Department of Physics, Macquarie University, Sydney, NSW, Australia.
Bioinspir Biomim. 2010 Sep;5(3):036004. doi: 10.1088/1748-3182/5/3/036004. Epub 2010 Aug 16.
Much spider silk research to date has focused on its mechanical properties. However, the webs of many orb-web spiders have evolved for over 136 million years to evade visual detection by insect prey. It is therefore a photonic device in addition to being a mechanical device. Herein we use optical surface profiling of capture silks from the webs of adult female St Andrews cross spiders (Argiope keyserlingi) to successfully measure the geometry of adhesive silk droplets and to show a bowing in the aqueous layer on the spider capture silk between adhesive droplets. Optical surface profiling shows geometric features of the capture silk that have not been previously measured and contributes to understanding the links between the physical form and biological function. The research also demonstrates non-standard use of an optical surface profiler to measure the maximum width of a transparent micro-sized droplet (microlens).
迄今为止,许多蜘蛛丝的研究都集中在其机械性能上。然而,许多圆网蜘蛛的蛛网已经进化了超过 1.36 亿年,以逃避昆虫猎物的视觉探测。因此,它除了是一种机械装置外,还是一种光子设备。在这里,我们使用来自成年雌性圣安德鲁斯十字蜘蛛(Argiope keyserlingi)蛛网的捕获丝的光学表面轮廓测量技术,成功地测量了粘性丝滴的几何形状,并显示出蜘蛛捕获丝在粘性丝滴之间的水层中的弯曲。光学表面轮廓测量显示了以前未测量过的捕获丝的几何特征,并有助于理解物理形态和生物功能之间的联系。该研究还展示了一种非标准的使用光学表面轮廓仪来测量透明微尺寸液滴(微透镜)的最大宽度的方法。