Increased Intracranial Pressure Attenuates the Pulsating Component of Cerebral Venous Outflow
Author:
Funder
Region Skåne
Publisher
Springer Science and Business Media LLC
Subject
Critical Care and Intensive Care Medicine,Clinical Neurology
Link
http://link.springer.com/content/pdf/10.1007/s12028-019-00733-4.pdf
Reference31 articles.
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2. Alperin N, Lee S, Loth F, Raksin P, Lichtor T. MR-Intracranial pressure (ICP) a method to measure intracranial elastance and pressure noninvasively by means of MR imaging: baboon and human study. Radiology. 2000;217:877–85.
3. Balédent O, Henry-Feugeas M, Idy-Peretti I. Cerebrospinal fluid dynamics and relation with blood flow: a magnetic resonance study with semiautomated cerebrospinal fluid segmentation. Investig Radiol. 2001;36:368–77.
4. Laganà M, Shepherd S, Cecconi P, Beggs C. Intracranial volumetric changes govern cerebrospinal fluid flow in the Aqueduct of Sylvius in healthy adults. Biomed Signal Process Control. 2017;36:84–92.
5. Unnerbäck M, Ottesen J, Reinstrup P. ICP curve morphology and intracranial flow-volume changes: a simultaneous ICP and cine phase contrast MRI study in humans. Acta Neurochir (Wien). 2018;160:219–24.
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