The growing popularity of MRI in clinical settings and the innovative applications in e.g. MRI guided surgery has resulted in more frequent, longer and higher levels of exposure to the stray magnetic fields for employees. Especially the use of stronger field strengths in MRI has been associated with unwanted sensory stimulation and difficulties in task performance. In experimental studies as described in this thesis we investigated the effects of exposure to MRI-related stray static magnetic fields (SMF) and movement-induced low-frequency time-varying magnetic fields (TVMF) on behavioral changes in cognitive functions and vestibular related functions of postural stability and oculomotor performance. In addition, possible underlying mechanis...
SummarySubjects of brain-imaging studies often report experiencing vertigo while in MRI machines; a ...
Goal: This paper reviews recent studies evaluating human subjects for physiologic or neuro-cognitive...
The MRI environment can stimulate the balance sensors within the inner ear. This is known as magneto...
The growing popularity of MRI in clinical settings and the innovative applications in e.g. MRI guide...
The growing popularity of MRI in clinical settings and the innovative applications in e.g. MRI guide...
OBJECTIVES: Movement in the magnetic fields around MRI systems showed acute negative effects on conc...
PURPOSE: This experimental study aims to separate neurocognitive effects resulting from exposure to ...
People working routinely with magnetic resonance imaging (MRI) systems report a number of symptoms r...
OBJECTIVE This study characterises neurocognitive domains that are affected by movement-induced time...
Subjects of brain-imaging studies often report experiencing vertigo while in MRI machines; a new stu...
Strong magnetic fields induce dizziness, vertigo, and nystagmus due to Lorentz forces acting on the ...
Purpose: To test for potential changes in higher-order cognitive processes related to the exposure t...
This review discusses the theory behind, and the experimental evidence for, the perception of vertig...
SummaryVertigo in and around magnetic resonance imaging (MRI) machines has been noted for years [1, ...
We assessed postural body sway performance after exposure to movement induced time-varying magnetic ...
SummarySubjects of brain-imaging studies often report experiencing vertigo while in MRI machines; a ...
Goal: This paper reviews recent studies evaluating human subjects for physiologic or neuro-cognitive...
The MRI environment can stimulate the balance sensors within the inner ear. This is known as magneto...
The growing popularity of MRI in clinical settings and the innovative applications in e.g. MRI guide...
The growing popularity of MRI in clinical settings and the innovative applications in e.g. MRI guide...
OBJECTIVES: Movement in the magnetic fields around MRI systems showed acute negative effects on conc...
PURPOSE: This experimental study aims to separate neurocognitive effects resulting from exposure to ...
People working routinely with magnetic resonance imaging (MRI) systems report a number of symptoms r...
OBJECTIVE This study characterises neurocognitive domains that are affected by movement-induced time...
Subjects of brain-imaging studies often report experiencing vertigo while in MRI machines; a new stu...
Strong magnetic fields induce dizziness, vertigo, and nystagmus due to Lorentz forces acting on the ...
Purpose: To test for potential changes in higher-order cognitive processes related to the exposure t...
This review discusses the theory behind, and the experimental evidence for, the perception of vertig...
SummaryVertigo in and around magnetic resonance imaging (MRI) machines has been noted for years [1, ...
We assessed postural body sway performance after exposure to movement induced time-varying magnetic ...
SummarySubjects of brain-imaging studies often report experiencing vertigo while in MRI machines; a ...
Goal: This paper reviews recent studies evaluating human subjects for physiologic or neuro-cognitive...
The MRI environment can stimulate the balance sensors within the inner ear. This is known as magneto...