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      Functional MRI during Hyperbaric Oxygen: Effects of Oxygen on Neurovascular Coupling and BOLD fMRI signals

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          Abstract

          Hyperbaric oxygen (HBO) therapy is used to treat a number of ailments. Improved understanding of how HBO affects neuronal activity, cerebral blood flow (CBF) and blood-oxygenation-level dependent (BOLD) changes could shed light on the role of oxygen in neurovascular coupling and help guide HBO treatments. The goal of this study was to test two hypotheses: i) activation-induced CBF fMRI response is not dependent on hemoglobin deoxygenation, and ii) activation-induced BOLD fMRI is markedly attenuated under HBO. CBF and BOLD fMRI of forepaw stimulation in anesthetized rats under HBO at 3 atmospheres absolute (ATA) was compared with normobaric air. Robust BOLD and CBF fMRI were detected under HBO. Inflow effects and spin-density changes did not contribute significantly to the BOLD fMRI signal under HBO. Analysis of the T 2 *-weighted signal at normobaric air and 1, 2 and 3ATA oxygen in the tissue and the superior sagittal sinus showed a strong dependence on increasing inhaled [O 2]. Spontaneous electrophysiological activity and evoked local-field potentials were reduced under HBO. The differences between normobaric air and HBO in basal and evoked electrical activity could not fully account for the strong BOLD responses under HBO. We concluded that activation-induced CBF regulation in the brain does not operate through an oxygen-sensing mechanism and that stimulus-evoked BOLD responses and the venous T 2 *-weighted signals still have room to increase under 3ATA HBO. To our knowledge, this is the first fMRI study under HBO, providing insights into the effects of HBO on neural activity, neurovascular coupling, tissue oxygenation, and the BOLD signal.

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          Author and article information

          Journal
          9215515
          20498
          Neuroimage
          Neuroimage
          NeuroImage
          1053-8119
          1095-9572
          21 July 2015
          02 July 2015
          1 October 2015
          01 October 2016
          : 119
          : 382-389
          Affiliations
          [1 ]Graduate School of Biomedical Engineering, University of Texas at San Antonio, San Antonio, TX
          [2 ]Department of Ophthalmology, University of Texas Health Science Center, San Antonio, TX
          [3 ]Research Imaging Institute, University of Texas Health Science Center, San Antonio, TX
          [4 ]Department of Pharmaology, University of Texas Health Science Center, San Antonio, TX
          [5 ]South Texas Veterans Health Care System, Department of Veterans Affairs, San Antonio, TX
          Author notes
          Correspondence: Timothy Duong, PhD, Research Imaging Institute, University of Texas Health Science Center, 8403 Floyd Curl Dr, San Antonio, TX 78229, duongt@ 123456uthscsa.edu , Tel 210 567 8100, Fax 210 567 8152

          DPC and ERM contributed equally to this work.

          Article
          PMC4564303 PMC4564303 4564303 nihpa706867
          10.1016/j.neuroimage.2015.06.082
          4564303
          26143203
          3f2b5ca5-d873-4cbd-8ae7-1609766ab8d6
          History
          Categories
          Article

          oxygen therapy,BOLD,magnetic susceptibility,forepaw stimulation,CBF

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