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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Development of a wide-view visual presentation system for visual retinotopic mapping during functional MRI.
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Development of a wide-view visual presentation system for visual retinotopic mapping during functional MRI.

机译:函数MRI期间视觉视网膜运动映射的宽视视觉呈现系统的研制。

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PURPOSE: To develop and validate the functionality of a novel wide-view visual presentation system with a horizontal and vertical eccentricity angle of 60 degrees for retinotopic mapping by functional MRI (fMRI). MATERIALS AND METHODS: The wide-view presentation system consisted of a 52-mm diameter optical fiber, an entrance apparatus and a presentation apparatus. The terminal edge of the optical fiber at the entrance is flat, while the terminal edge on the presentation apparatus is a sphere of 60 mm in diameter. The subjects wore contact lenses with +20, +22, or +25 magnification to focus on the stimulus, and the visual field eccentricity angle could reach 60 degrees . The signal to noise ratio valuation experiment was performed to evaluate the clarity and quality of the MRI picture image. Checkerboard and random dot stimuli were used to prove that this system could be applied to retinotopic mapping by fMRI. RESULTS: The results of the experiment demonstrated that the system is safe in the MRI environment with minimal distortion and can be used for visual retinotopic mapping studies. Wide-field mapping areas (V6, MST) were found in the human visual cortex. Compared with previous studies, the V1 and MT+ surface area approaches but does not fully cover the anatomical area. Nonetheless, the area achieved using the new system is larger than those achievable in previous fMRI studies. CONCLUSION: We developed a versatile, low-cost system for presenting wide-view visual stimuli in the MRI environment. The fMRI retinotopic mapping results proved the viability of this system.
机译:目的:开发和验证新颖的宽视视觉呈现系统的功能,其具有60度的水平和垂直偏心角,用于通过功能MRI(FMRI)视网膜运动映射。材料和方法:宽视呈现系统由直径52毫米直径的光纤,入口装置和呈现装置组成。入口处的光纤的端子边缘平坦,而呈现装置上的端子边缘的直径为60mm。受试者穿着+20,+22或+25放大率的隐形眼镜,以聚焦在刺激上,视野偏心角可以达到60度。对噪声比值估值实验进行了信号以评估MRI图像图像的清晰度和质量。棋盘和随机点刺激用于证明该系统可以应用于FMRI的视网膜运动映射。结果:实验结果表明,该系统在MRI环境中是安全的,具有最小的变形,可用于视觉视网膜运动映射研究。在人类视觉皮层中发现了宽场映射区域(V6,MST)。与先前的研究相比,V1和MT +表面积接近但不完全覆盖解剖区域。尽管如此,使用新系统实现的区域大于以前的FMRI研究中可实现的区域。结论:开发了一种多功能,低成本的系统,用于在MRI环境中呈现广阔的视觉刺激。 FMRI视别映射结果证明了该系统的可行性。

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