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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Effect of ultrasound on cyprid footprint and juvenile barnacle adhesion on a fouling release material
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Effect of ultrasound on cyprid footprint and juvenile barnacle adhesion on a fouling release material

机译:超声波对污垢释放材料上塞浦路斯足印和幼藤壶附着的影响

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摘要

In our earlier studies, we have demonstrated that low and high intensity ultrasound can prevent barnacle cyprid settlement. In this study, we found that ultrasound treatment reduced the adhesion of newly metamorphosed barnacles up to 2 days' old. This was observed in the reduction of adhesion strength of the newly settled barnacles from ultrasound treated cyprids on silicone substrate compared to the adhesion strength of barnacles metamorphosed from cyprids not exposed to ultrasound. Atomic force microscopy (AFM) was used to analyze the effect of ultrasound on barnacle cyprid footprints (FPs), which are protein adhesives secreted when the larvae explore surfaces. The ultrasound treated cyprids were found to secrete less FPs, which appeared to spread a larger area than those generated by untreated cyprids. The evidence from this study suggests that ultrasound treatment results in a reduced cyprid settlement and footprint secretion, and may affect the subsequent recruitment of barnacles onto fouling release surfaces by reducing the ability of early settlement stage of barnacles (up to 2 days' old) from firmly adhering to the substrates. Ultrasound therefore can be used in combination with fouling release coatings to offer a more efficient antifouling strategy.
机译:在我们较早的研究中,我们证明了低强度和高强度的超声可以防止藤壶塞浦路斯的沉降。在这项研究中,我们发现超声治疗可以减少新变态藤壶的粘连,最长可达2天。与从未暴露于超声的赛普拉斯变形的藤壶的粘附力相比,超声处理的赛普拉斯在硅树脂基材上新沉降的藤壶的粘附力降低了。原子力显微镜(AFM)用于分析超声对藤壶塞浦路斯足迹(FPs)的影响,藤壶足迹是幼虫探索表面时分泌的蛋白质粘合剂。发现超声处理过的塞浦路斯人分泌的FP较少,似乎比未经处理的塞浦路斯人产生的FP散布的面积更大。这项研究的证据表明,超声处理可减少塞浦路斯的沉降和脚印分泌,并可能通过降低藤壶的早期沉降阶段(最长达2天)来影响藤壶随后在结垢释放面上的募集。牢固地粘附在基材上。因此,超声波可以与防污涂料结合使用,以提供更有效的防污策略。

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