Suppr超能文献

推荐的静脉港冲洗容量:离体模拟研究。

Recommended irrigation volume for an intravenous port: Ex vivo simulation study.

机构信息

College of Medicine, Chang Gung University, Taoyuan, Taiwan.

Division of Thoracic and Cardiovascular Surgery, Department of Surgery, Chang Gung Memorial Hospital at Linkou, Taoyuan, Taiwan.

出版信息

PLoS One. 2018 Aug 14;13(8):e0201785. doi: 10.1371/journal.pone.0201785. eCollection 2018.

Abstract

BACKGROUND

An intravenous port, which differs from a central venous catheter, has an injection chamber at the end of the catheter. This structural difference causes the irrigation flow pattern to be quite different from that of the central venous catheter. Furthermore, the intraluminal volume differs due to the size of the injection chamber and implanted catheter length. Hence, the ideal recommended irrigation volume varies because of differences in intraluminal volume, however, the recommended irrigation volume is 10 ml and may be a cause for reported port malfunctions. This study investigates the best irrigation volume for an intravenous port by simulating the clinical scenario ex-vivo to access its usefulness.

MATERIALS AND METHODS

This study was composed of two tests. The irrigation volume test attempted to quantify the irrigation volume of an implanted port while the irrigation rate test attempted to simulate daily nursing practice in order to clarify the effect of irrigation flow. The human blood needed for the simulation was donated by volunteers and the total volume was 10 ml per test. The irrigation volume test was done by syringe pump with varying pre-set irrigation volume after the port and connected catheter were filled with volunteer blood. After irrigation with pre-set volume, the retained intraluminal solution was collected and quantified by Bradford assay in order to titrate the best irrigation volume. The irrigation rate test tried to simulate daily maintenance practice in different settings with the quantified irrigation volume as identified by the irrigation volume test. The retained intraluminal solution was collected and quantified by Bradford assay in order to confirm the efficacy of the quantified irrigation volume.

RESULTS

In both SVC and IVC ports, we identified the twenty times the intravascular volume as sufficient for a complete wash out of the blood component in the irrigation volume test. The minimal irrigation volume for SVC and IVC port were 10 ml and 15.6 ml respectively. In irrigation rate test, the irrigation for SVC and IVC port was 10 and 20 ml, respectively, for the sake of preparation convenience. We not only identified the importance of preparation, i.e. irrigation of the extension line but also confirmed the efficacy of the recommended irrigation volume.

CONCLUSION

The irrigation volume should be varied according to the intraluminal volume. Maintenance should be performed after the extension line has been irrigated. The recommended port irrigation volume for SVC and IVC route were 10 and 20 ml, respectively.

摘要

背景

静脉输液港不同于中心静脉导管,其导管末端有一个注射腔。这种结构上的差异导致冲洗模式与中心静脉导管的冲洗模式有很大的不同。此外,由于注射腔和植入导管的长度不同,管腔内容积也不同。因此,由于管腔内容积的不同,理想的推荐冲洗量也有所不同,但推荐的冲洗量为 10ml,这可能是报告的输液港故障的原因之一。本研究通过模拟临床情况进行体外研究,以确定最佳的静脉输液港冲洗量,从而评估其有用性。

材料与方法

本研究由两部分组成。冲洗量测试旨在定量评估植入式输液港的冲洗量,而冲洗速度测试旨在模拟日常护理实践,以明确冲洗流量的影响。模拟所需的人体血液由志愿者捐献,每个测试的总量为 10ml。在向输液港和连接导管中注入志愿者血液后,通过注射器泵以不同的预设冲洗量进行冲洗量测试。预设体积冲洗后,收集保留的管腔溶液并通过 Bradford 分析进行定量,以滴定最佳冲洗量。冲洗速度测试尝试在不同的设置下模拟日常维护实践,使用通过冲洗量测试确定的量化冲洗量。收集并通过 Bradford 分析定量保留的管腔溶液,以确认量化冲洗量的效果。

结果

在 SVC 和 IVC 输液港中,我们发现,冲洗量为血管内体积的二十倍即可完全冲洗掉冲洗量测试中的血液成分。SVC 和 IVC 输液港的最小冲洗量分别为 10ml 和 15.6ml。在冲洗速度测试中,SVC 和 IVC 输液港的冲洗量分别为 10ml 和 20ml,以方便准备。我们不仅确定了准备工作的重要性,即冲洗延长线,而且还证实了推荐的冲洗量的有效性。

结论

冲洗量应根据管腔内容积进行调整。维护应在冲洗延长线后进行。SVC 和 IVC 途径的推荐输液港冲洗量分别为 10ml 和 20ml。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1960/6091923/91cc434b64ab/pone.0201785.g001.jpg

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