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Revision as of 12:50, 20 July 2011 by Bryn (talk | contribs) (External links)
in silico, in vivo, and in vitro CSF experiments. Laser Doppler vibrometry surface motion analysis of an in vitro spinal cord model (left), in vivo MR pulse wave velocity measurement in the spinal canal (center), and an in vitro cerebrospinal fluid system model (right).

Welcome

The Neurohydrodynamics and Medical Technology Lab (NMTL) is led by Dr. Bryn Martin in conjunction with the Laboratory of Hemodynamics and Cardiovascular Technology at the Swiss Federal Institute of Technology (EPFL). We investigate the pathophysiology of craniospinal and cerebrovascular disorders from a hydrodynamic and biomechanical perspective and develop related medical technologies.

The purpose of neurohydrodynamics.com is to:

  1. foster collaboration and discussion between medical doctors and engineers
  2. provide in vivo and in vitro experimental data for improving modeling capabilities
  3. increase interest in heurohydrodynamic disorder research

Key words: Neurohydrodynamics, cerebrospinal fluid, craniospinal disorders, chiari malformation, syringomyelia, hydrocephalus, spinal drug delivery, spinal cord blood flow, cerebral blood flow, cerebral autoregulation, sleep disorders, sleep apnea, continuous positive airway pressure, computational fluid dynamics, 4DMRI, neuroengineering, neuroscience, biofluid mechanics, neuroscience, neuroengineering, medical technology, neuromonitoring.

Please click on the following link for background information on neurohydrodynamics.

Take a moment to visit the NMTL Youtube channel to see some videos of our work [1].

Projects


References

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