Coimbra Institute for Biomedical Imaging and Translational Research (CIBIT), University of Coimbra, Coimbra, Portugal.
Institute of Nuclear Sciences Applied to Health (ICNAS), University of Coimbra, Coimbra, Portugal.
Hum Brain Mapp. 2021 Apr 15;42(6):1920-1929. doi: 10.1002/hbm.25339. Epub 2021 Feb 12.
Neuroimaging studies have suggested that hMT+ encodes global motion interpretation, but this contradicts the notion that BOLD activity mainly reflects neuronal input. While measuring fMRI responses at 7 Tesla, we used an ambiguous moving stimulus, yielding the perception of two incoherently moving surfaces-component motion-or only one coherently moving surface-pattern motion, to induce perceptual fluctuations and identify perceptual organization size-matched domains in hMT+. Then, moving gratings, exactly matching either the direction of component or pattern motion percepts of the ambiguous stimulus, were shown to the participants to investigate whether response properties reflect the input or decision. If hMT+ responses reflect the input, component motion domains (selective to incoherent percept) should show grating direction stimulus-dependent changes, unlike pattern motion domains (selective to the coherent percept). This hypothesis is based on the known direction-selective nature of inputs in component motion perceptual domains versus non-selectivity in pattern motion perceptual domains. The response amplitude of pattern motion domains did not change with grating direction (consistently with their non-selective input), in contrast to what happened for the component motion domains (consistently with their selective input). However, when we analyzed relative ratio measures they mirrored perceptual interpretation. These findings are consistent with the notion that patterns of BOLD responses reflect both sensory input and perceptual read-out.
神经影像学研究表明,hMT+ 编码了全局运动的解释,但这与 BOLD 活动主要反映神经元输入的观点相矛盾。在 7 特斯拉的 fMRI 响应测量中,我们使用了一个模糊的运动刺激,产生了两种不连贯运动的表面——成分运动,或只有一个连贯运动的表面——模式运动,以诱导感知波动,并在 hMT+ 中识别感知组织大小匹配的域。然后,向参与者展示与模糊刺激的成分或模式运动感知方向完全匹配的运动光栅,以研究响应特性是否反映输入或决策。如果 hMT+ 的响应反映输入,那么成分运动域(对不连贯感知具有选择性)应该显示出与光栅方向相关的刺激依赖性变化,而不是模式运动域(对连贯感知具有选择性)。这一假设基于成分运动感知域中输入的已知方向选择性与模式运动感知域中的非选择性。与成分运动域的情况一致(与它们的选择性输入一致),模式运动域的响应幅度没有随光栅方向的变化而变化(与其非选择性输入一致)。然而,当我们分析相对比测量时,它们反映了感知解释。这些发现与 BOLD 响应模式反映感觉输入和感知输出的观点一致。