论文标题
在视网膜映射中使用易耐受的Teichmuller地图优化视觉皮层参数化
Optimizing Visual Cortex Parameterization with Error-Tolerant Teichmuller Map in Retinotopic Mapping
论文作者
论文摘要
视网膜上的视觉输入到皮质表面(即视网膜映射)之间的映射是视觉科学和神经科学的重要主题。当受试者处于特定的视觉刺激下时,可以通过分析皮层功能磁共振成像(fMRI)信号来揭示人类视网膜映射。常规方法根据(部分)皮质表面的参数化处理,平滑和分析视网膜映射。但是,这种方法产生的视网膜图通常与神经心理学的结果相矛盾。为了解决此问题,我们提出了一种集成方法,该方法将皮质表面参数化,以便参数坐标线性地将视觉坐标相关联。提出的方法有助于平滑嘈杂的视网膜图,并在人类视力系统中获得神经生理学的见解。该方法的一个关键要素是容忍误差的Teichmuller图,该图将角度变形统一并最大化与自相矛盾的地标的比对。我们通过合成和实际的视网膜映射数据集验证了我们的整体方法。实验结果表明,所提出的方法在准确性和兼容性方面较高。尽管我们专注于视网膜映射,但提出的框架是一般的,可以应用于处理其他人类感觉图。
The mapping between the visual input on the retina to the cortical surface, i.e., retinotopic mapping, is an important topic in vision science and neuroscience. Human retinotopic mapping can be revealed by analyzing cortex functional magnetic resonance imaging (fMRI) signals when the subject is under specific visual stimuli. Conventional methods process, smooth, and analyze the retinotopic mapping based on the parametrization of the (partial) cortical surface. However, the retinotopic maps generated by this approach frequently contradict neuropsychology results. To address this problem, we propose an integrated approach that parameterizes the cortical surface, such that the parametric coordinates linearly relates the visual coordinate. The proposed method helps the smoothing of noisy retinotopic maps and obtains neurophysiological insights in human vision systems. One key element of the approach is the Error-Tolerant Teichmuller Map, which uniforms the angle distortion and maximizes the alignments to self-contradicting landmarks. We validated our overall approach with synthetic and real retinotopic mapping datasets. The experimental results show the proposed approach is superior in accuracy and compatibility. Although we focus on retinotopic mapping, the proposed framework is general and can be applied to process other human sensory maps.