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Comparing different stimulus configurations for population receptive field mapping in human fMRI

机译:比较人类fMRI中用于人口感受野作图的不同刺激配置

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Population receptive field (pRF) mapping is a widely used approach to measuring aggregate human visual receptive field properties by recording non-invasive signals using functional MRI. Despite growing interest, no study to date has systematically investigated the effects of different stimulus configurations on pRF estimates from human visual cortex. Here we compared the effects of three different stimulus configurations on a model-based approach to pRF estimation: size-invariant bars and eccentricity-scaled bars defined in Cartesian coordinates and traveling along the cardinal axes, and a novel simultaneous “wedge and ring” stimulus defined in polar coordinates, systematically covering polar and eccentricity axes. We found that the presence or absence of eccentricity scaling had a significant effect on goodness of fit and pRF size estimates. Further, variability in pRF size estimates was directly influenced by stimulus configuration, particularly for higher visual areas including V5/MT+. Finally, we compared eccentricity estimation between phase-encoded and model-based pRF approaches. We observed a tendency for more peripheral eccentricity estimates using phase-encoded methods, independent of stimulus size. We conclude that both eccentricity scaling and polar rather than Cartesian stimulus configuration are important considerations for optimal experimental design in pRF mapping. While all stimulus configurations produce adequate estimates, simultaneous wedge and ring stimulation produced higher fit reliability, with a significant advantage in reduced acquisition time.
机译:人口感受野(pRF)映射是通过使用功能性MRI记录非侵入性信号来测量总体人类视觉感受野属性的一种广泛使用的方法。尽管人们的兴趣日益浓厚,但迄今为止,尚无研究系统地研究不同刺激配置对人类视觉皮层pRF估计值的影响。在这里,我们比较了三种不同刺激配置对基于模型的pRF估计方法的影响:在笛卡尔坐标中定义并沿基轴行进的尺寸不变的条形和偏心缩放的条形,以及新颖的同时“楔形和环形”刺激以极坐标定义,系统地覆盖极轴和偏心轴。我们发现是否存在偏心缩放对拟合优度和pRF大小估计值有显着影响。此外,pRF大小估计的可变性直接受到刺激配置的影响,特别是对于包括V5 / MT +在内的较高视觉区域。最后,我们比较了相位编码和基于模型的pRF方法之间的偏心率估计。我们观察到了使用相位编码方法进行更多外围偏心率估计的趋势,而与刺激大小无关。我们得出的结论是,偏心缩放和极性而非笛卡尔刺激配置都是pRF映射中最佳实验设计的重要考虑因素。尽管所有刺激配置都能产生足够的估计值,但同时进行的楔形和环形刺激也会产生更高的拟合可靠性,并且在减少采集时间方面具有明显优势。

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