Literature DB >> 6219190

A new method for measuring cerebrospinal fluid flow in shunts.

M Hara, C Kadowaki, Y Konishi, M Ogashiwa, M Numoto, K Takeuchi.   

Abstract

An implantable device for measurement of cerebrospinal fluid (CSF) flow in a ventriculoperitoneal shunt tube has been developed. The unit is energized by an extracorporeal high-frequency generator (200 KHz), and electrolysis creates bubbles in the shunt tube. Velocity of bubble flow is detected by a pair of ultrasonic Doppler probes placed a certain distance apart on the skin surface and in parallel with the implanted tube. The CSF flow rate is calculated taking into account velocity and tube diameter, and is expressed in ml/min. The unit consists of a coil with a capacitor, a silicon diode to rectify the high frequency, and a Zener diode to regulate maximum output voltage of 20 V. The output is fed to a pair of platinum electrodes placed inside the unit's tunnel through which the CSF flows. These components are molded in epoxy resin and coated with medical-grade silicone rubber. In animal experiments, CSF flow rates ranging from 0.033 to 1.0 ml/min could be measured by this flowmeter. Clinically, CSF flow has been measured to date in several cases. In two cases of communicating hydrocephalus occurring after the onset of cerebrovascular disease, and in which the CSF flow was continuously monitored for 24 hours, the flow rate ranged between 0.05 and 0.78 ml/min. The CSF flow rate fluctuates in a 24-hour period, increasing in the morning, especially between 12 midnight and 6 a.m., which suggests a circadian rhythm.

Entities:  

Mesh:

Year:  1983        PMID: 6219190     DOI: 10.3171/jns.1983.58.4.0557

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


  11 in total

1.  The adult radiographic shuntogram.

Authors:  W S Bartynski; S Valliappan; J H Uselman; M P Spearman
Journal:  AJNR Am J Neuroradiol       Date:  2000-04       Impact factor: 3.825

2.  Comparison between classic-differential and automatic shunt functioning on the basis of infusion tests.

Authors:  M Czosnyka; W Maksymowicz; L Batorski; W Koszewski; Z Czosnyka
Journal:  Acta Neurochir (Wien)       Date:  1990       Impact factor: 2.216

3.  Enhanced wall shear stress prevents obstruction by astrocytes in ventricular catheters.

Authors:  S Lee; N Kwok; J Holsapple; T Heldt; L Bourouiba
Journal:  J R Soc Interface       Date:  2020-07-01       Impact factor: 4.118

4.  CSF shunt physics: factors influencing inshunt CSF flow.

Authors:  C Kadowaki; M Hara; M Numoto; K Takeuchi; I Saito
Journal:  Childs Nerv Syst       Date:  1995-04       Impact factor: 1.475

5.  Overdrainage and shunt technology. A critical comparison of programmable, hydrostatic and variable-resistance valves and flow-reducing devices.

Authors:  A Aschoff; P Kremer; C Benesch; K Fruh; A Klank; S Kunze
Journal:  Childs Nerv Syst       Date:  1995-04       Impact factor: 1.475

6.  Quantitative contrast-enhanced ultrasound measurement of cerebrospinal fluid flow for the diagnosis of ventricular shunt malfunction.

Authors:  Robin Hartman; Salavat Aglyamov; Douglas J Fox; Stanislav Emelianov
Journal:  J Neurosurg       Date:  2015-06-19       Impact factor: 5.115

7.  Testing of cerebrospinal compensatory reserve in shunted and non-shunted patients: a guide to interpretation based on an observational study.

Authors:  M Czosnyka; H Whitehouse; P Smielewski; S Simac; J D Pickard
Journal:  J Neurol Neurosurg Psychiatry       Date:  1996-05       Impact factor: 10.154

Review 8.  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

9.  Laparoscopic management of ventriculoperitoneal and lumboperitoneal shunt complications.

Authors:  Stephen M Kavic; Ross D Segan; Michelle D Taylor; J Scott Roth
Journal:  JSLS       Date:  2007 Jan-Mar       Impact factor: 2.172

10.  Continuous, noninvasive wireless monitoring of flow of cerebrospinal fluid through shunts in patients with hydrocephalus.

Authors:  Siddharth R Krishnan; Hany M Arafa; Kyeongha Kwon; Yujun Deng; Chun-Ju Su; Jonathan T Reeder; Juliet Freudman; Izabela Stankiewicz; Hsuan-Ming Chen; Robert Loza; Marcus Mims; Mitchell Mims; KunHyuck Lee; Zachary Abecassis; Aaron Banks; Diana Ostojich; Manish Patel; Heling Wang; Kaan Börekçi; Joshua Rosenow; Matthew Tate; Yonggang Huang; Tord Alden; Matthew B Potts; Amit B Ayer; John A Rogers
Journal:  NPJ Digit Med       Date:  2020-03-06
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