Puti Wen
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View article: Single-Trial fMRI Decoding of 3D Motion with Stereoscopic and Perspective Cues
Single-Trial fMRI Decoding of 3D Motion with Stereoscopic and Perspective Cues Open
How does the brain process 3D motion? We focused on the human motion complex (hMT+), extending insights from monkey studies. Using 3D-motion stimuli containing perspective and/or stereoscopic cues, we investigated the hierarchy within the …
View article: Functional localization of visual motion area FST in humans
Functional localization of visual motion area FST in humans Open
The fundus of the superior temporal sulcus (FST) in macaque monkeys is implicated in the processing of complex motion signals, yet a human homolog remains elusive. To better understand the neural mechanisms underlying the analysis of compl…
View article: Functional localization of visual motion area FST in humans
Functional localization of visual motion area FST in humans Open
The fundus of the superior temporal sulcus (FST) in macaques is implicated in the processing of complex motion signals, yet a human homolog remains elusive. Here we considered potential localizers and evaluated their effectiveness in delin…
View article: Single-trial fMRI decoding of 3D motion based on stereoscopic and perspective cues
Single-trial fMRI decoding of 3D motion based on stereoscopic and perspective cues Open
The visual system exploits multiple cues to estimate 3D motion, including binocular motion cues (changing disparity and inter-ocular velocity differences) as well as monocular perspective cues (looming and optic flow). We sought to underst…
View article: Decoding of binocular motion extends the hierarchy of motion processing in the human brain
Decoding of binocular motion extends the hierarchy of motion processing in the human brain Open
We live in a 3-dimensional world and motion perception plays a critical role in organisms’ survival. Past neuroimaging studies have shown that motion direction can be reliably decoded from BOLD activity within the motion processing pathway…
View article: Identifying cortical areas that underlie the transformation from retinal to world motion signals
Identifying cortical areas that underlie the transformation from retinal to world motion signals Open
Accurate motion perception requires that the visual system integrate the retinal motion signals received by the two eyes into a single representation of 3D (i.e., world) motion. However, most experimental paradigms limit the motion stimuli…
View article: Judging Relative Onsets and Offsets of Audiovisual Events
Judging Relative Onsets and Offsets of Audiovisual Events Open
This study assesses the fidelity with which people can make temporal order judgments (TOJ) between auditory and visual onsets and offsets. Using an adaptive staircase task administered to a large sample of young adults, we find that the ab…