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首页> 外文期刊>Journal of clinical neuroscience: official journal of the Neurosurgical Society of Australasia >Sonication of catheter tips for improved detection of microorganisms on external ventricular drains and ventriculo-peritoneal shunts.
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Sonication of catheter tips for improved detection of microorganisms on external ventricular drains and ventriculo-peritoneal shunts.

机译:导管提示的超声处理改善了外部心室排水和脑室腹膜子分流的微生物检测。

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The diagnosis of infections involving internal or external neurosurgical drainage devices is challenging, and to our knowledge no single reliable microbiological test exists. We used sonication to study bacterial colonization in 14 explanted external ventricular drains (EVD) and 13 ventriculo-peritoneal shunt (VPS) devices. This technique dislodges biofilm bacteria from the surface of implanted materials before culture. Removed devices were sonicated in saline (40 kHz, 1 minute, 0.25 W/cm(2)), the resulting fluid was cultured aerobically and anaerobically at 37°C, and bacterial growth was counted. Ventricular cerebrospinal fluid (CSF) was cultured separately. In the EVD group, sonication cultures grew significantly more bacteria (64%, 9/14) than cultures of aspirated ventricular CSF (14%, 2/14). In the VPS group the difference was not significant. Positive sonication cultures of EVD catheters yielded a median of >100 colony forming units (CFU) (range, 60-800). For positive sonication cultures of VPS, the median was 1000 CFU (range, 20-100,000). All patients with bacteria in their CSF also had positive sonication cultures from the removed device. Of the five patients with sterile or presumably contaminated CSF cultures but positive sonication cultures of removed shunts, one became afebrile after removal of the EVD, two developed meningitis and two remained asymptomatic. Sonication culture of EVD appears to improve the microbiological assessment of device-related infection and it corroborates with CSF cultures of revision surgery for VPS. Sonication of the removed EVD tip may raise awareness for the onset of meningitis.
机译:涉及内部或外部神经外科引流装置的感染的诊断是具有挑战性的,并且对于我们的知识没有存在单一可靠的微生物测试。我们使用超声处理来研究14种外部心室排水(EVD)和13例胃窦分流(VPS)器件的细菌定植。该技术在培养前从植入材料表面脱臼生物膜细菌。除去的装置在盐水中超声处理(40kHz,1分钟,0.25W / cm(2)),在37℃下培养得到的液体,并计数细菌生长。单独培养室脑脊髓液(CSF)。在EVD组中,超声培养比吸气室CSF的培养物更高(64%,9/14)更大的细菌(64%,9/14)(14%,2/14)。在VPS组中,差异并不重要。 EVD导管的正超声培养物产生了> 100个菌落形成单元(CFU)(范围,60-800)中位数。对于VPS的阳性超声培养,中位数为1000 CFU(范围,20-100,000)。其CSF中的细菌患者也有来自除去装置的阳性超声培养物。在五个无菌或可能是污染的CSF培养患者中,除了去除的分流后的阳性超声培养,在去除EVD后发生过量,两个发达的脑膜炎和两个仍然无症状。 EVD的超声培养似乎改善了与VPS的修复手术的CSF培养物相关的微生物学评估。被删除的EVD提示的超声处理可能会提高对脑膜炎发作的认识。

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