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新型抗磁共振成像可编程脑积水分流器的流体动力学特性研究

Investigation of the hydrodynamic properties of a new MRI-resistant programmable hydrocephalus shunt.

作者信息

Allin David M, Czosnyka Marek, Richards Hugh K, Pickard John D, Czosnyka Zofia H

机构信息

Shunt Evaluation Laboratory & Academic Neurosurgical Unit, Addenbrooke's Hospital, P,O, Box 167, Hills Road, Cambridge CB2 2QQ, UK.

出版信息

Cerebrospinal Fluid Res. 2008 Apr 21;5:8. doi: 10.1186/1743-8454-5-8.

Abstract

BACKGROUND

The Polaris valve is a newly released hydrocephalus shunt that is designed to drain cerebrospinal fluid (CSF) from the brain ventricles or lumbar CSF space. The aim of this study was to bench test the properties of the Polaris shunt, independently of the manufacturer.

METHODS

The Polaris Valve is a ball-on-spring valve, which can be adjusted magnetically in vivo. A special mechanism is incorporated to prevent accidental re-adjustment by an external magnetic field. The performance and hydrodynamic properties of the valve were evaluated in the UK Shunt Evaluation Laboratory, Cambridge, UK.

RESULTS

The three shunts tested showed good mechanical durability over the 3-month period of testing, and a stable hydrodynamic performance over 45 days. The pressure-flow performance curves, operating, opening and closing pressures were stable. The drainage rate of the shunt increased when a negative outlet pressure (siphoning) was applied. The hydrodynamic parameters fell within the limits specified by the manufacturer and changed according to the five programmed performance levels. Hydrodynamic resistance was dependant on operating pressure, changing from low values of 1.6 mmHg/ml/min at the lowest level to 11.2 mmHg/ml/min at the highest performance level. External programming proved to be easy and reliable. Even very strong magnetic fields (3 Tesla) were not able to change the programming of the valve. However, distortion of magnetic resonance images was present.

CONCLUSION

The Polaris Valve is a reliable, adjustable valve. Unlike other adjustable valves (except the Miethke ProGAV valve), the Polaris cannot be accidentally re-adjusted by an external magnetic field.

摘要

背景

北极星瓣膜是一种新推出的脑积水分流器,旨在从脑室或腰椎脑脊液空间引流脑脊液(CSF)。本研究的目的是独立于制造商对北极星分流器的特性进行台架测试。

方法

北极星瓣膜是一种弹簧球瓣膜,可在体内进行磁性调节。内置了一种特殊机制以防止外部磁场意外重新调节。该瓣膜的性能和流体动力学特性在英国剑桥的分流器评估实验室进行了评估。

结果

测试的三个分流器在3个月的测试期内显示出良好的机械耐久性,在45天内具有稳定的流体动力学性能。压力 - 流量性能曲线、工作压力、开启和关闭压力均稳定。当施加负出口压力(虹吸)时,分流器的引流率增加。流体动力学参数在制造商规定的范围内,并根据五个编程性能水平发生变化。流体动力学阻力取决于工作压力,从最低水平的1.6 mmHg/ml/min的低值变化到最高性能水平的11.2 mmHg/ml/min。外部编程证明既简单又可靠。即使是非常强的磁场(3特斯拉)也无法改变瓣膜的编程。然而,存在磁共振图像失真的情况。

结论

北极星瓣膜是一种可靠的、可调节的瓣膜。与其他可调节瓣膜(除了米特克ProGAV瓣膜)不同,北极星瓣膜不会因外部磁场而意外重新调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f0b5/2365935/ab9f7ee6d97a/1743-8454-5-8-1.jpg

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