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Fourier Analysis of Cerebral Metabolism of Glucose: Gender Differences in Mechanisms of Color Processing in the Ventral and Dorsal Streams in Mice

机译:葡萄糖脑代谢的傅里叶分析:小鼠腹侧腹部颜色加工机制的性别差异

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Conventional imaging methods could not distinguish processes within the ventral and dorsal streams. The application of Fourier time series analysis was helpful to segregate changes in the ventral and dorsal streams of the visual system in male and female mice. The present study measured the accumulation of [18F]fluorodeoxyglucose ([18F]FDG) in the mouse brain using small animal positron emission tomography and magnetic resonance imaging (PET/MRI) during light stimulation with blue and yellow filters, compared to during conditions of darkness. Fourier analysis was performed using mean standardized uptake values (SUV) of [18F]FDG for each stimulus condition to derive spectral density estimates for each condition. In male mice, luminance opponency occurred by S-peak changes in the sub-cortical retino-geniculate pathways in the dorsal stream supplied by ganglionic arteries in the left visual cortex, while chromatic opponency involved C-peak changes in the cortico-subcortical pathways in the ventral stream perfused by cortical arteries in the left visual cortex. In female mice, there was resonance phenomenon at C-peak in the ventral stream perfused by the cortical arteries in the right visual cortex during luminance processing. Conversely, chromatic opponency caused by S-peak changes in the subcortical retino-geniculate pathways in the dorsal stream supplied by the ganglionic arteries in the right visual cortex. In conclusion, Fourier time series analysis uncovered distinct mechanisms of color processing in the ventral stream in males, while in female mice color processing was in the dorsal stream. It demonstrated that computation of colour processing as a conscious experience could have a wide range of applications in neuroscience, artificial intelligence and quantum mechanics.
机译:传统的成像方法不能区分腹侧和背部流内的过程。傅立叶时间序列分析的应用有助于分离雄性和女性小鼠视觉系统腹侧和背部流的变化。本研究在使用蓝色和黄色过滤器的光刺激期间,测量了在小鼠脑中的[18F]氟脱氧葡萄糖([18F] FDG)在小鼠脑中的积累,与蓝色和黄色过滤器相比黑暗。使用[18F] FDG的平均标准化摄取值(SUV)进行傅里叶分析,每个刺激条件都能为每个条件导出光谱密度估计。在阳性小鼠中,由神经节动脉在左视觉皮质的神经节动脉提供的亚皮质视网膜序列途径中发生亮度对手,而左视觉皮质中的亚峰值,而色度对比涉及Cortico-upcorical途径中的C峰值变化在左视觉皮质中被皮质动脉灌注的腹侧溪流。在雌性小鼠中,在亮度处理期间,在右侧视觉皮层中的皮质动脉灌注的腹侧腹部C峰存在共振现象。相反,由神经节目动脉在右侧视觉皮层供应的背部流中的皮塔视网膜序列途径中的S峰值变化引起的色子对手。总之,傅立叶时间序列分析在母体小鼠中揭示了腹侧腹部流中的颜色加工机制,而在雌性小鼠中的颜色处理是背部流。它表明,作为有意识的经验的颜色处理的计算可以在神经科学,人工智能和量子力学中具有广泛的应用。

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