Pathophysiology of primary spinal syringomyelia

John D. Heiss, Kendall Snyder, Matthew M. Peterson, Nicholas J. Patronas, John A. Butman, René Smith, Hetty L. DeVroom, Charles A. Sansur, Eric Eskioglu, William Kammerer,

Journal of Neurosurgery Spine · 2012 · 109 citations · 64 references

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Abstract

These findings are consistent with the theory that a spinal subarachnoid block increases spinal subarachnoid pulse pressure above the block, producing a pressure differential across the obstructed segment of the SAS, which results in syrinx formation and progression. These findings are similar to the results of the authors' previous studies that examined the pathophysiology of syringomyelia associated with obstruction of the SAS at the foramen magnum in the Chiari Type I malformation and indicate that a common mechanism, rather than different, separate mechanisms, underlies syrinx formation in these two entities. Clinical trial registration no.: NCT00011245.

References

64