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使用曲面探测器实现猕猴视觉皮层的高分辨率、大视场光学成像。

High resolution, wide field optical imaging of macaque visual cortex with a curved detector.

机构信息

Laboratoire d'Astrophysique de Marseille: Aix-Marseille Univ, CNRS, CNES, LAM, Marseille, France.

Institut de Neurosciences de la Timone: Aix-Marseille Univ, CNRS, INT, Marseille, France.

出版信息

J Neural Eng. 2022 Nov 30;19(6). doi: 10.1088/1741-2552/aca123.

Abstract

. Cortical activity can be recorded using a variety of tools, ranging in scale from the single neuron (microscopic) to the whole brain (macroscopic). There is usually a trade-off between scale and resolution; optical imaging techniques, with their high spatio-temporal resolution and wide field of view, are best suited to study brain activity at the mesoscale. Optical imaging of cortical areas is however in practice limited by the curvature of the brain, which causes the image quality to deteriorate significantly away from the center of the image.. To address this issue and harness the full potential of optical cortical imaging techniques, we developed a new wide-field optical imaging system adapted to the macaque brain. Our system is composed of a curved detector, an aspherical lens and a ring composed of light emitting diodes providing uniform illumination at wavelengths relevant for the different optical imaging methods, including intrinsic and fluorescence imaging.. The system was characterized and compared with the standard macroscope used for cortical imaging, and a three-fold increase of the area in focus was measured as well as a four-fold increase in the evenness of the optical quality.. This new instrument, which is to the best of our knowledge the first use of a curved detector for cortical imaging, should facilitate the observation of wide mesoscale phenomena such as dynamic propagating waves within and between cortical maps, which are otherwise difficult to observe due to technical limitations of the currently available recording tools.

摘要

皮层活动可以使用各种工具进行记录,其范围从单个神经元(微观)到整个大脑(宏观)。通常,在规模和分辨率之间存在权衡;光学成像技术具有较高的时空分辨率和较宽的视野,最适合研究中尺度的大脑活动。然而,在实践中,皮层区域的光学成像受到大脑曲率的限制,这会导致图像质量在远离图像中心的位置显著恶化。为了解决这个问题并充分利用光学皮层成像技术的潜力,我们开发了一种新的适用于猕猴大脑的广角光学成像系统。我们的系统由一个弯曲的探测器、一个非球面透镜和一个由发光二极管组成的环组成,可在与不同光学成像方法(包括自发和荧光成像)相关的波长下提供均匀的照明。该系统进行了特征描述并与用于皮层成像的标准显微镜进行了比较,测量到焦点面积增加了三倍,并且光学质量的均匀性增加了四倍。这种新仪器,据我们所知,是首次将弯曲探测器用于皮层成像,应该有助于观察宽范围的介观现象,例如在皮层图谱内和之间传播的动态波,由于目前可用的记录工具的技术限制,这些现象否则很难观察到。

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