Harke Benjamin, Keller Jan, Ullal Chaitanya K, Westphal Volker, Schönle Andreas, Hell Stefan W
Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, 37077 Göttingen, Germany.
Opt Express. 2008 Mar 17;16(6):4154-62. doi: 10.1364/oe.16.004154.
We undertake a comprehensive study of the inverse square root dependence of spatial resolution on the saturation factor in stimulated emission depletion (STED) microscopy and generalize it to account for various focal depletion patterns. We used an experimental platform featuring a high quality depletion pattern which results in operation close to the optimal optical performance. Its superior image brightness and uniform effective resolution <25 nm are evidenced by imaging both isolated and self-organized convectively assembled fluorescent beads. For relevant saturation values, the generalized square-root law is shown to predict the practical resolution with high accuracy.
我们对受激发射损耗(STED)显微镜中空间分辨率与饱和因子的平方根反比关系进行了全面研究,并将其推广以考虑各种焦点损耗模式。我们使用了一个具有高质量损耗模式的实验平台,该平台可实现接近最佳光学性能的操作。通过对孤立的和自组织对流组装的荧光珠成像,证明了其卓越的图像亮度和小于25 nm的均匀有效分辨率。对于相关的饱和值,广义平方根定律显示出能高精度地预测实际分辨率。