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High frequency ultrasound imaging of a single-species biofilm.

机译:单一物种生物膜的高频超声成像。

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OBJECTIVE: This study evaluated the feasibility of a high frequency ultrasound scan to examine the 3D morphology of Streptococcus mutans biofilms grown in vitro. METHODS: Six 2-day S. mutans biofilms and six 7-day biofilms were grown on tissue culture membranes and on bovine dentine discs. A sterile growth medium on the membrane and disc were used as controls. Surfaces were rinsed and then immersed in sterile saline. High-frequency ultrasound imaging system was used to scan these surfaces at 55MHz, and a computer program calculated the average thickness of the biofilm layer from the 3D images. RESULTS: 3D pictures of the biofilm layers were obtained. Different cross-sections and plains are easily demonstrated. The average thickness of the 7-day biofilm was significantly bigger than the 2-day on both the membranes and dentinal discs. No structures were observed on the sterile membrane or disc. CONCLUSION: Three-dimensional structural imaging in situ is possible without damaging the biofilm layer in a quick and easy manner and can therefore be used to evaluate biofilms longitudinally as a function of time.
机译:目的:本研究评估了高频超声扫描检查变形链球菌体外生物膜的3D形态的可行性。方法:在组织培养膜和牛牙本质盘上生长6个2天的变形链球菌生物膜和6个7天的生物膜。膜和椎间盘上的无菌生长培养基用作对照。漂洗表面,然后浸入无菌盐水中。使用高频超声成像系统以55MHz的频率扫描这些表面,然后计算机程序根据3D图像计算出生物膜层的平均厚度。结果:获得了生物膜层的3D图片。容易演示不同的横截面和平原。在膜和牙本质盘上,7天生物膜的平均厚度明显大于2天。在无菌膜或盘上未观察到结构。结论:在不破坏生物膜层的情况下,就可以快速,简便地进行三维结构成像,因此可用于纵向评估生物膜随时间的变化。

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