Maleschlijski Stojan, Bauer Stella, Di Fino Alessio, Sendra G Hernan, Clare Anthony S, Rosenhahn Axel
a Institute of Functional Interfaces , Karlsruhe Institute of Technology , Karlsruhe , Germany.
Biofouling. 2014 Oct;30(9):1055-65. doi: 10.1080/08927014.2014.966097.
Testing of new coatings to control fouling frequently involves single-species laboratory bioassays. Barnacle cyprids are among the most widely used model organisms in marine biofouling research, and surfaces that inhibit their settlement are considered to be promising candidates for new coating concepts. An analysis of motility parameters (mean velocity and swimming area coefficient) and distribution of cyprids of Balanus amphitrite in different swimming regions in the vicinity of model surfaces (self-assembled monolayers) is presented. The data are correlated with the settlement preferences of cyprids on these surfaces. Cyprids were predominantly found in interfacial regions and the transition frequencies between swimming regions of different depths were determined.
测试用于控制污垢的新型涂层通常涉及单物种实验室生物测定。藤壶无节幼体是海洋生物污垢研究中使用最广泛的模式生物之一,抑制其附着的表面被认为是新型涂层概念的有前途的候选者。本文分析了在模型表面(自组装单分子层)附近不同游泳区域中,纹藤壶无节幼体的运动参数(平均速度和游泳面积系数)及分布情况。这些数据与无节幼体在这些表面上的附着偏好相关。无节幼体主要出现在界面区域,并确定了不同深度游泳区域之间的转换频率。