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An fMRI study of neural interaction in large-scale cortico-thalamic visual network.

机译:大型皮质-丘脑视觉网络中神经相互作用的功能磁共振成像研究。

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To date there is still no proper neuroimaging methods suitable for noninvasively providing both detailed spatial and temporal information of neural interaction across large-scale brain networks. This limitation has impeded the advance of neuroscience research. In an attempt to overcome this challenge, Ogawa et al. applied a paired-stimulus paradigm, which is composed of a pair of stimuli separated by a variable inter-stimulus interval (ISI), to decode temporal information of neural interaction from amplitude modulation of the blood-oxygenation-level-dependent (BOLD) responses elicited by the neural interaction pursued [Ogawa, S., Lee, T.-M., Stepnoski, R., Chen, W., Zhu, X.H., Ugurbil, K., 2000. An approach to probe neural systems interaction by functional MRI at neural time scale down to milliseconds. Proc. Natl. Acad Sci. U S A 97, 11026-11031.]. Although application of this paradigm has been demonstrated in a few publications, most of them only focused on investigating cortico-cortical interaction. Considering the vital roles that cortico-thalamic networks play in brain communication and function, extending the applicability of this method to studying cortico-thalamic neural interaction should be significant. In this study, we applied the paired-visual-stimulus paradigm to simultaneously measure the BOLD amplitude modulations as a function of ISI in the lateral geniculate nucleus (LGN) and primary visual cortex (V1) in the cat brain. The results reveal that both V1 and LGN BOLD responses were significantly suppressed when the visual system was within the refractory period at ISI
机译:迄今为止,仍没有合适的神经影像学方法适合于无创地提供跨大规模脑网络的神经相互作用的详细的时空信息。这种局限性阻碍了神经科学研究的发展。为了克服这一挑战,Ogawa等人。应用了由一对可变刺激间间隔(ISI)隔开的一对刺激组成的成对刺激范例,从血液氧合水平依赖性(BOLD)响应的振幅调制中解码神经相互作用的时间信息追求的神经相互作用[Ogawa,S.,Lee,T.-M.,Stepnoski,R.,Chen,W.,Zhu,XH,Ugurbil,K.,2000.一种通过功能探测神经系统相互作用的方法MRI在神经时间的尺度可降至毫秒。进程Natl。 Acad Sci。美国专利97,11026-11031。]。尽管这种模式的应用已在一些出版物中得到了证明,但大多数仅集中于研究皮质-皮质相互作用。考虑到皮质-丘脑网络在大脑沟通和功能中所起的关键作用,将这种方法的适用性扩展到研究皮质-丘脑神经相互作用中应该很重要。在这项研究中,我们应用了配对视觉刺激范例,同时测量了猫脑外侧膝状核(LGN)和初级视觉皮层(V1)中作为ISI函数的BOLD幅度调制。结果表明,当视觉系统处于ISI

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