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Sound Identification System from Auditory Cortex by Using fMRI and Deep Learning: Study on Experimental Design for Capturing Brain Images

机译:通过使用FMRI和深度学习的听觉皮层的声音识别系统:捕获脑图像实验设计的研究

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This study establishes a technique estimating sounds using deep learning based on brain images when humans hear sounds captured by fMRI. Humans are hearing complex sounds with mixed frequencies, so we develop estimating complex sound system to establish this technique. So far, we developed a system identifying single sound based on brain images when humans hear single sound by using CNN one of the deep learning, but it doesn't support complex sound. Therefore, we focus on complex sound and aim to develop a system identifying complex sounds based on brain images when humans hear complex sound. Since identification results generally depend on the brain image used for identification, this report considers block design and event-related design which fMRI experimental designs for capturing brain images to understand effect of stability for brain activity on brain image. As a result, the identification rates of two types complex sounds were almost the same for both designs, and the effect of the stability of brain activity didn't appear in the identification rates so we decide use event-related design.
机译:当人类听到FMRI捕获的声音时,该研究建立了使用基于脑图像的深度学习的估算声音的技术。人类正在听到混合频率的复杂声音,因此我们开发估算复杂声音系统以建立这种技术。到目前为止,我们开发了一个系统识别基于脑图像的单声音的系统,当人类听到单一声音时,使用CNN的深度学习,但它不支持复杂的声音。因此,我们专注于复杂的声音,旨在开发一个系统,当人类听到复杂的声音时,基于脑图像识别复杂声音的系统。由于鉴定结果通常取决于用于识别的脑图像,因此该报告考虑了块设计和与事件相关的设计,该设计是为了捕获脑图像来理解脑图像脑活动稳定性的效果的实验设计。结果,两种类型复杂声音的识别率几乎相同,对于两种设计几乎相同,并且脑活动稳定性的效果未出现在识别率中,因此我们决定使用与事件相关的设计。

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