TY - JOUR
T1 - High-Resolution fMRI Reveals Laminar Differences in Neurovascular Coupling between Positive and Negative BOLD Responses
AU - Goense, Jozien
AU - Merkle, Hellmut
AU - Logothetis, Nikos K.
N1 - We are grateful to Dr. Daniel Gembris and Dr. Franek Hennel from Bruker BioSpin GmbH for the sequence to simultaneously measure the BOLD, CBF, and VASO signals and Dr. Mark Augath for technical support. Dr. Kevin Whittingstall provided comments on earlier versions of the manuscript. We also thank the reviewers for their suggestions. The research was supported by the Max-Planck Society and in part by the Intramural Program of the National Institutes of Health, National Institute of Neurological Disorders and Stroke, Bethesda, MD, USA (to H.M.).
PY - 2012/11/8
Y1 - 2012/11/8
N2 - The six cortical layers have distinct anatomical and physiological properties, like different energy use and different feedforward and feedback connectivity. It is not known if and how layer-specific neural processes are reflected in the fMRI signal. To address this question we used high-resolution fMRI to measure BOLD, CBV, and CBF responses to stimuli that elicit positive and negative BOLD signals in macaque primary visual cortex. We found that regions with positive BOLD responses had parallel increases in CBV and CBF, whereas areas with negative BOLD responses showed a decrease in CBF but an increase in CBV. For positive BOLD responses, CBF and CBV increased in the center of the cortex, but for negative BOLD responses, CBF decreased superficially while CBV increased in the center. Our findings suggest different mechanisms for neurovascular coupling for BOLD increases and decreases, as well as laminar differences in neurovascular coupling.
AB - The six cortical layers have distinct anatomical and physiological properties, like different energy use and different feedforward and feedback connectivity. It is not known if and how layer-specific neural processes are reflected in the fMRI signal. To address this question we used high-resolution fMRI to measure BOLD, CBV, and CBF responses to stimuli that elicit positive and negative BOLD signals in macaque primary visual cortex. We found that regions with positive BOLD responses had parallel increases in CBV and CBF, whereas areas with negative BOLD responses showed a decrease in CBF but an increase in CBV. For positive BOLD responses, CBF and CBV increased in the center of the cortex, but for negative BOLD responses, CBF decreased superficially while CBV increased in the center. Our findings suggest different mechanisms for neurovascular coupling for BOLD increases and decreases, as well as laminar differences in neurovascular coupling.
UR - https://www.scopus.com/pages/publications/84868651500
UR - https://www.scopus.com/pages/publications/84868651500#tab=citedBy
U2 - 10.1016/j.neuron.2012.09.019
DO - 10.1016/j.neuron.2012.09.019
M3 - Article
C2 - 23141073
AN - SCOPUS:84868651500
SN - 0896-6273
VL - 76
SP - 629
EP - 639
JO - Neuron
JF - Neuron
IS - 3
ER -