Literature DB >> 27374728

Systematic variation of population receptive field properties across cortical depth in human visual cortex.

Alessio Fracasso1, Natalia Petridou2, Serge O Dumoulin3.   

Abstract

Receptive fields (RFs) in visual cortex are organized in antagonistic, center-surround, configurations. RF properties change systematically across eccentricity and between visual field maps. However, it is unknown how center-surround configurations are organized in human visual cortex across lamina. We use sub-millimeter resolution functional MRI at 7Tesla and population receptive field (pRF) modeling to investigate the pRF properties in primary visual cortex (V1) across cortical depth. pRF size varies according to a U-shaped function, indicating smaller pRF center size in the middle compared to superficial and deeper intra-cortical portions of V1, consistent with non-human primate neurophysiological measurements. Moreover, a similar U-shaped function is also observed for pRF surround size. However, pRF center-surround ratio remains constant across cortical depth. Simulations suggest that this pattern of results can be directly linked to the flow of signals across cortical depth, with the visual input reaching the middle of cortical depth and then spreading towards superficial and deeper layers of V1. Conversely, blood-oxygenation-level-dependent (BOLD) signal amplitude increases monotonically towards the pial surface, in line with the known vascular organization across cortical depth. Independent estimates of the haemodynamic response function (HRF) across cortical depth show that the center-surround pRF size estimates across cortical depth cannot be explained by variations in the full-width half maximum (FWHM) of the HRF.
Copyright © 2016 Elsevier Inc. All rights reserved.

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Year:  2016        PMID: 27374728     DOI: 10.1016/j.neuroimage.2016.06.048

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  17 in total

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Journal:  Neuroimage       Date:  2017-07-20       Impact factor: 6.556

2.  Entrainment of visual steady-state responses is modulated by global spatial statistics.

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5.  Non-neural factors influencing BOLD response magnitudes within individual subjects.

Authors:  Jan W Kurzawski; Omer Faruk Gulban; Keith Jamison; Jonathan Winawer; Kendrick Kay
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6.  Ultra-high-resolution fMRI of Human Ventral Temporal Cortex Reveals Differential Representation of Categories and Domains.

Authors:  Eshed Margalit; Keith W Jamison; Kevin S Weiner; Luca Vizioli; Ru-Yuan Zhang; Kendrick N Kay; Kalanit Grill-Spector
Journal:  J Neurosci       Date:  2020-02-24       Impact factor: 6.167

7.  High-Resolution CBV-fMRI Allows Mapping of Laminar Activity and Connectivity of Cortical Input and Output in Human M1.

Authors:  Laurentius Huber; Daniel A Handwerker; David C Jangraw; Gang Chen; Andrew Hall; Carsten Stüber; Javier Gonzalez-Castillo; Dimo Ivanov; Sean Marrett; Maria Guidi; Jozien Goense; Benedikt A Poser; Peter A Bandettini
Journal:  Neuron       Date:  2017-12-07       Impact factor: 17.173

8.  Point-spread function of the BOLD response across columns and cortical depth in human extra-striate cortex.

Authors:  Alessio Fracasso; Serge O Dumoulin; Natalia Petridou
Journal:  Prog Neurobiol       Date:  2021-03-16       Impact factor: 10.885

9.  High resolution data analysis strategies for mesoscale human functional MRI at 7 and 9.4T.

Authors:  Valentin G Kemper; Federico De Martino; Thomas C Emmerling; Essa Yacoub; Rainer Goebel
Journal:  Neuroimage       Date:  2017-04-14       Impact factor: 6.556

10.  A scalable method to improve gray matter segmentation at ultra high field MRI.

Authors:  Omer Faruk Gulban; Marian Schneider; Ingo Marquardt; Roy A M Haast; Federico De Martino
Journal:  PLoS One       Date:  2018-06-06       Impact factor: 3.240

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