Purpose: Oxygen-17 (17O) MRS imaging, successfully used in the brain, is extended by imaging the oxygen metabolic rate in the resting skeletal muscle and used to determine the total whole-body oxygen metabolic rate in the rat. Methods: During and after inhalations of 17O2 gas, dynamic 17O MRSI was performed in rats (n = 8) ventilated with N2O or N2 at 16.4 T. Time courses of the H217O concentration from regions of interest located in brain and muscle tissue were examined and used to fit an animal-adapted 3-phase metabolic model of oxygen consumption. CBF was determined with an independent washout method. Finally, body oxygen metabolic rate was calculated using a global steady-state approach. Results: Cerebral metabolic rate of oxygen consum...
We have observed the first directly measured CMRO2 changes in rats by peripheral somatosensory stimu...
This article provides a comprehensive overview of oxygen (17O) magnetic resonance spectroscopy and i...
dissertationIn vivo nuclear magnetic resonance (NMR) was employed to study cerebral energy metabolis...
Purpose: Oxygen-17 (17 O) MRS imaging, successfully used in the brain, is extended by imaging the ox...
In this study, we exploit the feasibility of the 17O MRSI technique for simultaneous measurement of ...
PURPOSE: Measurement of the cerebral metabolic rate of oxygen (CMRO2 ) by means of direct imaging of...
The direct NMR detection of 17O benefits particularly from higher field strengths and is a promising...
Purpose: Measurement of the cerebral metabolic rate of oxygen (CMRO2) by means of direct imaging of...
Despite the importance of oxygen metabolism in health and disease, there are currently no clinically...
In vivo 17O MRS imaging (MRSI) approach at high/ultra-high field has been established for non-invasi...
17O magnetic resonance imaging (MRI) using a conventional pulse sequence was explored as a method of...
The measurement of cerebral metabolic rate of oxygen (CMRO2) via direct NMR detection of the stable ...
The cerebral metabolic rate of oxygen of small animals can be reliably imaged using the in vivo 17O ...
Introduction: Oxygen consumption rate and blood flow are important parameters for the physiological ...
17O, a stable isotope of oxygen with a spin of 5/2, is utilized as a 1H-MRI contrast agent for measu...
We have observed the first directly measured CMRO2 changes in rats by peripheral somatosensory stimu...
This article provides a comprehensive overview of oxygen (17O) magnetic resonance spectroscopy and i...
dissertationIn vivo nuclear magnetic resonance (NMR) was employed to study cerebral energy metabolis...
Purpose: Oxygen-17 (17 O) MRS imaging, successfully used in the brain, is extended by imaging the ox...
In this study, we exploit the feasibility of the 17O MRSI technique for simultaneous measurement of ...
PURPOSE: Measurement of the cerebral metabolic rate of oxygen (CMRO2 ) by means of direct imaging of...
The direct NMR detection of 17O benefits particularly from higher field strengths and is a promising...
Purpose: Measurement of the cerebral metabolic rate of oxygen (CMRO2) by means of direct imaging of...
Despite the importance of oxygen metabolism in health and disease, there are currently no clinically...
In vivo 17O MRS imaging (MRSI) approach at high/ultra-high field has been established for non-invasi...
17O magnetic resonance imaging (MRI) using a conventional pulse sequence was explored as a method of...
The measurement of cerebral metabolic rate of oxygen (CMRO2) via direct NMR detection of the stable ...
The cerebral metabolic rate of oxygen of small animals can be reliably imaged using the in vivo 17O ...
Introduction: Oxygen consumption rate and blood flow are important parameters for the physiological ...
17O, a stable isotope of oxygen with a spin of 5/2, is utilized as a 1H-MRI contrast agent for measu...
We have observed the first directly measured CMRO2 changes in rats by peripheral somatosensory stimu...
This article provides a comprehensive overview of oxygen (17O) magnetic resonance spectroscopy and i...
dissertationIn vivo nuclear magnetic resonance (NMR) was employed to study cerebral energy metabolis...