Suppr超能文献

Certas脑积水分流器的流体动力学特性。

Hydrodynamic properties of the Certas hydrocephalus shunt.

作者信息

Czosnyka Zofia, Pickard John D, Czosnyka Marek

机构信息

Neurosurgical Unit, Department of Clinical Neurosciences, University of Cambridge, United Kingdom.

出版信息

J Neurosurg Pediatr. 2013 Feb;11(2):198-204. doi: 10.3171/2012.10.PEDS12239. Epub 2012 Dec 7.

Abstract

OBJECT

Independent testing of hydrocephalus shunts provides information about the quality of CSF drainage after shunt implantation. Moreover, hydrodynamic parameters of a valve assessed in the laboratory create a comparative pattern for testing of shunt performance in vivo. This study sought to assess the hydrodynamic parameters of the Certas valve, a new model of a hydrocephalus shunt.

METHODS

The Certas valve is an adjustable ball-on-spring hydrocephalus valve. It can be adjusted magnetically in vivo in 7 steps, equally distributed within the therapeutic limit for hydrocephalus, and the eighth step at high pressures intended to block CSF drainage. The magnetically adjustable rotor is designed to prevent accidental readjustment of the valve in a magnetic field, including clinical MRI.

RESULTS

The pressure-flow performance curves, as well as the operating, opening, and closing pressures, were stable, fell within the specified limits, and changed according to the adjusted performance levels. The valve at settings 1-7 demonstrated low hydrodynamic resistance of 1.4 mm Hg/ml/min, increasing to 5.1 mm Hg/ml/min after connection of a distal drain provided by the manufacturer. At performance Level 8 the hydrodynamic resistance was greater than 20 mm Hg/ml/min. External programming of the valve proved to be easy and reliable. The valve is safe in 3-T MRI and the performance level of the valve is unlikely to be changed. However, with the valve implanted, distortion of the image is substantial. Integration of the valve with the SiphonGuard limits the drainage rate.

CONCLUSIONS

In the laboratory the Certas valve appears to be a reliable differential-pressure adjustable valve. Laboratory evaluation should be supplemented by results of a clinical audit in the future.

摘要

目的

对脑积水分流器进行独立测试可提供有关分流器植入后脑脊液引流质量的信息。此外,在实验室中评估的阀门流体动力学参数可为体内分流器性能测试创建一个对比模式。本研究旨在评估一种新型脑积水分流器Certas阀门的流体动力学参数。

方法

Certas阀门是一种可调节的球簧式脑积水阀门。它可在体内通过磁力分7步进行调节,这些调节在脑积水治疗极限范围内均匀分布,而第8步用于在高压下阻断脑脊液引流。磁性可调节转子旨在防止阀门在磁场中意外重新调节,包括临床磁共振成像(MRI)。

结果

压力-流量性能曲线以及工作压力、开启压力和关闭压力均稳定,在规定范围内,并根据调节后的性能水平而变化。设置为1-7时,阀门的流体动力学阻力较低,为1.4毫米汞柱/毫升/分钟,在连接制造商提供的远端引流管后增加至5.1毫米汞柱/毫升/分钟。在性能水平8时,流体动力学阻力大于20毫米汞柱/毫升/分钟。事实证明,阀门的外部编程简便可靠。该阀门在3-T MRI环境中是安全的,且阀门的性能水平不太可能改变。然而,植入阀门后,图像会有明显失真。该阀门与SiphonGuard集成会限制引流速率。

结论

在实验室中,Certas阀门似乎是一种可靠的压差可调阀门。未来实验室评估应辅以临床审计结果。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验