果显示,参与记忆过程(情景记忆和工作记忆)的脑区分布广泛,且在网络组件方面有很大重叠。系统水平建模分析支持了双半球、不对称网络支持记忆过程的假设,并揭示了情景编码和检索以及工作记忆期间脑区之间相互作用的总体相似性和差异。从老年志愿者的功能地形图研究中可以明显看出,与年轻志愿者相比,随着年龄增长记忆功能的变化表现为激活更多的脑区。比较老年和年轻受试者的功能模型发现,老年志愿者前额叶区域的影响更多且更强。我们讨论了PET和fMRI结果的系统水平模型对大脑基础神经网络功能的影响方式。这是通过提出简化假设来实现的,这些假设从描述耦合神经模块活动的方程推导到系统水平模型方程。然后根据一组突触耦合神经模块讨论对神经相互作用的影响。最后,我们考虑如何将类似的分析从空间域扩展到时间域,从而纳入脑电图和脑磁图结果。本文呈现的初步脑磁图结果对工作记忆范式中耦合神经模块相互作用产生的时间性的影响,将根据先前从PET和fMRI数据得出的神经网络模型进行讨论。

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