Literature DB >> 632857

A nonlinear analysis of the cerebrospinal fluid system and intracranial pressure dynamics.

A Marmarou, K Shulman, R M Rosende.   

Abstract

A mathematical model of the cerebrospinal fluid (CSF) system was developed to help clarify the kinetics of the intracranial pressure (ICP). A general equation predicting the time course of pressure was derived in terms of four parameters: the intracranial compliance, dural sinus pressure, resistance to absorption, and CSF formation. These parameters were measured in the adult cat, and the equation was tested by comparing experimental and calculated values of the time course of pressure in response to volume changes. The theoretical and experimental results were in close agreement, and the role of each parameter in governing the dynamic equilibrium of the ICP was determined. From this analysis, dynamic tests were developed for rapid measurement of CSF formation, absorption resistance, and the bulk intracranial compliance. These techniques are applicable to clinical settings, providing data that are useful in characterizing the physiological mechanisms responsible for raised ICP and assessing changes induced by therapy.

Mesh:

Year:  1978        PMID: 632857     DOI: 10.3171/jns.1978.48.3.0332

Source DB:  PubMed          Journal:  J Neurosurg        ISSN: 0022-3085            Impact factor:   5.115


  94 in total

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2.  Intracranial cerebrospinal fluid measurement studies in suspected idiopathic normal pressure hydrocephalus, secondary normal pressure hydrocephalus, and brain atrophy.

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Journal:  J Neurol Neurosurg Psychiatry       Date:  2002-11       Impact factor: 10.154

Review 3.  Analysis of intracranial pressure.

Authors:  D J Doyle; P W Mark
Journal:  J Clin Monit       Date:  1992-01

4.  A substance P antagonist improves outcome in female Sprague Dawley rats following diffuse traumatic brain injury.

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5.  Assessment of craniospinal pressure-volume indices.

Authors:  A Wåhlin; K Ambarki; R Birgander; N Alperin; J Malm; A Eklund
Journal:  AJNR Am J Neuroradiol       Date:  2010-07-01       Impact factor: 3.825

6.  Experimental intracerebral haemorrhage in normotensive and spontaneously hypertensive rats.

Authors:  J M González-Darder; J Durán-Cabral
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7.  Reappraisal of the intracranial pressure and cerebrospinal fluid dynamics in patients with the so-called "normal pressure hydrocephalus" syndrome.

Authors:  J Sahuquillo; E Rubio; A Codina; A Molins; J M Guitart; M A Poca; A Chasampi
Journal:  Acta Neurochir (Wien)       Date:  1991       Impact factor: 2.216

8.  A mathematical model of blood, cerebrospinal fluid and brain dynamics.

Authors:  Andreas A Linninger; Michalis Xenos; Brian Sweetman; Sukruti Ponkshe; Xiaodong Guo; Richard Penn
Journal:  J Math Biol       Date:  2009-02-15       Impact factor: 2.259

9.  Value of computerized shunt infusion study in assessment of pediatric hydrocephalus shunt function-a two center cross-sectional study.

Authors:  Sandra Fernandes Dias; Afroditi-Despina Lalou; Regine Spang; Karin Haas-Lude; Matthew Garnett; Helen Fernandez; Marek Czosnyka; Martin U Schuhmann; Zofia Czosnyka
Journal:  Childs Nerv Syst       Date:  2019-08-01       Impact factor: 1.475

10.  Identification of the cerebrospinal compensatory mechanisms via computer-controlled drainage of the cerebrospinal fluid.

Authors:  P Smielewski; M Czosnyka; M Roszkowski; A Walencik
Journal:  Childs Nerv Syst       Date:  1995-05       Impact factor: 1.475

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