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通过皮层内水平和胼胝体连接在猫视觉皮层中进行微刺激诱发的神经活动的电压敏感染料成像。

Voltage-sensitive-dye imaging of microstimulation-evoked neural activity through intracortical horizontal and callosal connections in cat visual cortex.

机构信息

Graduate School of Information Science and Technology, The University of Tokyo, Hongo 7-3-1, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

J Neural Eng. 2009 Dec;6(6):066002. doi: 10.1088/1741-2560/6/6/066002. Epub 2009 Oct 1.

Abstract

Recently, intrinsic signal optical imaging has been widely used as a routine procedure for visualizing cortical functional maps. We do not, however, have a well-established imaging method for visualizing cortical functional connectivity indicating spatio-temporal patterns of activity propagation in the cerebral cortex. In the present study, we developed a novel experimental setup for investigating the propagation of neural activities combining the intracortical microstimulation (ICMS) technique with voltage sensitive dye (VSD) imaging, and demonstrated the feasibility of this setup applying to the measurement of time-dependent intra- and inter-hemispheric spread of ICMS-evoked excitation in the cat visual cortices, areas 17 and 18. A microelectrode array for the ICMS was inserted with a specially designed easy-to-detach electrode holder around the 17/18 transition zones (TZs), where the left and right hemispheres were interconnected via the corpus callosum. The microelectrode array was stably anchored in agarose without any holder, which enabled us to visualize evoked activities even in the vicinity of penetration sites as well as in a wide recording region that covered a part of both hemispheres. The VSD imaging could successfully visualize ICMS-evoked excitation and subsequent propagation in the visual cortices contralateral as well as ipsilateral to the ICMS. Using the orientation maps as positional references, we showed that the activity propagation patterns were consistent with previously reported anatomical patterns of intracortical and interhemispheric connections. This finding indicates that our experimental system can serve for the investigation of cortical functional connectivity.

摘要

最近,内源信号光学成像已被广泛用作可视化皮质功能图谱的常规程序。然而,我们还没有一种成熟的成像方法来可视化皮质功能连接,以指示大脑皮质活动传播的时空模式。在本研究中,我们开发了一种新的实验装置,用于研究结合皮层内微刺激(ICMS)技术和电压敏感染料(VSD)成像的神经活动传播,并用该装置演示了在猫视觉皮层 17 和 18 区测量 ICMS 诱发兴奋的时变内-半球和间-半球传播的可行性。用于 ICMS 的微电极阵列通过专门设计的易于拆卸的电极固定器插入到 17/18 过渡区(TZ)周围,左右半球通过胼胝体相互连接。微电极阵列在琼脂糖中稳定固定,没有任何固定器,这使我们能够在接近穿透部位以及覆盖两个半球部分的广泛记录区域中可视化诱发活动。VSD 成像可以成功地可视化 ICMS 诱发的兴奋以及在 ICMS 对侧和同侧的视觉皮层中的后续传播。使用方位图作为位置参考,我们表明活动传播模式与先前报道的皮层内和半球间连接的解剖学模式一致。这一发现表明,我们的实验系统可用于研究皮质功能连接。

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