Stimulus-dependent BOLD and perfusion dynamics in human V1

RD Hoge, J Atkinson, B Gill, GR Crelier, S Marrett… - Neuroimage, 1999 - Elsevier
Blood oxygenation level-dependent (BOLD) fMRI signals often exhibit pronounced over-or
undershoot upon changes in stimulation state. Current models postulate that this is due to …

[PDF][PDF] Stimulus-Dependent BOLD and Perfusion Dynamics in Human V1

RD Hoge, J Atkinson, B Gill, GR Crelier, S Marrett… - NeuroImage, 1999 - academia.edu
Sensitivity to blood oxygenation arises in T* 2-weighted MR images of the brain because the
local image intensity is generally subject to some degree of attenuation caused by …

[引用][C] Stimulus-Dependent BOLD and Perfusion Dynamics in Human V1

H RD - Neuroimage, 1999 - cir.nii.ac.jp
Stimulus-Dependent BOLD and Perfusion Dynamics in Human V1 | CiNii Research CiNii 国立
情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ移動 検索フォームへ移動 論文・データをさがす …

Stimulus-dependent BOLD and perfusion dynamics in human V1.

RD Hoge, J Atkinson, B Gill, GR Crelier, S Marrett… - Neuroimage, 1999 - europepmc.org
Blood oxygenation level-dependent (BOLD) fMRI signals often exhibit pronounced over-or
undershoot upon changes in stimulation state. Current models postulate that this is due to …

Stimulus-Dependent BOLD and Perfusion Dynamics in Human V1

RD Hoge, J Atkinson, B Gill, GR Crelier, S Marrett… - NeuroImage, 1999 - infona.pl
Blood oxygenation level-dependent (BOLD) fMRI signals often exhibit pronounced over-or
undershoot upon changes in stimulation state. Current models postulate that this is due to …

Stimulus-dependent BOLD and perfusion dynamics in human V1

RD Hoge, J Atkinson, B Gill, GR Crelier… - …, 1999 - pubmed.ncbi.nlm.nih.gov
Blood oxygenation level-dependent (BOLD) fMRI signals often exhibit pronounced over-or
undershoot upon changes in stimulation state. Current models postulate that this is due to …

[PDF][PDF] Stimulus-Dependent BOLD and Perfusion Dynamics in Human V1

RD Hoge, J Atkinson, B Gill, GR Crelier, S Marrett… - …, 1999 - scholar.archive.org
Sensitivity to blood oxygenation arises in T* 2-weighted MR images of the brain because the
local image intensity is generally subject to some degree of attenuation caused by …

[PDF][PDF] Stimulus-Dependent BOLD and Perfusion Dynamics in Human V1

RD Hoge, J Atkinson, B Gill, GR Crelier, S Marrett… - NeuroImage, 1999 - Citeseer
Sensitivity to blood oxygenation arises in T* 2-weighted MR images of the brain because the
local image intensity is generally subject to some degree of attenuation caused by …

[PDF][PDF] Stimulus-Dependent BOLD and Perfusion Dynamics in Human V1

RD Hoge, J Atkinson, B Gill, GR Crelier, S Marrett… - …, 1999 - scholar.archive.org
Sensitivity to blood oxygenation arises in T* 2-weighted MR images of the brain because the
local image intensity is generally subject to some degree of attenuation caused by …