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[一种用于测量分流管中脑脊液流量的装置及其临床应用]

[A device to measure CSF flow in a shunt tube and its clinical application].

作者信息

Hara M, Kadowaki C, Konishi Y, Sakai T, Numoto M, Takeuchi K

出版信息

No To Shinkei. 1982 Oct;34(10):947-53.

PMID:6217827
Abstract

An implantable device for measurement of cerebrospinal fluid (CSF) flow in a 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. Bubble flow velocity is detected as reflected sound using a pair of ultrasonic Doppler probes (Saneisokkuki Doppler Flowmeter Type 1935) placed apart on the skin surface and in parallel with the tube. CSF flow is expressed in ml/min. by calculating velocity and tube diameter. The unit consists of a coil with a 200 kHz 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 inside the unit's tunnel through which the CSF flows. The unit is moulded in epoxy resin and coated with medical grade silicon rubber. In vitro, CSF flow rates ranging from 0.033 ml/min to 1.0 ml/min. could be measured by this flowmeter model. In vivo, however, it was difficult to detect a flow rate of less than 0.006 ml/min. To measure the slower flow rate, a so-called bubble-detecting-tube made from an 11 cm stainless steel tube coated with silicon rubber is centrally inserted between the two ends of the separated shunt tube. The bubble flow velocity is detected by a tissue impedance detector's pair of probes placed apart on the skin surface. Clinically, CSF flow was measured in three cases of hydrocephalus (two cases of normal pressure hydrocephalus and one case of pineal tumor with non-cummunicating hydrocephalus). The flow rates were found to be, respectively, 0.10 ml/min., 0.063 ml/min., and 0.20 ml/min. The merits of the unit include its ability to repeatedly measure CSF flow at short intervals, and also to measure dynamic CSF flow under various conditions.

摘要

一种用于测量分流管中脑脊液(CSF)流量的植入式装置已被研发出来。该装置由体外高频发生器(200kHz)供电,通过电解在分流管中产生气泡。使用一对置于皮肤表面且与分流管平行的超声多普勒探头(1935型Saneisokkuki多普勒流量计),将气泡流速作为反射声进行检测。通过计算流速和管径,以毫升/分钟为单位表示脑脊液流量。该装置由一个带有200kHz电容器的线圈、一个用于整流高频的硅二极管以及一个用于调节最大输出电压为20V的齐纳二极管组成。输出端连接到装置通道内的一对铂电极,脑脊液从中流过。该装置用环氧树脂模制,并涂有医用级硅橡胶。在体外,该流量计模型能够测量0.033毫升/分钟至1.0毫升/分钟范围内的脑脊液流速。然而,在体内,难以检测到低于0.006毫升/分钟的流速。为了测量更慢的流速,将一根由11厘米涂有硅橡胶的不锈钢管制成的所谓气泡检测管,从中央插入分离的分流管两端之间。气泡流速由置于皮肤表面的组织阻抗探测器的一对探头进行检测。临床上,对3例脑积水患者(2例正常压力脑积水和1例松果体瘤伴非交通性脑积水)进行了脑脊液流量测量。流速分别为0.10毫升/分钟、0.063毫升/分钟和0.20毫升/分钟。该装置的优点包括能够在短时间间隔内重复测量脑脊液流量,以及能够在各种条件下测量动态脑脊液流量。

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