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脑积水分流内置式流量监测器

Inline Shunt Flow Monitor for Hydrocephalus.

机构信息

Department of Chemistry and Biochemistry, The University of Texas at Arlington , Arlington, Texas 76019-0065, United States.

出版信息

Anal Chem. 2017 Aug 1;89(15):8170-8176. doi: 10.1021/acs.analchem.7b02034. Epub 2017 Jul 20.

Abstract

In hydrocephalus, cerebrospinal fluid (CSF) builds up in the cranial cavity causing swelling of the head and potentially brain damage. A shunt to drain the fluid into a body cavity is now universally used, but failure is all too common. Techniques for ascertaining shunt failure are time-consuming, expertise-dependent, and often inconclusive. We report here an inline system that reliably and quantitatively measures the CSF flow rate. The system uses a single thermistor to both heat the surrounding and to sense the temperature. In the heating mode, the thermistor is subjected to a 5 s voltage pulse. In the sensing mode, it is part of a Wheatstone's bridge, the output being proportional to temperature. The signal, V - V, which is the net change ΔV in the bridge output immediately before and after the heat pulse, depends both on the flow rate and the surrounding temperature. In vitro, a single equation, flow rate = 3.75 × 10 × ΔV provided good prediction for the flow rate, with 6.3% RMS relative error. The sensor behavior is reported for flow rates between 0-52.5 mL/h at 32-39 °C, adequately covering the range of interest.

摘要

在脑积水中,脑脊液在颅腔内积聚,导致头部肿胀,并可能导致脑损伤。目前普遍使用分流器将液体排入体腔,但分流器故障的情况太常见了。确定分流器故障的技术既耗时又依赖专业知识,而且往往不确定。我们在这里报告了一种可靠且定量测量脑脊液流速的在线系统。该系统使用单个热敏电阻同时加热周围环境并感测温度。在加热模式下,热敏电阻会受到 5 秒的电压脉冲。在感测模式下,它是惠斯通电桥的一部分,输出与温度成正比。信号 V-V 是加热脉冲前后桥输出的净变化ΔV,它既取决于流速又取决于周围温度。在体外,单个方程流速=3.75×10×ΔV 很好地预测了流速,相对误差为 6.3%。报告了传感器在 32-39°C 下 0-52.5 mL/h 流速范围内的行为,充分涵盖了感兴趣的范围。

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