prof. dr. Frank Dewaele
- Work address
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C. Heymanslaan 10, ingang 46 - verdieping 4
9000 Gent - FRANK.DEWAELE@UGent.be
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- Journal Article
- A1
- open access
Computational fluid dynamics model to predict the dynamical behavior of the cerebrospinal fluid through implementation of physiological boundary conditions
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Impact of physiologically inspired boundary conditions on fluid pressure and flow in a computational fluid dynamics model of the cerebrospinal fluid
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- Conference Paper
- C3
- open access
Implementing physiological processes in computational fluid dynamics models of the cerebrospinal fluid
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- Journal Article
- A1
- open access
Neurophysiological investigations of drug resistant epilepsy patients treated with vagus nerve stimulation to differentiate responders from non-responders
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A novel hybrid 3D endoscope zooming and repositioning system : design and feasibility study
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Laryngeal muscle-evoked potentials as an indicator of vagus nerve activation
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VNS responders have a significant higher amount of deep sleep : the Adenosine hypothesis
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A new dynamic model for in vitro evaluation of intravascular devices
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Is the human brain capable of controlling seven degrees of freedom?
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Articulated instruments and 3D visualization : a synergy? : evaluation of execution time, errors, and visual fatigue