Oxygen‐enhanced MRI of the brain
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Summary
Evaluation techniques for BOLD contrast MRI examinations using a hyperoxia challenge proved its applicability to small SI changes induced by pure oxygen, and can readily be used for similar experiments with other gases.
- Type
- article
- Published
- 2002-08-01
- Cited by
- 61
- References
- 30
- OpenAlex
- https://openalex.org/W12210935
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1375004
Keywords
Moment (physics), Center (category theory), Computer science, Mathematics, Physics
References
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- Changes in T2*‐Weighted Images During Hyperoxia Differentiate Tumors from Normal Tissue
- The response of human tumors to carbogen breathing, monitored by Gradient-Recalled Echo Magnetic Resonance Imaging.
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- MR studies of retinal oxygenation.
- Noninvasive evaluation of intrarenal oxygenation with BOLD MRI.
- Brain magnetic resonance imaging with contrast dependent on blood oxygenation.
- Quantitative Mapping of Ocular Oxygenation Using Magnetic Resonance Imaging
- Processing strategies for time‐course data sets in functional mri of the human brain
- Noninvasive assessment of regional ventilation in the human lung using oxygen–enhanced magnetic resonance imaging
- Artifacts due to stimulus correlated motion in functional imaging of the brain
Cited by
- Effects of hypercapnia, hypocapnia, and hyperoxemia on blood oxygenation level-dependent signal intensity determined by use of susceptibility-weighted magnetic resonance imaging in isoflurane-anesthetized dogs.
- The regional cerebral metabolic rate of oxygen consumption with proton detected 17O MRI during precision 17O2 inhalation
- Assessment of placental and fetal oxygenation in normal and abnormal pregnancy using magnetic resonance imaging
- Quantitative T2, T2*, and T2′ MR imaging in patients with ischemic leukoaraiosis might detect microstructural changes and cortical hypoxia
- Quantification of the BOLD Response via Blood Gas Modulations
- Imaging Alzheimer’s disease
- Manipulation of cortical gray matter oxygenation by hyperoxic respiratory challenge: field dependence of R2* and MR signal response
- R1 and R2* changes in the human placenta in response to maternal oxygen challenge
- T2′‐ and PASL‐based perfusion mapping at 3 Tesla: influence of oxygen‐ventilation on cerebral autoregulation
- Hemodynamic Response Imaging: A Potential Tool for the Assessment of Angiogenesis in Brain Tumors
- Comparison of the effects of independently‐controlled end‐tidal PCO2 and PO2 on blood oxygen level–dependent (BOLD) MRI
- Dynamic Oxygen-Enhanced MRI of Cerebrospinal Fluid
- Investigation of the influence of carbon dioxide concentrations on cerebral physiology by susceptibility-weighted magnetic resonance imaging (SWI)
- Improved fMRI calibration: Precisely controlled hyperoxic versus hypercapnic stimuli
- Comparing oxygen-sensitive MRI (BOLD R2*) with oxygen electrode measurements: A pilot study in men with prostate cancer
- Age-Related Changes of Cerebral Autoregulation: New Insights with Quantitative T2′-Mapping and Pulsed Arterial Spin-Labeling MR Imaging
- Magnetic resonance imaging of vascular oxygenation changes during hyperoxia and carbogen challenges in the human retina.
- Using R2* values to evaluate brain tumours on magnetic resonance imaging: Preliminary results
- In Vivo Quantification of Cerebral R2*-Response to Graded Hyperoxia at 3 Tesla
- Global Cerebral Oxidative Metabolism during Hypercapnia and Hypocapnia in Humans: Implications for BOLD fMRI
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