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选定注射器和便携式输液泵的流速变异性。

Flow rate variability from selected syringe and mobile infusion pumps.

作者信息

Farrington E A, Stull J C, Leff R D

机构信息

Division of Clinical/Hospital Pharmacy, College of Pharmacy, University of Iowa, Iowa City 52242.

出版信息

Drug Intell Clin Pharm. 1988 Sep;22(9):687-90. doi: 10.1177/106002808802200907.

Abstract

Alterations in response to pharmacological agents have been attributed to flow rate variation produced by intravenous infusion devices during drug delivery. A wide range of variation has been shown to occur with large-volume infusion devices. The intent of this investigation was to examine flow variation resulting from the use of selected small-volume syringe and mobile infusion devices and determine whether these devices have greater flow continuity than large-volume infusion pumps. Each syringe and mobile infusion device delivered iv fluid at three flow rates (1, 5, and 10 ml/h). The effusate was collected in a tared beaker and serial weights were measured every ten seconds using a computerized, gravimetric technique. Accuracy, continuity, and pattern of flow were determined for each of the syringe and mobile infusion devices. All of the devices produced accurate flow, within +/- 10 percent of the desired 5 and 10 ml/h rates. However, the actual iv flow rate ranged from 53 to 93 percent for the 1 ml/h rate. Continuity and pattern of flow resulting from each device were diverse. When compared with large-volume, microrate infusion devices, no significant differences could be observed. Therefore, no clear advantage to delivering drug solutions on a continuous basis can be expected from the use of small-volume devices. Specific infusion devices may be preferable for certain clinical applications; flow continuity data may be valuable when selecting an infusion device.

摘要

药物反应的改变被归因于静脉输液装置在给药过程中产生的流速变化。已显示大容量输液装置会出现广泛的变化范围。本研究的目的是检查使用选定的小容量注射器和移动输液装置所导致的流量变化,并确定这些装置是否比大容量输液泵具有更好的流量连续性。每个注射器和移动输液装置以三种流速(1、5和10毫升/小时)输送静脉输液。流出液收集在一个已称重的烧杯中,并使用计算机化的重量分析技术每十秒测量一次连续重量。确定每个注射器和移动输液装置的准确性、连续性和流量模式。所有装置产生的流量都准确,在期望的5和10毫升/小时流速的+/-10%范围内。然而,对于1毫升/小时的流速,实际静脉流速范围为53%至93%。每个装置产生的流量连续性和模式各不相同。与大容量微流速输液装置相比,未观察到显著差异。因此,使用小容量装置预计不会在持续输送药物溶液方面有明显优势。特定的输液装置可能在某些临床应用中更可取;在选择输液装置时,流量连续性数据可能很有价值。

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