Literature DB >> 26666840

Intracranial pressure, its components and cerebrospinal fluid pressure-volume compensation.

M Kasprowicz1, D A Lalou2, M Czosnyka3,4, M Garnett5, Z Czosnyka3.   

Abstract

Clinical measurement of intracranial pressure (ICP) is often performed to aid diagnosis of hydrocephalus. This review discusses analysis of ICP and its components' for the investigation of cerebrospinal fluid (CSF) dynamics. The role of pulse, slow and respiratory waveforms of ICP in diagnosis, prognostication and management of hydrocephalus is presented. Two methods related to ICP measurement are listed: an overnight monitoring of ICP and a constant-rate infusion study. Due to the dynamic nature of ICP, a 'snapshot' manometric measurement of ICP is of limited use as it might lead to unreliable results. Therefore, monitoring of ICP over longer time combined with analysis of its waveforms provides more detailed information on the state of pressure-volume compensation. The infusion study implements ICP signal processing and CSF circulation model analysis in order to assess the cerebrospinal dynamics variables, such as CSF outflow resistance, compliance of CSF space, pressure amplitude, reference pressure, and CSF formation. These parameters act as an aid tool in diagnosis and prognostication of hydrocephalus and can be helpful in the assessment of a shunt malfunction.
© 2015 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  cerebrospinal fluid dynamics; constant-rate infusion test; intracranial pressure; overnight monitoring

Mesh:

Year:  2015        PMID: 26666840     DOI: 10.1111/ane.12541

Source DB:  PubMed          Journal:  Acta Neurol Scand        ISSN: 0001-6314            Impact factor:   3.209


  10 in total

1.  Adverse event following live attenuated chikungunya vaccine in a cynomolgus macaque with pre-existing chronic hydrocephalus.

Authors:  Tiffany A Peterson; Andrew G MacLean; Kasi E Russell-Lodrigue; Peter J Didier; Scott C Weaver; Chad J Roy
Journal:  J Med Primatol       Date:  2019-04-03       Impact factor: 0.667

2.  Cerebrospinal fluid dynamics in pediatric pseudotumor cerebri syndrome.

Authors:  Afroditi-Despina Lalou; James S McTaggart; Zofia H Czosnyka; Matthew R Garnett; Deepa Krishnakumar; Marek Czosnyka
Journal:  Childs Nerv Syst       Date:  2019-07-19       Impact factor: 1.475

3.  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

Review 4.  Intracranial Pressure Monitoring-Review and Avenues for Development.

Authors:  Maya Harary; Rianne G F Dolmans; William B Gormley
Journal:  Sensors (Basel)       Date:  2018-02-05       Impact factor: 3.576

5.  Noninvasive real-time assessment of intracranial pressure after traumatic brain injury based on electromagnetic coupling phase sensing technology.

Authors:  Gen Li; Wang Li; Jingbo Chen; Shuanglin Zhao; Zelin Bai; Qi Liu; Qi Liao; Minglian He; Wei Zhuang; Mingsheng Chen; Jian Sun; Yujie Chen
Journal:  BMC Neurol       Date:  2021-01-18       Impact factor: 2.474

6.  Variations in the cerebrospinal fluid dynamics of the American alligator (Alligator mississippiensis).

Authors:  Bruce A Young; James Adams; Jonathan M Beary; Kent-Andre Mardal; Robert Schneider; Tatyana Kondrashova
Journal:  Fluids Barriers CNS       Date:  2021-03-12

Review 7.  Cerebrospinal fluid dynamics in idiopathic intracranial hypertension: a literature review and validation of contemporary findings.

Authors:  Aku L Kaipainen; Erik Martoma; Tero Puustinen; Joona Tervonen; Henna-Kaisa Jyrkkänen; Jussi J Paterno; Anna Kotkansalo; Susanna Rantala; Ulla Vanhanen; Ville Leinonen; Soili M Lehto; Matti Iso-Mustajärvi; Antti-Pekka Elomaa; Sara Qvarlander; Terhi J Huuskonen
Journal:  Acta Neurochir (Wien)       Date:  2021-08-27       Impact factor: 2.216

8.  Influence of interaction of cerebral fluids on ventricular deformation: A mathematical approach.

Authors:  Galina Valova; Olga Bogomyakova; Andrey Tulupov; Alexander Cherevko
Journal:  PLoS One       Date:  2022-02-28       Impact factor: 3.240

9.  Cerebrospinal fluid dynamics in non-acute post-traumatic ventriculomegaly.

Authors:  Afroditi D Lalou; Virginia Levrini; Marek Czosnyka; Laurent Gergelé; Matthew Garnett; Angelos Kolias; Peter J Hutchinson; Zofia Czosnyka
Journal:  Fluids Barriers CNS       Date:  2020-03-30

10.  Waveform Morphology as a Surrogate for ICP Monitoring: A Comparison Between an Invasive and a Noninvasive Method.

Authors:  Fabiano Moulin de Moraes; Eva Rocha; Felipe Chaves Duarte Barros; Flávio Geraldo Rezende Freitas; Maramelia Miranda; Raul Alberto Valiente; João Brainer Clares de Andrade; Feres Eduardo Aparecido Chaddad Neto; Gisele Sampaio Silva
Journal:  Neurocrit Care       Date:  2022-03-24       Impact factor: 3.532

  10 in total

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