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Analysis of flexible substrates for clinical translation of laser-generated shockwave therapy

机译:用于激光产生的冲击波治疗的临床翻译的柔性基底的分析

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摘要

Bacteria biofilms in chronically infected wounds significantly increase the burden of healthcare costs and resources for patients and clinics. Because biofilms are such an effective barrier to standard antibiotic treatment, new methods of therapy need to be developed to combat these infections. Our group has demonstrated the potential of using Laser Generated Shockwaves as a potential therapy to mechanically disrupt the bacterial biofilms covering the wound. Previous studies have used rigid silica glass as the shockwave propagation medium, which is not compatible with the intended clinical application. This paper describes the exploration of five candidate flexible plastic films to replace the glass substrate. Each material measured 0.254 mm thick and was used to generate shockwaves of varying intensities. Shockwave characterization was performed using a high-speed Michelson displacement interferometer and peak stress values obtained in the flexible substrates were compared to glass using one-way nested Analysis of Variance and Tukey HSD post-hoc analysis. Results demonstrate statistically significant differences between substrate material and indicate that polycarbonate achieves the highest peak stress for a given laser fluence suggesting that it is optimal for clinical applications.
机译:慢性感染伤口中的细菌生物膜大大增加了医疗费用和病人和诊所资源的负担。由于生物膜是标准抗生素治疗的有效屏障,因此需要开发新的治疗方法来对抗这些感染。我们的小组已经证明了使用激光产生的冲击波作为潜在疗法来机械破坏覆盖伤口的细菌生物膜的潜力。先前的研究已经使用刚性石英玻璃作为冲击波传播介质,它与预期的临床应用不兼容。本文介绍了探索五种候选柔性塑料薄膜替代玻璃基板的方法。每种材料的厚度为0.254毫米,用于产生不同强度的冲击波。使用高速迈克尔逊位移干涉仪进行冲击波表征,并使用单向嵌套方差分析和Tukey HSD事后分析将柔性基板中获得的峰值应力值与玻璃进行比较。结果表明,基材之间的统计差异显着,并且表明聚碳酸酯在给定的激光注量下达到了最高峰值应力,这表明它是临床应用的最佳选择。

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